Yixiao Chen – Transportation Engineering – Best Researcher Award

Yixiao Chen | Transportation Engineering | Best Researcher Award

Doctoral Student | Jiangsu University | China

Yixiao Chen is a highly accomplished PhD candidate at Jiangsu University specializing in vehicle engineering, with a strong academic and research profile centered on autonomous driving, acceleration evaluation, steer-by-wire systems, scene generation, and SLAM. The academic journey began with a bachelor’s degree in transportation from Nantong University in 2020, followed by a master’s degree in vehicle engineering at Jiangsu University, focusing on visual SLAM, and continued into doctoral studies from 2023 onward. Recognized for excellence, multiple honors have been earned, including the Best Researcher Prize in 2025 for a significant paper on scenario virtual testing technology for autonomous vehicles, third place in the 3rd National Onsite Autonomous Driving Challenge, and several awards during graduate studies such as Outstanding Graduate Student Cadre and Best Paper Award. Research contributions include impactful journal publications in esteemed outlets like Symmetry, IEEE Transactions on Automation Science and Engineering, and the Journal of Automobile Engineering, addressing key advancements in scenario testing, acceleration evaluation, visual mapping algorithms, and vehicle dynamics. Alongside publications, multiple patents have been secured, focusing on accelerated testing methods, virtual acceleration test systems, and semantic mapping for indoor parking, reflecting innovation and applied research outcomes. Beyond academic work, leadership has been demonstrated by managing large-scale projects, including serving as project leader for the Jiangsu Province Graduate Research and Innovation Program and acting as a core member in projects on virtual simulation scenario modeling, drive-by-wire systems, and millimeter-wave detection. Currently, a dedicated team of eight postgraduates has been established under guidance, advancing research on drive-by-wire chassis control and virtual simulation platforms, strengthening both theoretical development and real-world application. The career trajectory illustrates a blend of rigorous academic achievement, practical innovation, and leadership, positioning Yixiao Chen as an emerging expert contributing significantly to the fields of autonomous driving and intelligent vehicle systems.

Profile:  ORCID

Publications:

  • Chen, Y., Jiang, H., & Sun, T. (2025). Review of scenario virtual testing technology for autonomous vehicles: Migration challenges between symmetric frameworks and asymmetric scenarios. Symmetry.

  • Chen, Y. (2025). Design of variable steering ratio for steer-by-wire system based on driver’s steering characteristics. Machines.

  • Li, A., Su, M., Jiang, H., Chen, Y., & Chen, W. (2024). A two-dimensional lane-changing dynamics model based on force. IEEE Transactions on Intelligent Transportation Systems.

  • Jiang, H., Chen, Y., Shen, Q., Yin, C., & Cai, J. (2024). Semantic closed-loop based visual mapping algorithm for automated valet parking. Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering.

  • Chen, Y. (2020). An empirical study of virtual simulation technology replacing real car test in college teaching. Research and Exploration in Laboratory.

  • Chen, Y. (2019). Optimization for pure electric buses body structure based on improved response surface method. Journal of Machine Design.

Doaa A. Elsayed | Environmental Chemistry | Best Scholar Award

Dr Doaa A. Elsayed | Environmental Chemistry | Best Scholar Award

Doctor at zagazig university | Egypt

Doaa A. Elsayed is a dedicated lecturer and researcher in Organic Chemistry with over seven years of academic and research expertise. Her work spans organic synthesis, nanotechnology, molecular docking, and advanced analytical techniques, reflecting a strong focus on innovation. She has published widely in internationally recognized journals and has contributed significantly to cutting-edge research in medicinal and applied chemistry. Her academic contributions extend to mentoring undergraduate and postgraduate students, promoting research culture, and enhancing teaching methodologies. Driven by passion for scientific advancement, she integrates modern techniques into both research and education, ensuring meaningful impact within the chemical sciences community.

Professional Profile

Scopus | Google Scholar

Education

Doaa A. Elsayed pursued advanced studies in chemistry, developing a strong foundation in organic and medicinal chemistry. She received formal training in chemical research methodologies, advanced analytical techniques, and applied chemical sciences, equipping her with the expertise necessary for innovative investigations. Her education emphasized both theoretical and practical aspects of organic chemistry, fostering proficiency in laboratory research and experimental design. By specializing in advanced synthesis and computational chemistry, she built a solid framework for research-driven teaching. These academic experiences laid the groundwork for her leadership in developing new chemical compounds, conducting biological evaluations, and contributing to interdisciplinary research collaborations.

Professional Experience

Doaa A. Elsayed has served as a lecturer in Organic Chemistry, offering extensive expertise in chemical synthesis, drug design, and applied research. Her academic career demonstrates a commitment to excellence in education and mentorship, guiding students through challenging concepts and research projects. She integrates advanced computational and analytical tools into her teaching, ensuring students receive an industry-relevant education. Beyond teaching, she has collaborated on multidisciplinary research initiatives, contributed to laboratory management, and led publication efforts in high-impact journals. Her career reflects dedication to fostering a research-oriented learning environment, bridging theory and practical application, and promoting innovation in organic chemistry.

Research Interest

Research interests focus on organic and medicinal chemistry, computational chemistry, and nanotechnology applications in drug development. Doaa A. Elsayed specializes in the synthesis of novel compounds with pharmacological potential, emphasizing molecular docking and structure-activity relationship studies. She explores green chemistry approaches and eco-friendly synthesis methods to enhance chemical research sustainability. Her investigations include designing inhibitors for disease-related targets, advancing imaging probes, and studying enzyme interactions. She demonstrates expertise in integrating computational modeling with experimental methods to predict and optimize biological activity. These research pursuits reflect her dedication to addressing global health challenges through innovative chemistry and interdisciplinary scientific exploration.

Award and Honor

Doaa A. Elsayed has been recognized for her contributions to chemistry research, earning distinctions that highlight her leadership and academic excellence. Her consistent publication record in prominent journals and impactful discoveries in drug design and molecular studies have established her reputation in the scientific community. She has contributed to the advancement of green chemistry principles, nanotechnology-driven solutions, and pharmaceutical applications, earning professional respect and invitations for collaborations. These achievements showcase her ability to merge innovation and rigorous scientific standards, inspiring students and colleagues. Her dedication to advancing chemical sciences has earned her recognition as a leader in chemistry education.

Research Skill

Doaa A. Elsayed demonstrates expertise in organic synthesis, molecular docking, nanotechnology applications, and computational chemistry. She is proficient in structure-activity relationship analysis, advanced analytical instrumentation, and eco-friendly synthesis techniques. Her skills include designing drug candidates, modeling enzyme interactions, and conducting pharmacokinetic studies. She is adept at integrating modern computational tools to guide experimental workflows, increasing research efficiency and precision. She emphasizes sustainable research approaches, combining chemical innovation with environmental considerations. Additionally, her ability to communicate findings effectively through publications and mentorship supports a collaborative scientific environment. Her technical expertise continues to drive progress in medicinal chemistry and advanced chemical applications.

Publications

Doaa A. Elsayed has an extensive publication record, with articles in high-impact journals focusing on organic synthesis, computational studies, and medicinal chemistry applications. Her research includes developing dual enzyme inhibitors, eco-friendly synthesis strategies, and anti-cancer and anti-bacterial compounds. Notable works address SARS-CoV-2 protease inhibition, imaging probe development, and targeted drug design, reflecting multidisciplinary expertise. She has contributed to advancements in chemical biology through both experimental and computational approaches. Many of her publications explore innovative structure-activity relationships and sustainable practices. Her prolific output demonstrates a deep commitment to addressing complex scientific challenges, advancing pharmaceutical research, and shaping the future of chemical sciences.

Title: Current progress toward synthetic routes and medicinal significance of quinoline
Year: 2023
Citations: 34

Title: CuO nanoparticles for green synthesis of significant anti-Helicobacter pylori compounds with in silico studies
Year: 2024
Citations: 18

Title: Design, Synthesis, Docking, 2D‐QSAR Modelling, Anticancer and Antioxidant Evaluation of Some New Azo‐Compounds Derivatives and Investigation of Their Fluorescence Properties
Year: 2022
Citations: 15

Title: TiO2 nanoparticle as catalyst for an efficient green one-pot synthesis of 1H-3-Indolyl Derivatives as significant antiviral activity
Year: 2022
Citations: 15

Title: Cyclization of N-acetyl derivative: Novel synthesis – azoles and azines, antimicrobial activities, and computational studies
Year: 2022
Citations: 12

Conclusion

Doaa A. Elsayed’s career reflects a balance of research excellence, academic leadership, and innovation in chemical sciences. Her dedication to advancing medicinal and organic chemistry is evident in her teaching contributions, mentorship, and impactful publications. Through a commitment to integrating modern analytical techniques, she has strengthened the connection between classroom education and real-world research applications. Her expertise in sustainable chemistry and drug design contributes to global scientific progress. Recognized for her contributions, she continues to inspire future chemists while driving interdisciplinary collaboration. Her professional journey demonstrates a pursuit of scientific excellence and continuous growth in academia and research.

Xiaoshuang Shi | Solid Waste Management | Best Researcher Award

Assoc. Prof. Dr Xiaoshuang Shi | Solid Waste Management | Best Researcher Award

Associate Professor at Sichuan University | China

Xiaoshuang Shi is a leading researcher and Associate Professor at Sichuan University, specializing in civil engineering with a focus on sustainable construction practices. With a strong academic foundation and extensive contributions, Shi has been instrumental in developing green and low-carbon building technologies. Her research integrates innovative materials science with engineering applications, emphasizing durability and environmental sustainability. Over the years, she has successfully led numerous projects and collaborations with universities and industries, contributing significantly to technological advancements. Her work has helped bridge the gap between research and practical applications, positioning her as a key contributor to civil and environmental engineering.

Professional Profile

ORCID

Education

Shi completed her Ph.D. in Civil Engineering in 2011, having undergone joint training at Monash University in Australia during her doctoral studies. Her academic journey reflects a consistent commitment to excellence and innovation in engineering. After earning her doctorate, she joined Sichuan University in 2012, further strengthening her expertise in sustainable construction technologies. With a focus on low-carbon and environmentally friendly engineering solutions, Shi has demonstrated exceptional academic growth. Her research and education align closely, creating a strong foundation for her contributions in areas such as building material development, solid waste utilization, and reinforced concrete durability improvements.

Professional Experience

Shi’s professional journey demonstrates a blend of research leadership, academic service, and industry collaboration. She currently serves as an Associate Professor at Sichuan University and holds key positions in multiple expert committees and professional organizations. As a recognized figure in civil engineering, she has served as a provincial academic and technical leader candidate and contributed as an expert within Sichuan’s provincial expert group. Her industry collaborations have successfully applied advanced building materials to major infrastructure projects. Shi also actively participates in editorial boards, demonstrating her expertise in guiding the future of sustainable and resilient civil engineering practices globally.

Research Interest

Shi’s research focuses on the development of sustainable building materials and structural engineering innovations. Her work primarily explores low-carbon and long-life building materials, solid waste resource utilization, and the durability of reinforced concrete structures. With an emphasis on environmental impact reduction, she has established innovative design methods for waste-based cementitious materials. This research aims to balance performance, cost-effectiveness, and sustainability while meeting the growing demand for eco-friendly construction. Her approach integrates material science, structural analysis, and advanced testing, contributing to significant advancements in engineering practices. Shi’s projects reflect her dedication to innovation, environmental responsibility, and engineering excellence.

Award And Honor

Xiaoshuang Shi has received recognition for her outstanding contributions to civil engineering research, particularly in sustainable building material development. She has been honored with the Sichuan Provincial Youth Science and Technology Award, reflecting her early career excellence. In addition, she was awarded the First Prize of Sichuan Provincial Science and Technology Progress Award for her innovative work. Her nomination for the Best Researcher Award further demonstrates her influence in the field. Shi’s leadership roles and active membership in professional organizations emphasize her expertise and dedication, making her a respected authority in environmental sustainability and material innovation.

Research Skill

Shi has cultivated a diverse skill set that integrates academic research, engineering design, and material innovation. She is proficient in developing advanced cementitious materials using multi-source solid waste, contributing to low-carbon industrial practices. Her expertise extends to material testing, structural durability analysis, and microstructural investigation, enabling the creation of high-performance construction materials. Shi’s leadership in managing national and provincial projects demonstrates her project management capabilities. She also excels in cross-disciplinary collaborations, technical consultancy, and industrial implementation of research findings. Her editorial and committee roles further showcase her ability to influence research directions, establish standards, and guide sustainable engineering advancements.

Publications

Shi has an extensive publication record, with 72 research articles published in prominent SCI and Scopus-indexed journals. Her work emphasizes material science innovations, sustainable construction practices, and engineering applications. She has contributed significantly to the understanding of microstructural characteristics and performance regulation mechanisms in cementitious materials. Additionally, Shi has authored three books with ISBN registrations, offering valuable academic resources to students and professionals. Her publications reflect a strong balance between theoretical advancements and practical applications. She is actively involved as a guest editor and young editor in prestigious journals, further demonstrating her leadership in shaping engineering research discourse.

Title: Research and Prospects of Airtightness of Biological Laboratory Enclosures: Influencing Factors and Evaluation Methods
Year: 2025

Title: Comprehensive Evaluation of the Performance and Benefits of SSA–GGBS Geopolymer Mortar
Year: 2023

Title: Study on Improving Measures of Mechanical Properties of Geopolymer Materials and Its Effect on CO2 Emission
Year: 2023

Title: Experimental Analysis and Establishment of Strength Attenuation Model of POM Fiber Reinforced Geopolymeric Recycled Concrete under Freeze-Thaw Cycles
Year: 2023

Title: Life Cycle Assessment and Impact Correlation Analysis of Fly Ash Geopolymer Concrete
Year: 2021

Conclusion

Xiaoshuang Shi’s career exemplifies excellence in civil and environmental engineering, with a clear focus on sustainable and innovative building solutions. Through her leadership, she has driven impactful research on solid waste utilization and low-carbon materials, contributing both academically and industrially. Her recognition through awards and professional memberships demonstrates her influence in engineering advancements. Shi’s publications, patents, and applied projects highlight her role as a bridge between research and practice. Her dedication to developing environmentally responsible engineering solutions continues to position her as a leading researcher in sustainable infrastructure and a valuable contributor to global engineering innovation.

Beibei He – Materials Science and Engineering – Best Researcher Award

Beibei He - Materials Science and Engineering - Best Researcher Award

Professor (PhD Supervisor)at Hainan University | China

Beibei He is a highly accomplished researcher with extensive expertise in materials science, solid-state electrochemistry, ceramic materials, and energy conversion technologies. With a strong academic and research background, she has contributed significantly to the field through innovative solutions for fuel cells, batteries, and sustainable energy systems. Her research focuses on advancing energy efficiency and developing high-performance materials to address global energy challenges. She has built a reputation for excellence through impactful publications, patents, and international collaborations, making her a respected figure in advanced materials research.

Professional Profile

ORCID | Scopus

Education

Beibei He holds a Ph.D. in Materials Science from the University of Science and Technology of China, where she honed her expertise in solid-state materials and advanced energy systems. She earned her undergraduate degree in Chemical Engineering from Central South University, further establishing a strong foundation in chemical and materials engineering principles. This combination of theoretical knowledge and practical experience has allowed her to drive innovation in electrochemistry and materials science, laying the groundwork for her remarkable career as a professor and leading researcher in the energy sector.

Professional Experience

With an impressive academic career, Beibei He currently serves as a Professor in the Department of Materials Science and Engineering at Hainan University, contributing to research and mentoring future scientists. She previously held a long tenure as an Assistant Professor at China University of Geosciences, where she expanded her research in ceramic materials and fuel cells. Her postdoctoral work at Curtin University in Australia added an international dimension to her expertise, enhancing her research scope and establishing her as a globally recognized scientist in advanced materials and energy technology.

Research Interest

Her research interests revolve around solid-state electrochemistry, inorganic membranes, ceramic materials, and energy storage and conversion devices such as solid oxide fuel cells and advanced batteries. Beibei He’s work emphasizes creating efficient, sustainable, and robust solutions to address energy demands and environmental concerns. She is particularly known for her contributions to developing novel electrode materials, improving reaction kinetics, and engineering nanoscale interfaces, all of which have advanced performance benchmarks in energy applications. These interdisciplinary research areas highlight her innovative mindset and technical leadership.

Award And Honor

Beibei He has been recognized globally for her exceptional contributions to science, earning accolades such as being listed among Stanford/Elsevier’s Top 2% Scientists in both 2023 and 2024. These honors highlight her impact on materials science and electrochemistry, showcasing her research excellence and dedication to advancing energy solutions. Her awards reflect her role as a thought leader in her field and underscore her efforts to develop transformative energy technologies. Through these recognitions, she continues to inspire peers and upcoming researchers in the global scientific community.

Research Skill

Beibei He possesses extensive skills in designing and synthesizing advanced ceramic and electrochemical materials, employing cutting-edge experimental techniques for energy device innovation. Her expertise spans from molecular-level material engineering to scalable device optimization, demonstrating versatility in addressing research challenges. She is proficient in experimental design, characterization techniques, and electrochemical performance analysis. In addition, she has strong collaborative and leadership skills, evidenced by her extensive co-authored publications and interdisciplinary projects. Her abilities position her as a leading researcher committed to solving real-world energy problems.

Publications

Beibei He has authored over 140 peer-reviewed journal articles, contributing groundbreaking insights into electrochemical materials and devices. Her extensive body of work reflects her dedication to advancing knowledge in solid oxide fuel cells, zinc-air batteries, and catalytic materials for energy applications. In addition, she has filed multiple patent applications, reinforcing her role as both a scientific innovator and practical problem-solver. Her publications in top-tier journals like Advanced Materials and Applied Catalysis B demonstrate her influence and leadership in cutting-edge research on energy-efficient solutions.

Title: Entropy-engineered perovskite cathodes: A novel approach for efficient and durable CO2 electrolysis
Journal: Journal of Colloid and Interface Science, 2025

Title: Enhancing CO2 electrolysis efficiency via in-situ exsolution in high-entropy perovskite electrodes
Journal: Separation and Purification Technology, 2025

Title: Synergistic Vertical Graphene-Exsolved Perovskite to Boost Reaction Kinetics for Flexible Zinc–Air Batteries
Journal: Advanced Functional Materials, 2025

Title: Enhanced stability of perovskite cathode via entropy engineering for CO2 electrolysis
Journal: Rare Metals, 2025

Title: Rational design of LDH-Derived NiFe layered double oxides as capacitive deionization anode for efficient chlorine ion storage with a “memory effect”
Journal: Applied Surface Science, 2025

Conclusion

Beibei He stands out as a globally recognized scientist dedicated to revolutionizing energy technology through advanced materials research. Her exceptional career trajectory demonstrates expertise, innovation, and leadership, positioning her as a role model for aspiring researchers. Through impactful publications, international collaboration, and numerous honors, she continues to shape the future of sustainable energy solutions. Her dedication to bridging scientific discovery with practical applications underscores her vision for advancing environmental sustainability, making her an invaluable contributor to the scientific and engineering community.

Matilde Betencourt – Energy Economics – Best Researcher Award

Matilde Betencourt - Energy Economics - Best Researcher Award

PhD Student at University of Coimbra | Portugal

Matilde Betencourt Fernandes Damas Moreira is a dedicated PhD candidate in Economics at the University of Coimbra, with expertise in energy economics, growth policies, and sustainability. Her academic journey reflects a strong passion for the socioeconomic aspects of energy transitions and structural policies. She has contributed to high-quality research through published journal articles and conference presentations. With a blend of academic rigor and real-world insight, she represents a growing voice in the field, committed to advancing energy transition policies and promoting sustainable development through interdisciplinary economic approaches.

Professional Profile

Scopus | Google Scholar

Education

Her educational background demonstrates a clear trajectory of excellence in economics, supported by consistent academic achievements. She completed her bachelor’s degree in Economics, followed by a master’s degree with a specialization in growth economics and structural policies. Currently pursuing her PhD, her research focuses on capital formation and its role in energy transition across various economies. Her academic milestones reflect a commitment to deepening knowledge, contributing to policy debates, and pursuing excellence in economic research, showcasing her capacity for critical thinking and advanced problem-solving in pressing global sustainability issues.

Professional Experience

Matilde has cultivated a diverse professional profile, combining research, teaching, and outreach. She serves as a Doctoral Fellow at Fundação para a Ciência e Tecnologia and a Guest Assistant Professor at the University of Coimbra, where she teaches macroeconomics. Beyond academia, she has gained practical experience through internships and tutoring roles, highlighting her versatility. Active in student councils and community initiatives, she blends leadership skills with academic expertise. Her career journey illustrates a dedication to nurturing future professionals while contributing research that informs energy policies and economic transformation in an evolving global context.

Research Interest

Matilde’s research interests encompass energy economics, sustainability, and growth economics, focusing on the dynamics of capital formation in energy transition. She explores the socioeconomic impact of green transformations on inequality, sectoral growth, and human development. By examining how policy measures, governance, and economic structures influence energy consumption and carbon intensity, her work bridges economic theory with environmental realities. Her studies offer valuable insights for policymakers seeking to balance economic growth and sustainable practices, positioning her research at the intersection of energy transitions, development economics, and global climate change challenges.

Award And Honor

Matilde Betencourt has earned numerous awards that highlight her academic excellence and leadership. She was recognized as the Best Student in the Master of Economics program and was included multiple times on the Merit Board for top-performing students. Additional honors include awards for exemplary performance at the University of Coimbra and early recognition for outstanding achievements in secondary education. Her accolades underscore her dedication, consistent hard work, and intellectual capability. These recognitions demonstrate her ability to excel in competitive academic environments, positioning her as a distinguished scholar in economics and sustainability research.

Research Skill

Matilde demonstrates strong research expertise in econometric modeling, policy analysis, and quantitative research. Her work employs advanced methodologies, including P-ARDL and MMQR, to study the effects of capital formation and policy on energy transition. She actively collaborates with scholars, contributing to multi-authored publications and international conferences. Her skills extend to data-driven decision-making, ensuring rigorous evaluation of economic trends. By integrating technical skills with critical analysis, she creates impactful contributions to energy transition studies. Matilde’s research skills are strengthened by her commitment to interdisciplinary approaches, fostering actionable insights for sustainable economic development strategies.

Publications

Matilde has co-authored several influential journal articles that examine the intersection of energy, policy, and economic growth. Her publications in prominent journals highlight topics such as carbon intensity, policy stringency, and capital formation within the context of energy transition. Through these contributions, she has established herself as an emerging voice in sustainable economics research. Her scholarly presence is further supported by conference presentations and published proceedings, showcasing her engagement in global academic discourse. Matilde’s ability to disseminate complex findings in accessible formats demonstrates her commitment to advancing knowledge and promoting research-driven solutions.

Title: Do the relationships among policy stringency, corruption, and public size differ across country groups in the context of green transformation?
Authors: V Kaymaz, JA Fuinhas, N Silva, H Domingos, M Betencourt
Journal: Journal of Environmental Management 384, 125533, 2025

Title: The Impact of Dynamic Capital Formation in Energy Transition: Empirical Evidence from the European Union
Authors: M Betencourt, JA Fuinhas
Journal: Energy, 138186, 2025

Title: Are the structure dynamics of capital stock impacting carbon intensity from energy consumption? European insights
Authors: JA Fuinhas, M Belucio, R Santiago, M Betencourt
Journal: Energy, Ecology and Environment, 1-20, 2025

Title: The Impact of Dynamic Capital Formation in Energy Transition
Authors: MBFD Moreira
Journal: Universidade de Coimbra, 2024

Conclusion

Matilde Betencourt Fernandes Damas Moreira represents a new generation of scholars shaping energy and sustainability economics. Her career combines rigorous academic research, teaching excellence, and leadership within both institutional and community spaces. Her work provides meaningful contributions to understanding how economic structures and policy interventions influence global energy dynamics. Through her doctoral research, Matilde continues to expand her expertise and influence, positioning herself as a leader in the field of energy transition studies. Her professional trajectory illustrates both academic excellence and a deep commitment to addressing pressing global challenges.

Eshetu – Environmental science – Best Researcher Award

Eshetu - Environmental science - Best Researcher Award

Dilla University - Ethiopia

AUTHOR PROFILE

ORCID

🌍 SUMMARY

Dr. Eshetu is a distinguished Associate Professor at Dilla University, Ethiopia, renowned for his academic and research excellence in land resource management and environmental studies. His current roles span across continents, including visiting research scholar appointments in China and Ethiopia, reflecting his global academic presence. A multifaceted professional, he contributes to education, research, consulting, and editorial responsibilities. As the Editor-in-Chief of the Ethiopian Journal of Environment and Development, his leadership in scholarly communication is notable. Dr. Eshetu's wide-reaching consultancy services include impact assessments, rural livelihoods, and agricultural transformation strategies. With over two decades of experience, he continues to shape sustainable development discourse through both practice and publication. His expertise not only influences academic thought but also contributes meaningfully to national policies and development initiatives. His academic rigor, collaborative spirit, and commitment to capacity building make him a vital asset in Africa’s pursuit of environmental and agricultural resilience.

🎓 EARLY ACADEMIC PURSUITS

Dr. Eshetu’s educational journey reflects a deep commitment to environmental stewardship and natural resource sustainability. He earned his Ph.D. in Land Resource Management from Nanjing Agricultural University, China, in 2017, where he was twice honored as an “Excellent International Student” due to his exceptional academic performance. His earlier studies include an MSc in Natural Resource and Environmental Studies and a BSc in Forestry, both from Hawassa University, Ethiopia. These foundational qualifications equipped him with theoretical and practical insights that would later inform his scholarly and applied work. His participation in international and national training programs has further expanded his expertise, preparing him to address pressing global challenges such as food insecurity, land degradation, and environmental governance. Through his academic trajectory, Dr. Eshetu has cultivated a rich blend of knowledge in interdisciplinary environmental sciences, making him well-positioned to contribute to academic advancement and sustainable policy development both locally and globally.

👨‍🏫 PROFESSIONAL ENDEAVORS

In his academic career, Dr. Eshetu has seamlessly integrated teaching, research, and leadership responsibilities. At Dilla University, he has served in multiple capacities including Head of the Department of Natural Resources Management, Research Communication and Dissemination Coordinator, and Thematic Research Leader. His role as Editor-in-Chief of a national academic journal further emphasizes his leadership in shaping the research landscape. In addition to his teaching duties, he has held visiting research positions at Adama Science and Technology University and Hawassa University, focusing on water resource use and environmental sustainability. His international engagement as a visiting scholar at Hunan University of Technology and Business in China showcases his global collaboration efforts. Moreover, his consultancy experience with ministries, NGOs, and private organizations illustrates his commitment to applying academic insights to real-world problems. His broad portfolio reflects a commitment to inclusive, interdisciplinary, and impact-driven scholarship across multiple domains.

🌱 CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Eshetu’s research primarily focuses on sustainable land resource management, rural livelihoods, and environmental governance. He has explored the intricate linkages between climate variability and food insecurity, agricultural transformation, and poverty reduction, emphasizing the need for integrated rural development approaches. His consulting expertise extends to Environmental Impact Assessments (EIA), agricultural policy analysis, and the transformation of vocational education in agriculture. He has led thematic research on natural resource management and ecotourism, offering valuable insights into how ecosystems can be sustainably harnessed for socio-economic development. Through his publications and academic engagement, he advocates for policy frameworks that support resilience in vulnerable communities. His interdisciplinary research merges ecological science, policy studies, and development theory, enabling practical interventions. With over twenty international peer-reviewed journal articles, Dr. Eshetu continues to bridge science and policy, championing innovations that address ecological challenges and contribute to Ethiopia’s and Africa’s broader development goals.

🏆 ACCOLADES AND RECOGNITION

Dr. Eshetu’s academic contributions have earned him several prestigious awards and honors. At Nanjing Agricultural University, he was twice recognized as an “Excellent International Student” for his stellar performance among international scholars. His outstanding work also earned him a Certificate of Expert Reviewer from the Academic Exchange Information Centre (AEIC), reflecting his role in advancing scholarly quality on a global stage. In Ethiopia, he received performance-based accolades at Alage ATVET College, celebrating his exceptional contribution to education and institutional excellence. As an active reviewer for international peer-reviewed journals, his critical assessments help uphold academic standards and integrity. His editorial leadership of the Ethiopian Journal of Environment and Development further affirms his influence in shaping the research landscape. These recognitions not only validate his academic and professional endeavors but also underscore the broader impact of his work in the environmental and agricultural sciences.

🔬 IMPACT AND INFLUENCE

Dr. Eshetu’s influence spans academia, government policy, and community development. His research informs policies on agricultural transformation, environmental governance, and rural livelihoods. Through collaborations with ministries such as the Ministry of Education and Ministry of Agriculture, he has contributed to impactful policy design and evaluation. His work supports Ethiopia’s broader development agenda, addressing issues of poverty, climate adaptation, and ecological sustainability. He champions science-based decision-making and advocates for integrating indigenous knowledge with modern environmental practices. His scholarly publications provide critical insight for stakeholders at national and international levels. Additionally, his involvement in training and mentoring young researchers ensures the continued development of expertise within the region. Dr. Eshetu’s influence lies in his ability to convert academic knowledge into actionable strategies, empowering communities and institutions to build resilience against environmental and socio-economic challenges.

📚 LEGACY AND FUTURE CONTRIBUTIONS

Looking ahead, Dr. Eshetu envisions further expanding his role in shaping sustainable development through research, policy advocacy, and mentorship. His legacy is already marked by his pivotal role in academic leadership, interdisciplinary research, and institutional capacity building. He aims to foster South-South and North-South research collaborations that bridge gaps in environmental science, rural development, and water management. As the Editor-in-Chief of a national journal, he continues to nurture emerging scholars and promote evidence-based discourse. Dr. Eshetu is also committed to translating research into policy reforms that address food security, climate resilience, and agricultural sustainability. His goal is to ensure that environmental management strategies are not only ecologically viable but also socioeconomically inclusive. By mentoring the next generation of environmental leaders and strengthening academic institutions, he aspires to leave a lasting legacy that transforms both the scholarly and practical dimensions of environmental governance in Ethiopia and beyond.

PUBLICATION

Title: Variation in Ecosystem Service Values in an Agroforestry Dominated Landscape in Ethiopia: Implications for Land Use and Conservation Policy

Authors: (Author names are not included in your input. To provide accurate author names, I need that detail or can fetch it if web access is enabled.)

Journal: Sustainability

Gulam Husain Patel – Life cycle assessment – Best Researcher Award

Gulam Husain Patel - Life cycle assessment - Best Researcher Award

LUT university - Finland

AUTHOR PROFILE

SCOPUS
ORCID

🌱 SUMMARY OF PROFESSIONAL JOURNEY

GULAM HUSAIN PATEL is a passionate and dedicated Environmental and Power Plant Engineer whose academic and professional trajectory reflects a deep commitment to sustainable solutions and climate resilience. With a strong foundation in Mechanical Engineering from Mumbai University, his journey progressed toward advanced expertise through dual Master's degrees—first in Power Plant Engineering from Peter the Great St. Petersburg Polytechnic University and then in Environmental Engineering from Lappeenranta-Lahti University of Technology (LUT), Finland. His current pursuit of a Doctor of Science (DSc) in Energy Systems at LUT highlights his unwavering focus on clean energy transitions. Gulam’s career has been consistently driven by the goal of integrating engineering innovation with ecological consciousness. His work spans academic research, industrial internships, and educational outreach, making him a well-rounded contributor to sustainable development. His forward-thinking mindset and international training position him as a key player in addressing global energy and environmental challenges.

📘 EARLY ACADEMIC PURSUITS

GULAM’s academic path began in India, where he completed his Bachelor of Engineering in Mechanical Engineering at Mumbai University. This phase sparked his fascination with thermodynamics, energy conversion, and mechanical systems. Realizing the pressing need for sustainable energy sources, he advanced his education by obtaining a Master of Science in Power Plant Engineering from Peter the Great St. Petersburg Polytechnic University, Russia. There, he gained insights into thermal power generation and energy optimization. Driven by a global perspective and a commitment to the environment, Gulam relocated to Finland, where he earned a Master of Science in Environmental Engineering at LUT. His academic journey was enriched with global mobility programs such as summer and winter schools focused on oil, gas, and wastewater treatment. These foundations provided him with the analytical and practical tools to bridge engineering innovation with environmental responsibility, setting the stage for his research-oriented doctoral studies.

🔬 PROFESSIONAL ENDEAVORS AND FIELDWORK

GULAM has gathered rich experience across industrial and academic environments. He began as an intern at Hindustan Coca-Cola Beverages, where he contributed to monitoring manufacturing quality and sustaining production line efficiency. His practical exposure to industrial systems deepened his interest in energy optimization and resource management. He later transitioned into academia, joining LUT University as a Junior Research Assistant, where he examined the life cycle assessment (LCA) of hydrogen production via natural gas. This role refined his research capabilities and analytical precision. He also contributed to science communication through his work with LUMA-keskus Saimaa, engaging in experimental teaching and promoting STEM education. Currently serving as a Junior Researcher at LUT, he is engaged in groundbreaking LCA-based assessments of Power-to-X technologies, with a focus on sustainable hydrogen utilization. Gulam’s ability to merge theoretical knowledge with real-world problem-solving defines his multidisciplinary professional outlook.

⚗️ CONTRIBUTIONS AND RESEARCH FOCUS

GULAM’s research contributions are deeply rooted in the intersection of energy systems, sustainability, and life cycle assessment. His principal focus lies in evaluating and enhancing the environmental performance of hydrogen production technologies. His publication, "Climate Change Performance of Hydrogen Production Based on Life Cycle Assessment", published in Green Chemistry (2024), underscores his role in advancing scientific understanding of decarbonization pathways. Gulam employs modeling tools like GaBi and simulation platforms like Ansys to quantify greenhouse gas emissions and optimize process sustainability. His work supports the development of Power-to-X systems—an emerging paradigm in energy storage and renewable integration. By addressing environmental externalities in energy transitions, his research aligns with global goals for net-zero carbon futures. Through methodical analysis, modeling, and system evaluation, Gulam is shaping cleaner technologies that could redefine how societies produce and consume energy in a sustainable manner.

🏅 ACCOLADES AND RECOGNITION

GULAM’s academic and research excellence have been acknowledged through several prestigious programs and certifications. He participated in competitive summer and winter schools at Peter the Great St. Petersburg Polytechnic University, where he studied oil, gas, and wastewater treatment—critical sectors in energy and environmental engineering. He was also selected for the MonGOS project by NAWA, an initiative promoting sustainability and environmental governance, reflecting his cross-border recognition as a sustainability advocate. In Finland, his growing expertise secured him a position as Junior Researcher at LUT, a role reserved for promising doctoral candidates with impactful research outputs. His publication in a high-impact journal further validates his scientific contributions. Gulam's continuous academic progression from Bachelor's to Doctorate, coupled with his international exposure and peer-reviewed recognition, mark him as a rising scholar and changemaker in energy and environmental research.

🌍 IMPACT AND INFLUENCE IN SUSTAINABILITY

GULAM’s work holds significant implications for climate action and green technology innovation. His research contributes to demystifying the environmental costs and benefits of hydrogen as a clean energy carrier, which is vital for decarbonizing industries and transportation. By using life cycle thinking, he provides policymakers and engineers with data-driven insights that can shape sustainable energy systems. His involvement in teaching and science promotion through LUMA-keskus reflects his belief in education as a catalyst for environmental consciousness. Furthermore, his multicultural academic background equips him to bridge global perspectives in sustainability discourse. Gulam’s influence extends beyond labs and lecture halls, as his research supports national and international goals like the European Green Deal and UN Sustainable Development Goals (SDGs). His commitment to evidence-based sustainability practices makes him an advocate for responsible innovation, systems thinking, and energy equity.

🔮 LEGACY AND FUTURE CONTRIBUTIONS

LOOKING AHEAD, GULAM envisions becoming a transformative force in sustainable energy systems by integrating academic research, industrial application, and policy advisory roles. His doctoral work is paving the way for more refined assessments of Power-to-X solutions, a domain that promises to revolutionize carbon-neutral fuel production. He aims to expand his research to include comparative LCA studies of other renewable pathways, such as biofuels and solar-based hydrogen. Gulam also seeks to contribute to international panels and research collaborations that influence environmental regulations and energy transitions. Through mentoring young engineers and advocating interdisciplinary research, he intends to cultivate a new generation of sustainability thinkers. His legacy will likely be defined by impactful publications, technology assessments, and an enduring commitment to planetary well-being. With each contribution, Gulam is building a future where engineering harmonizes with ecology for a more resilient and sustainable world.

Muhammad Usama Haroon – Sustainability – Eco-friendly Construction Practices Award

Muhammad Usama Haroon - Sustainability - Eco-friendly Construction Practices Award

Middle East Technical University Northern Cyprus Campus - Pakistan

AUTHOR PROFILE

SCOPUS

🌱 SUMMARY

Muhammad Usama Haroon is a dedicated researcher in the field of environmental and sustainable engineering, currently pursuing his Master of Science in Sustainable Environment and Energy Systems at Middle East Technical University, Turkey. His academic background in chemical engineering and sustainability research highlights a commitment to addressing environmental challenges through innovation. His thesis explores the eco-friendly stabilization of soft clays using treated sewage sludge as a sustainable alternative to cement—an approach aimed at reducing environmental impact while enhancing construction materials. With a CGPA of 3.86/4.00, he has demonstrated academic excellence and a passion for impactful research. Usama’s work spans areas such as cementitious materials, solid waste reuse, durability assessments, and microstructural characterization. His publications and scholarly activities underscore a keen ability to bridge theory with practical environmental solutions. This summary reflects Usama’s journey as a young, promising researcher focused on blending sustainable development goals with scientific rigor.

📘 EARLY ACADEMIC PURSUITS

Usama began his academic journey at the University of Engineering and Technology (UET) in Lahore, Pakistan, where he earned a Bachelor of Science in Chemical Engineering with a strong academic performance. During his undergraduate years, he laid the foundation for his interdisciplinary research interests in materials science, sustainability, and environmental engineering. His exposure to chemical processes, thermodynamics, and environmental control systems equipped him with essential skills for tackling sustainability challenges. This foundational phase also ignited his curiosity about the reuse of industrial and municipal waste materials—eventually leading to his specialization in sustainable construction and environmental systems. Even at this early stage, Usama showed interest in improving environmental practices in real-world contexts, as evidenced by his later internships and review papers focused on water reuse and waste management. These academic beginnings highlight his progressive mindset and the formative experiences that propelled him toward a research-focused career in environmental sustainability.

👨‍🏫 PROFESSIONAL ENDEAVORS

Professionally, Usama has excelled in both academic and educational roles, blending teaching with research. Currently a graduate teaching assistant at Middle East Technical University, he actively contributes to the Chemistry Department, facilitating lab work and tutoring in courses such as General Chemistry and Physical Chemistry. His prior teaching roles at The City School DHA Campus and Allied School as a chemistry and mathematics instructor and academic coordinator demonstrate strong pedagogical commitment. He designed lesson plans, led lab sessions, coordinated assessments, and guided students, showcasing leadership and communication skills vital to any academic career. These diverse teaching experiences, spanning from school to university level, not only reflect his versatility but also reinforce his dedication to spreading scientific knowledge. Moreover, his professional internship at FrieslandCampina Engro Pakistan Limited allowed him to work hands-on in optimizing water resource strategies, further solidifying his expertise in industrial sustainability practices. His career path exemplifies a balanced approach to education, research, and real-world application.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

Usama’s core research contributions center on environmental engineering, sustainable construction materials, and climate action. His most impactful work includes the development of eco-friendly stabilization techniques for soft clays using treated sewage sludge—a sustainable alternative to cement. By reducing reliance on cement, this work not only curbs CO₂ emissions but also promotes beneficial reuse of municipal waste. His contributions also extend to indoor air quality and occupant thermal comfort in hot and humid climates, particularly in urban regions of Pakistan. Usama has published research in notable journals such as Sustainability, with topics spanning from solid waste reuse to microstructural analysis of treated clay composites. His interdisciplinary expertise covers cementitious materials, durability testing, and environmental data analysis. The integration of microscopy, chemical analysis, and statistical tools in his research showcases a robust, data-driven approach. Usama’s work directly supports the UN Sustainable Development Goals, particularly in climate action, clean water access, and sustainable industrial practices.

🏅 ACCOLADES AND RECOGNITION

Usama’s academic journey has been distinguished by recognition at both national and international levels. He was awarded a full scholarship for his master's program at Middle East Technical University in recognition of his academic excellence and potential. Additionally, he earned a certificate of merit for presenting his research paper on sustainable water utilization and wastewater reuse in Pakistan’s dairy industry at the prestigious NISE Conference in Kyrenia, Cyprus. These honors affirm the scholarly quality and societal relevance of his research. His ability to present, publish, and apply complex environmental data in a meaningful way reflects a high level of intellectual maturity and innovation. Furthermore, his role as a teaching assistant comes with merit-based responsibilities, further validating his standing in the academic community. These accolades serve not only as personal achievements but as validation of his contributions to sustainability, environmental engineering, and academic leadership.

🌍 IMPACT AND INFLUENCE

Usama’s work holds significant promise in transforming how societies approach construction, waste management, and environmental planning. His exploration of sewage sludge as a substitute for cement introduces a sustainable and scalable solution to two major issues: cement overuse and sludge disposal. This innovation, if adopted widely, could significantly lower greenhouse gas emissions from the construction industry. Furthermore, his research on climate change in Pakistan and his review of industrial water reuse provide vital policy insights aligned with the 2030 Agenda for Sustainable Development. As a multidisciplinary thinker, Usama bridges engineering, environmental science, and policy-making—offering holistic solutions to global challenges. His influence is growing within academic and applied research circles, particularly across Turkey and Pakistan. By focusing on developing-country contexts, Usama brings attention to localized sustainability needs and promotes equitable scientific progress. His impact goes beyond publications—it lies in his ability to generate actionable knowledge for environmental resilience and sustainability.

🔮 LEGACY AND FUTURE CONTRIBUTIONS

Looking ahead, Usama aims to deepen his research in eco-friendly construction materials, particularly through advanced waste valorization techniques and circular economy frameworks. His vision includes contributing to low-carbon technologies, improving soil stabilization practices, and shaping environmental policy through scientific evidence. Usama’s legacy will likely be one of interdisciplinary innovation, especially in regions vulnerable to climate stress. He is poised to lead collaborative projects that merge academia with industry, and to mentor future sustainability scholars. His ability to communicate scientific findings in accessible ways makes him a potential advocate for sustainable practices at both grassroots and institutional levels. As global challenges intensify, Usama’s research offers scalable, eco-conscious solutions that could inform not only engineering practice but also sustainability education and policy frameworks. With a solid foundation in teaching, research, and applied science, his future contributions will undoubtedly leave a lasting mark on environmental science and sustainable development worldwide.

PUBLICATION

 

  • Title: Sustainable strength enhancement of cement-clay composites through partial replacement with sewage sludge and sewage sludge ash

  • Authors: [Not specified in the input]

  • Journal: Construction and Building Materials

Kazi Hafizur Rahman – Sustainability – Excellence in Research

Kazi Hafizur Rahman - Sustainability - Excellence in Research

Department of Business Administration University of Global Village - Bangladesh

AUTHOR PROFILE

ORCID
GOOGLE SCHOLAR

SUMMARY

Md. Kazi Hafizur Rahman is a dynamic academic and independent researcher specializing in human resource management, sustainability, and innovation. With a passion for transformative impact and a strong background in education, journalism, and facilitation, he seamlessly integrates academic, research, and social engagement roles. His work spans across scholarly writing, active project leadership, and facilitation of youth empowerment programs. Known for his analytical acumen, Rahman is proficient in research tools and has contributed to reputed journals. His vision is rooted in societal development through education, sustainable strategies, and technology-led research.

EDUCATION

Rahman earned both his MBA and BBA in Management Studies from the University of Barishal, majoring in Human Resource Management. His postgraduate research focused on the integration of artificial intelligence in HRM practices to improve inclusivity and sustainable performance. Through this academic journey, he has developed a robust foundation in management theory and research, which fuels his ongoing contributions to scholarly work and applied research in organizational innovation and sustainability. His thesis and research interests align with cutting-edge technological trends and their influence on human resource development and performance metrics.

PROFESSIONAL EXPERIENCE

Currently serving as a Lecturer at the University of Global Village, Barishal, Rahman also works independently as a researcher. His past experiences include research assistant roles in government-funded projects focusing on climate change and tourism. He also held editorial positions in prominent news media and served as a facilitator in leadership training programs. His involvement in both academia and community initiatives reflects a unique blend of scholarly commitment and civic engagement. With a consistent record of project management and publication, Rahman actively shapes the discourse in HRM, sustainability, and educational innovation.

RESEARCH INTEREST

Rahman's research interests span across human resource practices, sustainability, circular economy, organizational innovation, and the role of artificial intelligence in corporate strategies. He is especially drawn to how digital transformation and AI integration can enhance organizational performance and societal inclusiveness. Other notable interests include smart learning, entrepreneurial behavior, green banking, and climate change economics. He is committed to generating insights that bridge the gap between theory and practice, targeting both academic impact and real-world relevance. His interdisciplinary approach enables him to explore emerging issues through a multifaceted lens.

AWARD AND HONOR

Md. Kazi Hafizur Rahman’s social action project, “Sustainable Urban Environmental Management,” was recognized at COP-26, showcasing his ability to lead impactful, award-winning initiatives. He also secured internal research grants, including a competitive fund from Ahsanullah University of Science and Technology. As a respected facilitator, Rahman was selected for leadership workshops by the British Council and The Hunger Project. His editorial and organizational roles in student and youth platforms have earned him accolades for leadership, integrity, and scholarly commitment. These recognitions highlight his blend of academic and social impact.

RESEARCH SKILL

Rahman is proficient in analytical tools such as SPSS, AMOS, and SmartPLS, enabling him to conduct robust empirical research. He is adept in structural equation modeling and data-driven hypothesis testing, particularly within the context of sustainability, organizational behavior, and HRM. Additionally, he conducts workshops on research methods and academic writing for students and peers. His strong command over qualitative and quantitative methodologies, combined with technical competence, allows him to deliver impactful research outcomes. His ability to manage complex data sets and draw actionable conclusions sets him apart as a research leader.

PUBLICATIONS

Title: Impact of green banking practices on green CSR and sustainability in private commercial banks: the mediating role of green financing activities
Authors: MAI Gazi, A Al Masud, S bin Kabir, NS Chaity, AR bin S Senathirajah, ...
Journal: Journal of Sustainability Research, Volume 6, Issue 4, 2024

Title: Paving the way of entrepreneurship for university students: the role of innovativeness, technological adaptability, and self-management, with risk-taking and family support as ...
Authors: MAI Gazi, AT Mim, AA Masud, MKH Rahman, MB Amin, ARS Senathirajah, ...
Journal: Cogent Education, Volume 12, Issue 1, 2025

Title: AI Capability and Sustainable Performance: Unveiling the Mediating Effects of Organizational Creativity and Green Innovation with Knowledge Sharing Culture as a Moderator ...
Authors: MAI Gazi, MKH Rahman, AA Masud, MB Amin, NS Chaity, A Senathirajah, ...
Journal: (Publication year: 2024) (Exact journal name not provided; please confirm)

Title: Sustainable embankment contribute to a sustainable economy: The impact of climate change on the economic disaster in coastal area
Authors: MAI Gazi, A Al Masud, MKH Rahman, MB Amin, M Emon, ...
Journal: Environmental Development, Volume 55, Article 101208, 2025

Title: The future of work: how (HRMPs) practices and employee skills will shape sustainable performance
Authors: AA Masud, MA Hossain, R Wu, TM Abir, GMS Hossain, MKH Rahman, ...
Journal: Environment, Development and Sustainability, 2025

Title: Sustainable Pathways to Circular Economy Adoption: Insights From the RMG Sector of Bangladesh
Authors: SB Chaity, N. S., Islam, K. M. Z., Masud, A. A., Islam, M. F., Rahman, M. K., ...
Journal: Business Strategy and the Environment, 2025

Title: Sustainable Economy and Sustainable Embankments Nexus: The Effects of Climate Change on the Economic Collapse of Coastal Regions
Authors: MAI Gazi, A Al Masud, MKH Rahman, M Bin
Journal: (Incomplete journal title; likely same or similar to Environmental Development)

CONCLUSION

Md. Kazi Hafizur Rahman exemplifies a new generation of scholars dedicated to the convergence of academic excellence, social progress, and innovation. With a strong educational foundation, prolific research output, and active societal involvement, he continues to shape impactful narratives across sustainability, HRM, and youth development. His methodological strength and publication record signify academic maturity, while his community engagements highlight empathy and leadership. As he advances in academia, Rahman aims to drive systemic transformation through informed research and ethical leadership. His journey is marked by dedication, foresight, and a clear vision for inclusive growth.

Rahma Permata – Construction Management – Best Researcher Award

Rahma Permata - Construction Management - Best Researcher Award

National Taiwan University - Taiwan

SUMMARY

Rahma Permata is a doctoral researcher in Civil Engineering at National Taiwan University, with a strong foundation in structural engineering and project management. She has academic and practical experience in seismic evaluation, steel connections, and construction site inspection. With a career spanning international education and corporate roles, Rahma integrates technical acumen with cross-cultural communication. Her previous work as a civil engineer and management trainee enriched her interdisciplinary skills across design, supply chain, and scheduling systems. Passionate about engineering development, she is recognized for her ability to manage complex workflows and contribute to innovative, data-driven construction solutions.

EDUCATION

Rahma Permata earned her master’s degree from National Cheng Kung University, Taiwan, where she focused on structural seismic performance in steel beam-column joints. She is currently pursuing a Ph.D. in Civil Engineering at National Taiwan University, under guidance from experts in structural analysis and construction engineering. Her academic training combines theoretical design, computational modeling, and field applications. Her early studies in Indonesia laid the groundwork for her technical and professional excellence. Across her education, Rahma has focused on structural safety, modeling accuracy, and the dynamic behavior of building systems during seismic events.

PROFESSIONAL EXPERIENCE

Rahma has diverse work experience ranging from international internships to engineering roles in private companies. At Continental Engineering Corporation, she contributed to project scheduling using Primavera P6 and collaborated on technical drawings with AutoCAD. She previously worked at PT Luxindo Raya in various departments including sales, water systems, marketing, and supply chain. Her role spanned communication with stakeholders, quality assurance, and project coordination. She also interned at the Palembang Education Authority, recalculating structural components using SAP2000. Her experience demonstrates versatility in engineering functions, team collaboration, and integration of technical and managerial responsibilities in large-scale infrastructure projects.

RESEARCH INTEREST

Rahma’s research focuses on the seismic behavior and structural integrity of civil engineering systems. She explores how detailed modeling and strength variability affect the seismic performance of steel joints in buildings. Her interests extend to computer-aided structural analysis using tools like SAP2000, ETABS, and ANSYS. Her doctoral work aims to improve the resilience and safety of buildings in seismic zones by refining modeling accuracy and evaluating structural failure mechanisms. With a commitment to sustainable and disaster-resistant construction, Rahma continues to investigate the integration of design precision and real-world performance in structural engineering practice.

AWARD AND HONOR

Rahma has gained recognition for her dedication and achievements through her selection as a research assistant and academic collaborator at top Taiwanese institutions. Her appointment under professors at National Cheng Kung University and National Taiwan University highlights her academic potential. She held a key role as secretary of the Muslim Students Association at NCKU, reflecting her leadership and organizational engagement beyond academia. While formal awards are not explicitly listed, Rahma’s growing responsibilities and consistent involvement in both research and community initiatives illustrate the respect and trust she has earned within academic and professional circles.

RESEARCH SKILL

Rahma is proficient in structural analysis software including SAP2000, ETABS, ANSYS, and AutoCAD. She also has experience using Primavera P6 for construction scheduling and Microsoft tools for data reporting. Her expertise includes interpreting seismic data, preparing as-built drawings, conducting field inspections, and optimizing structural models. Her analytical capabilities allow her to evaluate the performance of engineering systems under dynamic conditions. With a blend of hands-on site knowledge and computational modeling, Rahma brings a balanced approach to solving engineering problems. She is also skilled in technical communication and managing engineering documentation within multidisciplinary teams.

CONCLUSION

Rahma Permata represents the new generation of civil engineers with a global outlook, advanced technical training, and a passion for solving real-world problems through engineering innovation. Her experience spans field operations, academic research, and international collaboration. She brings a multidisciplinary and systems-based approach to structural design, combining theoretical rigor with practical implementation. Rahma’s dedication to continuous learning and improvement makes her a valuable contributor to both academic research and industry projects. With strong analytical tools, leadership experience, and a focus on seismic safety, she continues to shape the field of sustainable and safe civil infrastructure.

PUBLICATIONS

Title: Life Cycle Assessment of Integrated Energy and Seismic Retrofits for Existing Buildings
Authors: [Author information not provided in the available sources.]
Journal: Journal of Building Engineering

Title: Integrated Retrofitting Strategies for Aging Buildings: Bridging Seismic Risk Mitigation and Sustainability
Authors: Rahma Permata and Szu-Yun Lin
Journal: EGU General Assembly 2025 (Preprint)