Saoussen Cheikhrouhou | Sustainable Development | Research Excellence Award

Research Excellence Award

Saoussen Cheikhrouhou
Affiliation University of Sfax
Country Tunisia
Scopus ID 55184122200
Documents 43
Citations 584
h-index 12
Subject Area Sustainable Development
Event Global Civil Engineering Awards
ORCID 0000-0003-4607-7452

Saoussen Cheikhrouhou is affiliated with the University of Sfax, Tunisia, and is recognized for scholarly contributions in sustainable development and interdisciplinary engineering research. Her academic profile reflects active engagement in internationally indexed scientific publications, citation development, and research dissemination associated with sustainability-oriented scientific advancement.[1] The documented research activities demonstrate continued participation in engineering and environmental sustainability research communities through peer-reviewed publications and academic collaboration.[2]

Abstract

This article presents an academic recognition overview of Dr. Saoussen Cheikhrouhou and her scholarly activities associated with sustainable development and interdisciplinary scientific research. The profile demonstrates measurable publication activity, citation visibility, and international indexing within recognized academic databases.[1] The article further evaluates research performance, scientific dissemination, and scholarly impact related to sustainability-oriented engineering and environmental studies.

Keywords

Sustainable Development; Environmental Engineering; Scientific Publications; Research Metrics; Citation Analysis; Sustainability Research; Academic Recognition; Scopus Profile; Engineering Research; Interdisciplinary Studies.

Introduction

Academic recognition systems commonly evaluate researchers according to publication quality, citation influence, interdisciplinary contribution, and participation in scientific advancement. Sustainable development research has become increasingly significant within engineering and environmental sciences due to its role in supporting ecological balance, technological innovation, and resource optimization.[3] Dr. Saoussen Cheikhrouhou’s scholarly profile reflects measurable engagement in these areas through internationally indexed publications and scientific collaboration.[1]

Professional recognition programs within engineering and sustainability disciplines frequently emphasize research dissemination, measurable scientific impact, and technical contribution to sustainable technological development.

Research Profile

According to indexed academic records, Dr. Saoussen Cheikhrouhou has authored or co-authored forty-three scientific documents with a cumulative citation count exceeding five hundred citations and an h-index value of twelve.[1] These indicators demonstrate sustained scholarly engagement and scientific visibility within sustainability and interdisciplinary engineering research domains.

The documented publication portfolio reflects participation in peer-reviewed scientific communication and collaborative academic research related to sustainable development methodologies, engineering analysis, and environmental scientific applications.

Research Contributions

Research activities associated with sustainable development frequently involve multidisciplinary integration across engineering, environmental science, technological systems, and policy-oriented scientific analysis. The scholarly contributions attributed to Dr. Saoussen Cheikhrouhou indicate participation in sustainability-focused scientific investigation and technical dissemination.[2]

Sustainable development research supports advancements in environmental management, engineering efficiency, ecological assessment, and scientific innovation. Published research outputs further contribute to interdisciplinary academic collaboration and broader scientific communication within international research environments.[3]

Publications

The indexed publication record associated with Dr. Saoussen Cheikhrouhou includes scientific contributions documented within internationally recognized databases and peer-reviewed journals. Publication activity represents an important indicator of research dissemination, scholarly collaboration, and sustained academic engagement.[1]

Research publications associated with sustainability-oriented engineering commonly address environmental performance, resource optimization, scientific modeling, and interdisciplinary technological applications relevant to sustainable scientific advancement.

Research Impact

Citation indicators and indexed publication visibility provide measurable evidence of scientific dissemination and academic influence. The citation profile associated with Dr. Saoussen Cheikhrouhou demonstrates that published research outputs have received scholarly attention within sustainability and engineering-related scientific communities.[1]

Research impact within sustainable development frequently extends beyond citation metrics and contributes to broader technical applications involving environmental management systems, engineering methodologies, ecological assessment, and sustainability-oriented innovation.[3] Internationally indexed publications further strengthen scientific visibility and institutional collaboration across interdisciplinary research networks.

Award Suitability

Based on available scholarly indicators, Dr. Saoussen Cheikhrouhou demonstrates characteristics commonly associated with academic and professional recognition programs, including measurable publication performance, citation visibility, interdisciplinary scientific contribution, and subject specialization within sustainable development research.

Engineering and sustainability award frameworks generally emphasize innovation potential, scientific contribution, publication quality, and interdisciplinary research dissemination. The documented academic profile supports consideration within professional recognition categories associated with sustainability and engineering excellence.

Conclusion

Saoussen Cheikhrouhou’s academic profile reflects active participation in sustainable development research and internationally indexed scientific publication. The documented metrics, including publication activity, citation performance, and institutional affiliation, indicate measurable scholarly contribution within interdisciplinary sustainability and engineering-related scientific disciplines.[1] The research record demonstrates alignment with professional academic recognition standards associated with engineering innovation and sustainable scientific advancement.

References

    1. Elsevier. (n.d.). Scopus author details: Saoussen Cheikhrouhou, Author ID 55184122200. Scopus.
      https://www.scopus.com/authid/detail.uri?authorId=55184122200
    2. ORCID. (n.d.). ORCID profile record for Saoussen Cheikhrouhou.
      https://orcid.org/0000-0003-4607-7452
    3. Abid, A., Cheikhrouhou, S., Kallel, S., & Jmaiel, M. (2022). NovidChain: Blockchain‐based privacy‐preserving platform for COVID‐19 test/vaccine certificates. Software: Practice and Experience, 52(4), 841-867.
      https://doi.org/10.1002/spe.3033
    4. Cheikhrouhou, S., Kallel, S., Guermouche, N., & Jmaiel, M. (2015). The temporal perspective in business process modeling: a survey and research challenges. Service Oriented Computing and Applications, 9(1), 75-85.
      https://doi.org/10.1007/s11761-013-0144-z
    5. Graja, I., Kallel, S., Guermouche, N., Cheikhrouhou, S., & Hadj Kacem, A. (2020). A comprehensive survey on modeling of cyber‐physical systems. Concurrency and Computation: Practice and Experience, 32(15), e4850.
      https://doi.org/10.1002/cpe.4850

Longwei Chen | Sustainable Development | Excellence in Innovation Award

Prof. Longwei Chen | Sustainable Development | Excellence in Innovation Award

Professor | Institute of Energy, Hefei Comprehensive National Science Center | China

Longwei Chen is a Professor specializing in low-temperature plasma at a leading research institute in China, with extensive experience bridging plasma physics and advanced energy applications. He has led and contributed to pioneering projects on microwave linear plasma sources for large-area thin-film deposition, plasma graphitization of carbon fibers, and the domestic development of one-step hot plasma arc systems for hydroxyl-free quartz tube fabrication, demonstrating strong scientific leadership and effective technology translation. His research focuses on plasma-assisted combustion, ammonia energy systems, advanced ignition technologies, and plasma–material interactions, with influential publications in high-impact journals addressing ammonia co-firing, plasma-enhanced combustion, nitrogen migration mechanisms, and nanoparticle formation. His work supports applications spanning ammonia-powered generators, heavy-duty transportation, marine propulsion, and industrial energy systems. His research impact includes 693 citations, 56 publications, and an h-index of 15.

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Featured Publications

Ausra Zemiene | Sustainable Development | Research Excellence Award

Dr. Ausra Zemiene | Sustainable Development | Research Excellence Award

Researcher | Vilnius Gediminas Technical University | Lithuania

Ausra Zemiene is an Associate Professor at Vilnius Gediminas Technical University (VILNIUS TECH), specializing in philology, onomastics, sociolinguistics, and public communication. With extensive academic and teaching experience across leading Lithuanian universities, she has held roles including department head, interim dean, project manager, and senior lecturer, contributing to curriculum development and institutional leadership. Her research focuses on personal naming practices, linguistic identity, cultural globalization, persuasive public communication, and language learning motivation among international students, with scholarly outputs spanning journal articles, monographs, and academic textbooks published in recognized outlets. She has led nationally funded language policy and academic support projects, actively participates in international conferences, and contributes to the advancement of language education and communication studies through teaching and research collaboration. Her research impact includes 4 citations across 4 documents, 3 publications, and an h-index of 1.

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Featured Publications

Moina Ajmeri | Sustainable Development | Best Research Article Award

Dr. Moina Ajmeri | Sustainable Development | Best Research Article Award

Assitant Professor at National Institute of Technology Patna, India

Dr. Moina Ajmeri is a dedicated and accomplished academic serving as an Assistant Professor (Grade-II, Level-11) in the Department of Electrical Engineering at the National Institute of Technology (NIT) Patna. With an impressive h-index of 8 and over 298 citations, Dr. Ajmeri has made significant contributions to the fields of control systems, power electronics, and renewable energy systems. Throughout her career, she has demonstrated a strong commitment to research, teaching, and innovation, underlined by her involvement in several patents and high-impact journal publications. Her multidisciplinary approach and passion for advancing control techniques for complex industrial processes and energy applications have positioned her as an influential voice in her field.

profile

scopus

Education

Dr. Ajmeri holds a Ph.D. in Electrical Engineering from the prestigious Indian Institute of Technology (IIT) Patna, completed in 2016. Her doctoral research focused on the development of new two-degree-of-freedom control schemes tailored for integrating and unstable processes with time delay, and she graduated with a commendable CPI of 8.93/10. She also holds an M.Tech. in Electronics and Communication Engineering from Birla Institute of Technology, Mesra, Ranchi, which she completed in 2010, securing an excellent academic score of 88.50%. Her undergraduate foundation in engineering was established at Magadh University, Bodh Gaya, where she earned a B.Sc. Engineering in Electronics and Communication with distinction, obtaining 82.33% marks.

Experience

Dr. Ajmeri’s professional journey began at NIT Patna, where she joined as an Assistant Professor (On Contract) in the Department of Electronics and Communication Engineering in 2015. Post completion of her Ph.D., she transitioned to a permanent faculty role in the Department of Electrical Engineering in 2018, and since September 2022, she has held her current position as an Assistant Professor (Grade-II, Level-11). During this period, she has combined her academic instruction with active research, mentoring students, and contributing to the academic and administrative growth of the department.

Research Interest

Dr. Ajmeri’s research interests lie in process modeling and system identification, control design for both linear and nonlinear systems, and advanced control applications for power electronic circuits. Her expertise also extends to micro-grids and renewable energy systems, where she seeks to develop robust and efficient control strategies to meet the demands of modern sustainable energy networks. Her research stands at the crossroads of theory and application, striving to solve real-world industrial challenges while pushing the boundaries of control systems engineering.

Award

In recognition of her research excellence and commitment to innovation, Dr. Ajmeri has been an instrumental contributor to two patents related to high-gain DC-DC boost converter technologies, co-filed in 2023 under the aegis of NIT Patna. These patents are designed to address the challenges of high switching frequencies and multi-level energy conversion, which are pivotal in renewable energy and power electronic systems. These innovations showcase her practical problem-solving skills and her vision for transforming power electronics.

Publication

Dr. Ajmeri’s scholarly output features several high-impact journal articles. Selected examples include:

Ajmeri, M. (2024). “Novel twofold control for delayed industrial processes with integrating and inverse response characteristics,” IFAC Journal of Systems and Control (Q3).

Kumar, P., & Ajmeri, M. (2025). “A non-isolated buck-boost converter based on SEPIC topology for renewable energy applications,” Computers and Electrical Engineering, Volume 124, Part A.

Kumar, S., & Ajmeri, M. (2023). “Smith predictor–based sliding mode control with hyperbolic tangent function for unstable processes,” Transactions of the Institute of Measurement and Control (Q2).

Ajmeri, M. (2022). “Analytical design of enhanced PID controller with set-point filter for unstable processes with time delay,” International Journal of Dynamics and Control (Q2).

Ajmeri, M., & Ali, A. (2017). “Analytical design of modified Smith predictor for unstable second-order processes with time delay,” International Journal of Systems Science (Q1).

Ajmeri, M., & Ali, A. (2015). “Two degree of freedom control scheme for unstable processes with small time delay,” ISA Transactions (Q1).

Ajmeri, M., & Ali, A. (2013). “Direct synthesis based tuning of the parallel control structure for integrating processes,” International Journal of Systems Science (Q1).

These publications have not only been cited by numerous international researchers but have also inspired new studies in both academic and industrial circles, attesting to their significant scholarly impact.

Conclusion

Dr. Moina Ajmeri’s research work exemplifies academic excellence, innovation, and societal relevance. Her consistent contributions to the field of advanced control systems and renewable energy technologies have set a high benchmark for scientific research. The nominated article reflects both technical brilliance and real-world applicability, making her an ideal candidate for the Research for Best Research Article Award. Dr. Ajmeri’s dedication to pushing the boundaries of engineering knowledge and her impactful publications make her deserving of this prestigious recognition.

Eleeyah Saniso | Sustainable Development | Innovative Research Award

Assist. Prof. Dr. Eleeyah Saniso | Sustainable Development | Innovative Research Award

Lecturer/Researcher at Yala Rajabhat University, Thailand

Assistant Professor Dr. Eleeyah Saniso is a dedicated academic and researcher specializing in renewable energy and drying technology at Yala Rajabhat University, Thailand. With an academic foundation rooted in physics and energy technology, Dr. Saniso has steadily established himself as an authority in agricultural product drying systems, renewable energy solutions for rural applications, and sustainable engineering design. His commitment to advancing local energy autonomy and community-based technological development reflects both scientific expertise and deep-rooted social responsibility. Through his career, Dr. Saniso has bridged theoretical research with hands-on applications, especially in renewable energy projects that serve underprivileged communities, showcasing an exceptional blend of innovation and empathy in his professional contributions.

profile

scopus

Education

Dr. Eleeyah Saniso embarked on his academic journey by earning a Bachelor of Education in Science, majoring in Physics, from Thaksin University in 2004. His growing interest in experimental and applied physics led him to complete a Master of Science in Physics from Prince of Songkla University in 2006. He further advanced his research skills and specialized knowledge by pursuing a doctoral degree at King Mongkut’s University of Technology Thonburi (KMUTT), where he was awarded a Ph.D. in Energy Technology in 2019. This strong academic pathway has equipped Dr. Saniso with a broad yet deep understanding of both the theoretical and practical aspects of energy science, especially in the context of renewable energy and agricultural innovations.

Experience

Dr. Saniso began his professional career as a scientist in physics at the Faculty of Science Technology and Agriculture, Yala Rajabhat University in 2007. A year later, he transitioned into an academic role as a lecturer in the Physics Program, a position he has held since 2008. His commitment to renewable energy solutions prompted his appointment as a lecturer in the Renewable Energy Technology Program in 2018, a role that aligns perfectly with his research endeavors. Throughout his career, Dr. Saniso has played an essential role in curriculum development, research mentorship, and the implementation of community-focused renewable energy projects, all while fostering practical collaboration between students and real-world industry challenges.

Research Interests

Dr. Saniso’s research is highly interdisciplinary, with strong roots in engineering and applied science. His primary focus lies in drying technology and the study of physical properties of agricultural products to optimize drying processes. His interests extend into the exploration of pico-hydropower and pico-wind energy systems, especially for rural and off-grid communities. Moreover, Dr. Saniso is devoted to developing sustainable energy solutions using biomass, agricultural residues, and municipal solid waste, aligning his work with the global call for renewable and circular economy practices.

Awards

Dr. Saniso’s commitment and ingenuity have earned him various research grants from institutions like the Thailand Science Research and Innovation (TSRI) and Yala Rajabhat University. Notably, his project on the development of efficient drying systems for local farmers and renewable energy solutions for rural communities has been recognized as model work for local technology transfer. His nomination for this award underscores not only his academic contributions but also his impactful community engagement, demonstrating how scientific research can directly benefit society.

Selected Publications

Dr. Saniso’s work has appeared in reputable international journals and conference proceedings. His research has been well-cited by peers in both the renewable energy and agricultural engineering communities. Some of his selected publications include:

Saniso, E., et al. (2025). “Enhancement of Dried Salted Four-Finger Threadfin Using Indirect Solar Dryer.” Results in Engineering. (In press).

Saniso, E., et al. (2025). “Garcinia Drying Using Mixed-Mode Solar Dryer Technique.” Case Studies in Thermal Engineering, 66, 105711.

Saniso, E., Seni, L., Handayanto, S.K. (2024). “Experimental Investigation of Paddy Drying by Combined Infrared-Hot Air Fluidised Bed.” American Journal of Engineering Research, 13(9), 17-23.

Suwasono, P., Munthe, H., Saniso, E. (2024). “Minimize Student Misconceptions About Newton’s Third Law.” AIP Conf. Proc., 3106, 060006.

Techo, J., et al., Saniso, E. (2024). “Enhanced Solar Photovoltaic Power Production for EV Charging.” Nature Environment and Pollution Technology, 23(1), 215-223.

Saniso, E., Hayibaka, M. (2022). “Computational Fluid Dynamics Simulation of a Solar Agricultural Dryer.” International Journal of Mechanical Engineering, 7(2): 1230-1237.

Saniso, E., et al. (2019). “Parboiled Rice Production Without Steaming Using Microwave-assisted Hot Air Fluidized Bed.” Food and Bioproducts Processing, 120: 8-20.

Each publication has contributed to the growing body of knowledge on sustainable drying techniques and energy-efficient processing, with multiple works cited in global journals and conferences, attesting to the relevance and impact of his studies.

Conclusion

Assistant Professor Dr. Eleeyah Saniso exemplifies the qualities that the Research for Innovative Research Award seeks to honor. His remarkable track record of pioneering research, commitment to real-world applications, and dedication to the academic and local communities reflect his profound impact on the field of renewable energy and sustainable development. Dr. Saniso’s innovative mindset and enduring scientific contributions make him a truly deserving candidate for this prestigious recognition.

Hannah Maria – Sustainable Development – Best Researcher Award

Hannah Maria - Sustainable Development - Best Researcher Award

Universidade Federal de Pernambuco - Brazil

AUTHOR PROFILE

ORCID

ACADEMIC BACKGROUND:

Hannah Maria Soares de Freitas holds a master's degree in innovation and consumption management from the Federal University of Pernambuco (UFPE), which she completed in 2024. She also has an MBA specialization in strategic planning and management from Centro Universitário Uninter (2016) and a bachelor's degree in business administration with an emphasis on fashion marketing from the University of Pernambuco (2014).

RESEARCH AND PROJECTS:

she is actively involved in the research project titled "carbon market assessment and consumer behavior," which focuses on studying the carbon market and consumer behavior, particularly in the context of carbon credits. her research aims to promote sustainable consumption through innovative approaches and strategic planning.

RESEARCH INTERESTS:

her main areas of interest include consumer well-being, decision-making for sustainable consumption, strategic planning, innovation, and conscious consumption. she is dedicated to exploring how consumers can make more informed and sustainable choices.

PROFESSIONAL AFFILIATIONS:

hannah is a member of the consumer behavior research group (gpcc), which is registered in the cnpq directory. her membership in this group allows her to collaborate with other researchers and contribute to advancements in consumer behavior studies.

ACADEMIC CONTRIBUTIONS:

she serves as a reviewer for the revista interdisciplinar de marketing (rimar-uem), where she contributes her expertise to ensure the quality and relevance of published research.

ADDITIONAL TRAINING:

she has completed various additional training programs, including university extensions in governmental planning aligned to the agenda 2030, strategic government evaluation, and writing scientific articles for high-impact journals.

CURRENT WORK:

currently, hannah is focused on her research and teaching activities at ufpe, where she continues to explore innovative strategies for promoting sustainable consumption and strategic planning.

NOTABLE PUBLICATION

Ahmad Shaabani – Sustainable Development – Best Researcher Award

Ahmad Shaabani - Sustainable Development - Best Researcher Award

Shahid Beheshti University - Iran

AUTHOR PROFILE

SCOPUS

ACADEMIC CAREER

Ahmad Shaabani is a renowned Professor of Organic Chemistry at Shahid Beheshti University in Tehran, Iran. He began his academic journey as an Assistant Professor from 1994 to 1998, progressed to an Associate Professor from 1998 to 2002, and has been a full Professor since 2003. His academic career is marked by his dedication to teaching and research in organic chemistry.

RESEARCH INTERESTS

Ahmad's research focuses on the discovery and design of novel isocyanide-based multi-component reactions (I-MCRs) for synthesizing biologically important heterocyclic compounds. He also works on creating neoteric functional materials with functionalized/modified nanomaterials and natural polymers via I-MCRs, which are applied in drug delivery and biomedical platforms. His interests extend to the synthesis of methalophtalocyanines and developing new synthetic methods through heterogeneous catalysts in chemical transformations.

HONORS AND AWARDS

Ahmad has received numerous accolades throughout his career, including being named Distinguished Professor of Shahid Beheshti University multiple times (2002, 2006, 2007) and being selected as the Distinguished Professor of Iranian Universities by the Ministry of Science, Research, and Technology of Iran in 2003. He was awarded the prestigious prize of the International Kharazmi Festival in Basic Science in 2009 and was recognized as the Iranian Chemical Society’s Distinguished Chemist in 2010.

SABBATICAL LEAVES

Ahmad has taken sabbatical leaves to advance his research at prominent institutions, including the University of Regina in Canada (2000-2001) under the mentorship of Prof. Donald G. Lee, and the University of California, USA, in 2018, working with Prof. Shaowei Chen. These experiences have significantly contributed to his professional development and research output.

TRAINING PROGRAMS

Ahmad has participated in various training programs to enhance his expertise, including the UNIDO Group Training Program on the Utilization of Medicinal and Aromatic Plants in Pharmaceutical and Related Industries in 1996 in Eskisehir, Turkey, and the HIJ-COMSATS Workshop on the Use of Spectroscopic Techniques in Structural Organic Chemistry in 2000 in Karachi, Pakistan.

MEMBERSHIPS

Ahmad is a fellow of The World Academy of Sciences (TWAS) for the advancement of science in developing countries, and a member of the Academy of Sciences in Iran. He is also an active member of the Iranian Chemical Society and the Scientific Committee of the Chemistry Olympiad. Furthermore, he serves on the editorial advisory board of ACS Combinatorial Science and the editorial boards of the Journal of the Iranian Chemical Society and the Journal of Current Green Chemistry.

EDITORIAL CONTRIBUTIONS

Ahmad contributes his expertise to the scientific community through his editorial roles. He is on the editorial advisory board of ACS Combinatorial Science (ACS) and serves on the editorial boards of the Journal of the Iranian Chemical Society (Springer) and the Journal of Current Green Chemistry (Bentham Science), where he helps guide the direction of research in these fields.

NOTABLE PUBLICATION

Keerthana Kumareswaran – green infrastructure – Best Researcher Award

Keerthana Kumareswaran - green infrastructure - Best Researcher Award

University of Ruhuna - United States

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS:

Keerthana Kumareswaran's academic journey has been marked by notable achievements and recognition. Graduating with a Bachelor of Science (Honors) in Green Technology from the University of Ruhuna in Sri Lanka, she earned a First Class with an impressive OGPA of 3.95 out of 4.00, securing the top position in her batch. Her commitment to academic excellence was further demonstrated through distinctions such as the Vice Chancellor's List award and Dean's List awards for overall performance.

PROFESSIONAL ENDEAVORS:

Keerthana's professional journey showcases a progression from an internship at Glide (Pvt) Limited and the Commercial Bank of Ceylon PLC in Sri Lanka to significant roles as Assistant Lecturer and later, Lecturer at the University of Ruhuna. Her academic prowess and teaching roles underline a commitment to both research and education.

CONTRIBUTIONS AND RESEARCH FOCUS:

With a focus on Green Technologies, Keerthana has actively contributed to the academic community through her research and publications. Notable works include research on "Green Infrastructure and Urban Climate Resilience," "A Comparison of Environmental Performance of Electronic and Bound-Thesis Using Life Cycle Assessment," and "Energy poverty, occupant comfort, and wellbeing in internally displaced people’s residences in Sri Lanka." These contributions reflect her dedication to sustainable practices, environmental design, and the well-being of displaced populations.

IMPACT AND INFLUENCE:

Keerthana's impact extends beyond academic circles to practical applications in addressing environmental challenges. Her research on occupant comfort and energy poverty in internally displaced people's residences holds the potential to influence policies and practices aimed at improving living conditions for vulnerable populations. The awards she received, including the P.E.O International Peace Scholarship and the Fulbright Foreign Student Program, further underscore the recognition of her work's impact.

ACADEMIC CITES:

Keerthana's research has gained acknowledgment in academic publications and conferences, evident from citations in reputed journals and presentations at conferences such as the International Symposium on Agriculture & Environment. Notable works include her contributions to journals like "Journal of Cleaner Production" and "Energy and Buildings," showcasing the relevance and recognition of her research within scholarly contexts.

LEGACY AND FUTURE CONTRIBUTIONS:

As a LEED Green Associate and a Green Building Associate Professional, Keerthana's commitment to sustainable practices is evident. Her future contributions are poised to further advance the field of Green Technologies, with potential impacts on urban climate resilience, sustainable resource management, and energy-efficient design. The roles she holds, such as being a member of Lions Club International and executive committee member of the Green Technology Alumni Association, indicate her ongoing commitment to making a positive impact.

NOTABLE PUBLICATION

Systematic review on ensuring the global food security and covid-19 pandemic resilient food systems.  2022 (7)

Energy poverty, occupant comfort, and wellbeing in internally displaced people’s residences in Sri Lanka.  2021 (13)

Reihaneh Abouei Mehrizi – Environmental Engineering – Excellence in Innovation

Reihaneh Abouei Mehrizi - Environmental Engineering - Excellence in Innovation

Khajeh Nasir Toosi University of Technology (KNTU) - Iran

AUTHOR PROFILE

Scopus
Google Scholar

EARLY ACADEMIC PURSUITS:

Reihaneh Abouei Mehrizi embarked on her academic journey with a Bachelor of Science in Civil Engineering from Golestan University, Iran. Her commitment to academic excellence is underscored by her achievement of a Cumulative GPA of 17.84 out of 20 during her Master of Science in Environmental Engineering at Khajeh Nasir Toosi University of Technology (KNTU), Tehran.

PROFESSIONAL ENDEAVORS:

Mehrizi's academic pursuits extend beyond conventional studies, encompassing diverse experiences. She has demonstrated her dedication by engaging in research projects, teaching roles as a Teaching Assistant (TA), and honing her skills through certifications in areas such as Python programming and nanotechnology.

CONTRIBUTIONS AND RESEARCH FOCUS:

Mehrizi's research interests lie in Desalination, Membrane Separation, Mathematical Modeling, and Simulation, among others. Notably, her Master's thesis, titled "Mathematical Modeling of Reverse Osmosis Desalination Systems," reflects her commitment to advancing environmental engineering solutions.

IMPACT AND INFLUENCE:

The impact of Mehrizi's work is evident in her research publications, including a study on the top research topics in environmental science and engineering. Additionally, her accepted paper in "Computers & Chemical Engineering" signifies her contribution to the development of a generalized mathematical model for Two-Stage Reverse Osmosis Desalination Systems.

ACADEMIC CITES:

Mehrizi's academic contributions are substantiated by her involvement in analyzing bibliometric and scientometric data from top peer-reviewed environmental journals. Her engagement in impactful research projects and collaborations reflects her commitment to advancing the field.

LEGACY AND FUTURE CONTRIBUTIONS:

Reihaneh Abouei Mehrizi's legacy lies in her multifaceted contributions, from impactful research publications to hands-on projects and teaching roles. With a solid foundation in environmental engineering and a diverse skill set, her future contributions are anticipated to further elevate the discourse on water and wastewater treatment, mathematical modeling, and membrane technology.

NOTABLE PUBLICATION

Cross sectional study of the top research topics in environmental science and engineering.  2022 (10)

Sunaina Singh | Sustainable Development | Best Researcher

AUTHOR PROFILE
Scopus
EARLY ACADEMIC PURSUITS:

Sunaina Singh embarked on her academic journey at IIT Delhi, signaling the initiation of her scholarly pursuits. Information regarding her early academic endeavors, including educational achievements, areas of study, and any notable milestones during this formative period, is crucial for understanding her intellectual development.

PROFESSIONAL ENDEAVORS:

Transitioning from academia to the professional sphere, Singh's career unfolded with diverse professional endeavors. Insights into her roles, projects, and collaborations during this phase, particularly those aligned with her academic background, contribute to comprehending the practical applications of her knowledge and skills.

CONTRIBUTIONS AND RESEARCH FOCUS:

Singh's contributions and research focus are integral to her academic and professional identity. Whether through scholarly publications, participation in research projects, or advancements within a specific field, understanding the thematic concentration of her contributions offers insights into her academic impact.

Assessing Singh's impact and influence involves recognizing the broader effects of her work. This encompasses positive outcomes in academia, acknowledgment within her professional network, and any influence she may have had on students, colleagues, or the academic community at large.

ACADEMIC CITATIONS:

An indicator of Singh's academic influence is reflected in the number of citations her work has garnered. High citation metrics suggest that her research has significantly contributed to the academic discourse, with fellow researchers and scholars referencing her work in their own studies.

LEGACY:

Sunaina Singh's legacy is defined by the lasting impact she leaves at IIT Delhi. This may include contributions to the academic environment, mentorship of students, and the establishment of a positive and collaborative culture within her academic sphere.

FUTURE CONTRIBUTIONS:

Looking ahead, Singh's future contributions may involve continued advancements in her academic and professional pursuits. This could encompass further research, participation in impactful projects, mentorship of emerging scholars, and potentially taking on leadership roles that contribute to the growth and development of IIT Delhi.

NOTABLE PUBLICATION

Fast and Robust Adaptive LMAT Control for Power Quality Improvement in Grid-Tied SPV System.  2023