Jinxing Chen – Sustainability – Best Researcher Award

Jinxing Chen - Sustainability - Best Researcher Award

Soochow University - China

AUTHOR PROFILE

SCOPUS

PRECISE SYNTHESIS OF NANOSTRUCTURES

Jinxing Chen is highly regarded for his expertise in the precise synthesis of nanostructures, pushing the boundaries of nanotechnology and material science.

CATALYTIC UPCYCLING OF WASTE PLASTICS

His groundbreaking work in the catalytic upcycling of waste plastics has contributed significantly to sustainable materials science, developing innovative solutions for environmental challenges.

JOURNAL EDITORIAL BOARD MEMBER

Jinxing serves on the editorial boards of prestigious journals such as Materials Research Letters, Rare Metals, and Advanced Powder Materials, where he influences the direction of cutting-edge research.

RESEARCH AWARDS

Jinxing has been recognized with multiple research awards, including the 2022 Nanoscale Emerging Investigator, the 2024 ChemComm Emerging Investigator, the 2024 Journal of Materials Chemistry A Emerging Investigator, and the 2022 Cell Press China Paper Award Winner.

NOTABLE PUBLICATIONS

His prolific research output includes influential papers such as “Grave-to-Cradle Photothermal Upcycling of Waste Polyesters over Spent LiCoO2” published in Nature Communications and several key publications in the Journal of the American Chemical Society and Angewandte Chemie.

SUSTAINABLE MATERIALS SCIENCE

Jinxing’s work is at the forefront of sustainable materials science, focusing on solar thermal catalysis for efficient polyester upcycling and innovative approaches to polyolefin upcycling, contributing to a more sustainable future.

EMERGING INVESTIGATOR

As an emerging investigator, Jinxing continues to make significant strides in his field, with his research being highly regarded and widely cited, paving the way for future innovations in nanostructures and sustainable materials.

NOTABLE PUBLICATION

Synergistically coupling CoS/FeS2 heterojunction nanosheets on a MXene via a dual molten salt etching strategy for efficient oxygen evolution reaction
Authors: Z. Zhang, T. Liang, C. Jin, J. Chen, X. Zeng
Year: 2024
Journal: Journal of Materials Chemistry A, 12(24), pp. 14517–14530

Upgrading waste plastics to value-added aromatics
Authors: S. Li, Z. Li, F. Zhang, J. Chen
Year: 2024
Journal: Chem Catalysis, 4(5), 100928

Chiral Multidentate Ligand Facilitating Perovskite Nanocrystals with Circularly Polarized Luminescence and Chiral Assembly
Authors: S. Chen, J. Fu, C. Zhang, Q. Zhang, M. Cao
Year: 2024
Journal: Advanced Optical Materials, 12(14), 2302883

Non-Photochemical Origin of Selectivity Difference between Light and Dark Catalytic Conditions
Authors: L. Zhang, X. An, K. Feng, X. Zhang, L. He
Year: 2024
Journal: ACS Applied Materials and Interfaces, 16(17), pp. 21987–21996

Hydrogen Bubbles: Harmonizing Local Hydrogen Transfer for Efficient Plastic Hydro-Depolymerization
Authors: Q. Kang, X. Zhang, Q. Feng, Q. Zhang, J. Chen
Year: 2024
Journal: ACS Nano, 18(17), pp. 11438–11448

Seyed Ahmad Kebriyaee – Environmental Engineering – Best Researcher Award

Seyed Ahmad Kebriyaee - Environmental Engineering - Best Researcher Award

Department of Mechanical Engineering, Faculty of Engineering - Iran

AUTHOR PROFILE

GOOGLE SCHOLAR

ACADEMIC AND TEACHING EXPERIENCE

Dr. Seyed Ahmad Kebriyaee has a rich academic and professional background. He served as a Teacher Assistant at Azad University of Mashhad from 2007 to 2015, specializing in Fluid Dynamics, Thermodynamics, and Fire Dynamic Simulation. His teaching experience reflects a deep commitment to advancing knowledge in critical areas of engineering and fire safety.

PROFESSIONAL EXPERIENCE IN FIRE SAFETY

Dr. Kebriyaee’s extensive professional experience includes working as a Research and Development Specialist at the Fire Department of Mashhad Municipal Administration. His role involved being a member of various committees, including those focused on technical machinery, energy consumption optimization, and maintenance systems. His expertise in these areas has significantly contributed to the enhancement of fire safety practices and systems.

RESEARCH PROJECTS AND PROPOSALS

Dr. Kebriyaee has spearheaded numerous research proposals aimed at improving fire safety and efficiency. His projects include energy audits of fire stations, feasibility studies for solar panel use, and the design and implementation of fire apparatus. He has also worked on innovative solutions such as smoke generators and training systems for firefighters, showcasing his dedication to advancing fire safety technology.

PUBLICATIONS AND CONFERENCES

Dr. Kebriyaee has published several influential papers in renowned journals and conferences. Notable works include studies on solar chimneys and biodiesel emissions, presented at prestigious conferences such as the 17th International Conference on Mechanical, Aeronautical and Manufacturing Engineering and the 8th Safe Community Asian Conference. His publications reflect his active engagement in advancing fire safety and energy optimization.

HONORS AND RECOGNITION

Throughout his career, Dr. Kebriyaee has received several honors, including being elected as a premier specialist by the Municipal Administration of Mashhad in 2013. His achievements in math competitions and academic exams further highlight his exceptional skills and dedication to his field.

SKILLS AND EXPERTISE

Dr. Kebriyaee possesses a diverse set of technical skills, including proficiency in software like Word, Visio, and FLUENT, and expertise in maintenance planning and energy optimization. His capabilities extend to various programming and modeling tools, underscoring his comprehensive knowledge in engineering and fire safety.

FIELDS OF INTEREST AND PERSONAL TENDENCIES

Dr. Kebriyaee’s research interests span combustion modeling, fire simulation, smoke control, and sustainable energy. He is passionate about team work, leadership, and staying at the forefront of the latest technological advancements. His personal interests in chess, Kung Fu, and basketball reflect his well-rounded personality and dedication to continuous learning and improvement.

NOTABLE PUBLICATION

DONG-WOOK KWON – Environmental Engineering – Best Researcher Award

DONG-WOOK KWON - Environmental Engineering - Best Researcher Award

Korea Institute of Science and Technology - South Korea

AUTHOR PROFILE

GOOGLE SCHOLAR

RESEARCH EXPERIENCE

DONG-WOOK KWON has extensive research experience in heterogeneous catalysis for environment and energy. His work focuses on reducing nitrogen oxide (NOx) emissions from combustion exhaust gases through catalytic technology, including selective catalytic reduction (SCR) of NOx by NH3, particularly for diesel engine emission control. Additionally, he has been involved in discovering catalytic materials and improving chemical processes to mitigate atmospheric pollutants from stationary and mobile sources, such as catalytic degradation of NH3, CO, and odorants, and catalytic decomposition of N2O. His research also encompasses the catalytic oxidation of indoor air pollutants to enhance indoor air quality, targeting ambient HCHO & CO oxidation, catalytic oxidation of volatile organic compounds (VOCs), and catalytic decomposition of ozone.

EDUCATION

DONG-WOOK KWON earned his Ph.D. in Environmental Energy Engineering from Kyonggi University, South Korea, in February 2016. His doctoral thesis focused on the roles of promoters and the SCR performance in metal-promoted vanadium-based deNOx catalysts. He also holds a Master's degree (2012) and a Bachelor's degree (2010) in Environmental Energy Engineering from the same institution.

PROFESSIONAL EXPERIENCE

Since March 2020, DONG-WOOK KWON has been a Senior Researcher at the Extreme Materials Research Center, Korea Institute of Science and Technology (KIST). He previously worked as a Researcher at KIST from September 2018 to February 2020 and as a Post-Doc at the Materials Architecturing Research Center, KIST, from July 2017 to August 2018.

REGISTERED PATENTS

DONG-WOOK KWON has several registered patents, including:

  1. NOx reduction catalysts enabling their regeneration at low temperatures (Republic of Korea, Japan, USA, China).
  2. Rare-earth metal vanadates catalysts for nitrogen oxide reduction at low temperatures (Republic of Korea, Japan, USA, China).
  3. Heterogeneous catalysts and preparing methods of the same (Republic of Korea).
  4. Platinum-based catalyst for removing hydrogen at room temperature (Republic of Korea).
  5. Preparing method of platinum/vanadium/titania catalyst for removing ammonia (Republic of Korea).
  6. Vanadium-based denitration catalyst and preparing method of the same (Republic of Korea).

RESEARCH THEMES

His research themes include the catalytic reduction of NOx emissions, discovery and improvement of catalytic materials for atmospheric pollutant mitigation, and the catalytic oxidation of indoor air pollutants. His work significantly contributes to the fields of environmental and energy engineering through advanced catalysis technology.

PATENT CONTRIBUTIONS

DONG-WOOK KWON's patent contributions demonstrate his innovative approaches in developing effective catalysts for environmental applications, showcasing his expertise in creating solutions for low-temperature NOx reduction, ammonia removal, and hydrogen elimination at room temperature.

RESEARCH IMPACT

The impact of DONG-WOOK KWON's research is evident in the advancements in catalytic technologies for emission control and air quality improvement. His contributions provide significant insights and practical solutions for addressing environmental challenges through cutting-edge catalytic processes.

NOTABLE PUBLICATION

Er composition (X)-mediated catalytic properties of Ce1-XErXVO4 surfaces for selective catalytic NOX reduction with NH3 at elevated temperatures 2021 (27)

Unveiling the traits of rare earth metal (RM)-substituted bimetallic Ce0. 5RM0. 5V1O4 phases to activate selective NH3 oxidation and NOX reduction 2020 (28)

A dual catalytic strategy by the nature of the functionalization effect as well as active species on vanadium-based catalyst for enhanced low temperature SCR 2021 (56)

The role of molybdenum on the enhanced performance and SO2 resistance of V/Mo-Ti catalysts for NH3-SCR 2019 (74)

Exploration of surface properties of Sb-promoted copper vanadate catalysts for selective catalytic reduction of NOX by NH3 2018 (62)

Augustine Gyan – Environmental Science – Best Researcher Award

Augustine Gyan - Environmental Science - Best Researcher Award

University of Bayreuth - Germany

AUTHOR PROFILE

SCOPUS
ORCID

AUGUSTINE GYAN, PhD CANDIDATE IN SOCIAL ANTHROPOLOGY

Augustine Gyan is currently pursuing a Ph.D. in Social Anthropology at the University of Bayreuth, Germany, where his research focuses on issues of legal pluralism and digital governance in the context of land administration in Ghana. His academic journey began with a B.A. (Hons) in Sociology with Information Studies from the University of Ghana, followed by dual M.Phil degrees in Anthropology of Development and Global Development Theories and Practice from the University of Bergen, Norway. Augustine's scholarly pursuits are supported by prestigious scholarships such as the DAAD and the Norwegian Quota Scholarship, reflecting his dedication to advancing anthropological discourse in development studies.

RESEARCH AND PUBLICATIONS

Augustine has contributed significantly to the field through his research and publications. His forthcoming book chapters and submitted papers delve into critical issues surrounding the social and environmental impacts of mining in Ghana, and the complexities of digital governance in land administration. Augustine also serves as Editor of BIGSASWorks! at the University of Bayreuth, Germany, demonstrating his commitment to academic excellence and scholarly dissemination.

TEACHING AND ACADEMIC ENGAGEMENTS

Complementing his research, Augustine has engaged in teaching and academic mentorship, notably as a Tutor at Obiri Yeboah Senior High School and as a Junior Fellow at the University of Bayreuth. His teaching experiences underscore his passion for imparting knowledge and fostering intellectual growth among students.

CONFERENCE AND WORKSHOP PARTICIPATION

Augustine actively participates in international conferences and workshops, where he presents his research findings and engages with peers and scholars. His recent presentations include topics on legal pluralism, extractivism, and digital transformations in land governance across Africa, reflecting his interdisciplinary approach and contribution to global discourse.

PROFESSIONAL DEVELOPMENT AND SKILLS

Augustine is committed to continuous professional development, evident from his advanced training in SPSS, thematic analysis, and reflexive thematic analysis. His proficiency in research methodologies and analytical tools strengthens his ability to conduct rigorous and insightful anthropological research.

INSTITUTIONAL AFFILIATIONS

Throughout his academic journey, Augustine has established strong affiliations with key institutions such as the Ghana Chamber of Mines, Minerals Commission, and various academic departments and research centers. These affiliations underscore his collaborative approach to research and his impact on policy and practice in Ghana.

COMMUNITY ENGAGEMENT AND LEADERSHIP

Beyond academia, Augustine has demonstrated leadership and community service through roles such as a field officer at the Assinman Health Insurance Scheme and as an election committee member at the Bayreuth International Graduate School of African Studies. His community engagements highlight his commitment to bridging academic research with practical community development initiatives.

Through his multifaceted contributions to academia, research, teaching, and community service, Augustine Gyan exemplifies a dedicated scholar whose work significantly influences anthropological discourse and societal development.

NOTABLE PUBLICATION

Environmental Leadership in Civil Engineering Award

Introduction: Welcome to the pinnacle of environmental leadership in civil engineering! The "Best Research Environmental Leadership in Civil Engineering Award" honors visionaries who lead the way in sustainable infrastructure solutions. This prestigious award recognizes outstanding research shaping the future of environmentally conscious civil engineering practices.

Award Eligibility: Open to global participants, this award has no age limits, embracing talent from diverse backgrounds. Qualifications include a demonstrated commitment to environmental leadership in civil engineering, with a focus on innovative and sustainable solutions. Encouragement is given for the submission of impactful publications.

Requirements: Applicants are required to submit their pioneering work, accompanied by a comprehensive biography, abstract, and supporting files. Evaluation criteria emphasize originality, environmental impact, and potential for widespread implementation. Strict adherence to submission guidelines is crucial for a fair and thorough assessment.

Submission Guidelines: Follow the submission guidelines meticulously to ensure your entry aligns with the award's objectives. Provide a detailed biography, a compelling abstract, and all necessary supporting files to offer a holistic view of your impactful work.

Recognition: Winners will gain widespread recognition for their groundbreaking contributions to environmental leadership in civil engineering. The award serves as a platform to showcase your research on a global scale, fostering collaboration and knowledge-sharing within the industry.

Community Impact: The awarded research is expected to make a positive impact on communities, demonstrating tangible benefits in terms of sustainability, resilience, and environmental conservation. The award seeks projects that actively contribute to building a more sustainable and eco-friendly future.