Chuanshan Dai | Thermal Energy Enginnering | Best Researcher Award

Prof. Dr. Chuanshan Dai | Thermal Energy Enginnering | Best Researcher Award

Professor at Tianjin University, China

Professor Chuanshan Dai currently serves as Professor and Director at the Tianjin Geothermal Research and Training Center within the School of Mechanical Engineering at Tianjin University. A recognized leader in geothermal engineering and sustainable energy systems, Professor Dai has devoted decades to advancing renewable energy solutions, particularly in the fields of heat transfer and geothermal resource utilization. His expertise in both academic research and practical engineering has had a significant impact on the development of clean energy strategies in China and globally. With over 30 years of experience, his academic and applied contributions continue to shape innovative geothermal technologies and influence policy development in renewable energy management.

Profile

Scopus

EDUCATION

Professor Dai began his academic journey at Tianjin University, where he received his Bachelor of Science in 1985. He continued to advance his expertise in thermal sciences by earning a Master of Science from Harbin Institute of Technology in 1988. Driven by an enduring passion for geothermal systems, he pursued a Ph.D. at Okayama University in Japan, which he completed in 2003. Throughout his educational path, he secured prestigious fellowships, including from the Geothermal Institute at Auckland University (New Zealand, 1990), the United Nations University Geothermal Training Programme (Iceland, 1992), and the Monbusho Fellowship from the Japanese government (1999–2003), highlighting his international recognition and cross-border expertise.

EXPERIENCE

With decades of professional and academic service, Professor Dai has played a pivotal role in research and training initiatives focused on geothermal energy. As a faculty member and director at Tianjin University, he has led critical projects in heat transfer optimization, multiphase flow, and district heating. His academic responsibilities include teaching courses such as “Numerical Heat Transfer,” “Multiphase Flow and Heat Transfer,” “Energy Resources and Management,” and “Geothermal Heat Pump.” These courses span both undergraduate and postgraduate levels and emphasize his commitment to nurturing the next generation of energy engineers. He also contributes to policy consultation and infrastructure planning, bridging the gap between theoretical research and field applications.

RESEARCH INTEREST

Professor Dai’s research interests focus on geothermal energy systems, including heat extraction technologies, ground source heat pump systems, district heating solutions, and numerical modeling of heat and mass transfer. His investigations have led to breakthroughs in lattice Boltzmann methods, natural circulation loops, and open-loop deep geothermal wells. His integrated approach combines computational simulation, experimental validation, and applied engineering to improve the efficiency and sustainability of thermal energy systems. He is particularly known for optimizing the thermal performance of borehole heat exchangers and enhancing district heating systems with renewable sources.

AWARD

Professor Dai has been consistently recognized for his contributions to the field of geothermal engineering. His international fellowships in New Zealand, Iceland, and Japan reflect his early promise and sustained excellence. He has also been nominated and honored in various scientific and academic platforms for his leadership in renewable energy research. His educational outreach and innovation have earned him nominations for national and institutional awards, acknowledging both his technical competence and mentorship in the energy sector.

PUBLICATION

Professor Dai’s research has led to numerous high-impact publications, with several cited widely in the geothermal and energy engineering communities. His recent co-authored article, “An implicit lattice Boltzmann flux solver with a projection-based interpolation scheme for the convection-diffusion equation,” published in Computers and Mathematics with Applications (2024), addresses simulation accuracy for heat transfer. Another 2024 work in Renewable Energy, “Optimization of a district heating system coupled with a deep open-loop geothermal well and heat pumps,” offers practical solutions for energy efficiency. In 2022, he co-authored “Analyses and reconstruction of the lattice Boltzmann flux solver,” in the Journal of Computational Physics, cited for improving solver performance. His 2019 article in Applied Energy, “An experiment on heat extraction from a deep geothermal well using a downhole coaxial open loop design,” has influenced geothermal system design strategies. His 2020 publication in the International Journal of Heat and Mass Transfer, “Heat transfer enhancement based on single phase natural circulation loops,” is referenced for its thermal management techniques. Another 2022 study in Geothermics, “The influence of thermal boundary conditions of wellbore on the heat extraction performance of deep borehole heat exchangers,” provides key insights for system efficiency. These works are widely cited and have made significant scholarly impact in both theoretical and applied energy engineering.

CONCLUSION

Chuanshan Dai exemplifies the qualities of a top-tier researcher through his academic excellence, international fellowships, influential teaching, and pioneering research. His deep commitment to sustainable energy and heat transfer research, along with his global impact and leadership, make him an outstanding candidate for the Research for Best Researcher Award.

Konan Edmond KOUASSI | Biomass and energy | Best Researcher Award

Dr. Konan Edmond KOUASSI | Biomass and energy | Best Researcher Award

Teacher-researcher at UNA, Ivory Coast

Dr. Kouassi Konan Edmond is a Maître-Assistant in Chemistry (Process Engineering) at the Université Nangui Abrogoua (UNA), Côte d’Ivoire. With extensive expertise in renewable energy, waste valorization, and water treatment processes, he has contributed significantly to the field of sustainable chemical engineering. His research focuses on optimizing biofuel production, energy recovery from biomass, and environmental sustainability. He has participated in multiple international scientific conferences and has authored numerous peer-reviewed publications.

Profile

Scopus

EDUCATION

Dr. Kouassi obtained his Doctorate in Fundamental and Applied Sciences (Chemistry – Process Engineering) from Université Nangui Abrogoua in 2016. His dissertation focused on optimizing vegetable oil transesterification for fuel production using experimental designs and artificial intelligence. He previously earned a Diplôme d’Etudes Approfondies (DEA) in Material Sciences and a Master’s in Physical Chemistry, specializing in thermodynamics and process engineering. His early education includes a Bachelor’s degree in Fundamental Sciences and Applied Chemistry.

EXPERIENCE

Since 2018, Dr. Kouassi has been teaching General Chemistry and Energy Process Engineering at UNA, covering subjects such as thermodynamics, kinetics, and water chemistry. His professional background includes doctoral research at the Laboratory of Industrial Processes and Renewable Energy (LAPISEN) and collaborations with leading researchers in bioenergy and waste valorization. He has also been involved in capacity-building workshops and training programs to advance scientific research methodologies.

RESEARCH INTEREST

Dr. Kouassi’s research focuses on renewable energy production, process optimization, and environmental sustainability. His expertise includes biofuel synthesis, wastewater treatment, solid waste management, and the application of artificial intelligence in chemical engineering. He has extensively studied biodiesel production through transesterification and the valorization of agricultural waste for energy applications. His work contributes to advancing sustainable energy solutions in Côte d’Ivoire and beyond.

AWARDS

Dr. Kouassi has been recognized for his contributions to green chemistry and bioenergy. He has received awards for outstanding research in chemical engineering, including excellence awards for his work on biofuel optimization. His active participation in scientific societies such as the West African Society of Chemistry (SOACHIM) has further established his reputation as a leading researcher in sustainable energy solutions.

PUBLICATIONS

Kouassi Konan Edmond et al. (2018). “Optimization of Rubber Seed Oil Transesterification to Biodiesel Using Experimental Designs and Artificial Neural Networks.” Green and Sustainable Chemistry, cited by multiple energy research articles.

Abollé Abollé & Kouassi Konan Edmond et al. (2017). “Empirical Correlations Between Viscosity, Density, and Cloud Point of Diesel Oil Mixtures with Straight Vegetable Oils.” International Journal of Engineering and Technical Research.

Alain Stéphane Assémian & Kouassi Konan Edmond et al. (2018). “In-Situ Generation of Effective Coagulant to Treat Textile Bio-Refractory Wastewater.” Journal of Environmental Chemical Engineering.

Yao Joseph Adjoumani & Kouassi Konan Edmond et al. (2019). “Modeling and Optimization of Two Clays Acidic Activation for Phosphate Ions Removal.” Journal of Water Resource and Protection.

Horo Koné & Kouassi Konan Edmond et al. (2020). “Thermal Regeneration of Activated Carbon Saturated with Nitrate Ions.” International Journal of Advanced Engineering, Management, and Science.

ZRAN Vanh Eric-Simon & Kouassi Konan Edmond et al. (2022). “Valorization of Plantain Peels Waste in Biosorbents for Methylene Blue Removal.” International Journal of Scientific Research and Reviews.

Moya Joëlle Carole Akossi & Kouassi Konan Edmond et al. (2023). “Transesterification of Vegetable Oils into Biodiesel by an Immobilized Lipase: A Review.” Biofuels.

CONCLUSION

Dr. Kouassi Konan Edmond’s extensive research output, scientific leadership, and contributions to process engineering and environmental sustainability make him an outstanding candidate for the Best Researcher Award. His work advances renewable energy solutions and promotes sustainable industrial practices, highlighting his impact on academia and society.

Alex Tro-Cabrera | Energy Engineering | Best Researcher Award

Mr Alex Tro-Cabrera | Energy Engineering | Best Researcher Award

PhD Student, University of the Basque Country (UPV/EHU), Spain

Alex Tro-Cabrera is a researcher in training at the Universidad del País Vasco (UPV/EHU) in the Department of Electronic Technology. He holds a degree in Renewable Energy Engineering (2021) and a master’s in Energy Efficiency and Sustainability (2022). His doctoral research, under the EHUkhi project, focuses on photovoltaic potential in buildings, community energy models, and sustainability financing. He has worked at the Instituto de Ingeniería Energética (UPV) and DEBEGESA, contributing to thermal energy systems and microgrid feasibility studies. He is a member of EKOPOL, a multidisciplinary research group on political economy and ecology.

PROFESSIONAL PROFILE

Orcid

STRENGTHS FOR THE AWARD

  1. Strong Academic Background
    Alex Tro-Cabrera holds a Master’s in Research in Energy Efficiency and Sustainability from the University of the Basque Country (EHU/UPV) and a Bachelor’s in Renewable Energy Engineering from the same institution. His academic progression demonstrates a clear focus on sustainability and energy efficiency.
  2. Active Research Contributions
    He is currently a doctoral researcher in Electronic Technology at the University of the Basque Country and is part of the EKOPOL research group, recognized by the Basque Government. His work focuses on photovoltaic integration in buildings, energy communities, and sustainability impacts, aligning well with modern energy transition challenges.
  3. Publications in High-Impact Journals
    • “A methodology for assessing rooftop solar photovoltaic potential using GIS open-source software and the EROI constraint” (Energy and Buildings, 2025)
    • “Energy rehabilitation of a construction quality control laboratory” (Engineering Thermodynamics Conference, 2022)
    • “Optimización de la instalación PV del LCCE” (2022, Universidad del País Vasco)
      These works highlight his expertise in GIS-based solar energy assessments, photovoltaic optimization, and building energy efficiency, demonstrating both theoretical and applied research impact.
  4. Industry & Professional Experience
    • Worked at the Instituto de Ingeniería Energética (Universitat Politècnica de València) as a Thermal Lab Technician (2017).
    • Interned at DEBEGESA, analyzing microgrid viability (2019).
      His past industry experience, coupled with his academic research, makes him a well-rounded candidate for the award.
  5. Research Funding and Recognition
    He is funded by the Eusko Jaurlaritza’s Programa Investigo (2022-2024), which supports outstanding early-career researchers. His involvement in a government-backed project (EHUkhi) further solidifies his research credibility.

AREAS FOR IMPROVEMENT

  • Broader International Exposure: While he has strong regional recognition, increased collaboration with international research institutions or projects would strengthen his global impact.
  • Diversification of Research Publications: Expanding publications in high-impact international journals and participating in leading global conferences could enhance his academic profile.

EDUCATION 🎓

  • Máster en Investigación en Eficiencia Energética y Sostenibilidad – Universidad del País Vasco (2022)
  • Grado en Ingeniería de Energías Renovables – Universidad del País Vasco (2021)
  • Técnico Superior en Energías Renovables – CIPFP Catarroja (2017)

EXPERIENCE 🏆

  • Investigador predoctoral – Universidad del País Vasco (2022–Present)
  • Investigador en prácticas – DEBEGESA (2019)
  • Técnico Superior en Investigación – Instituto de Ingeniería Energética, UPV (2017)

AWARDS AND HONORS 🏅

  • Programa Investigo – Eusko Jaurlaritza (2022–2024)

RESEARCH FOCUS 🔬

  • Renewable Energy – Photovoltaics, Micro-wind, Biomass
  • Life Cycle Analysis (LCA) – Environmental and social impacts
  • Energy Communities – Collective self-consumption models
  • Sustainability & Ecologism – Green energy transitions

PUBLICATION TOP NOTES 📄

  • A methodology for assessing rooftop solar photovoltaic potential using GIS open-source software and the EROI constraintEnergy and Buildings (2025)
  • Optimización de la instalación PV del LCCEUniversidad del País Vasco (2022)
  • Energy rehabilitation of a construction quality control laboratoryConference on Engineering Thermodynamics (2022)

CONCLUSION

Alex Tro-Cabrera is an outstanding researcher in renewable energy, photovoltaics, and energy sustainability. His combination of academic excellence, impactful research, practical experience, and government-backed projects makes him a strong contender for the Best Researcher Award. With further international collaborations and diversified high-impact publications, he can establish himself as a leading expert in sustainable energy solutions.

Adnan Ibrahim | Sustainable Energy Technology | Best Researcher Award Universiti Kebangsaan Malaysia

Assist. Prof. Dr Adnan Ibrahim | Sustainable Energy Technology | Best Researcher Award

Research Fellow, Universiti Kebangsaan Malaysia, Malaysia

Adnan Ibrahim is an Associate Professor specializing in Renewable Energy at Universiti Kebangsaan Malaysia. Renowned for his pioneering work in solar energy and thermal systems, he has contributed significantly to photovoltaic thermal (PVT) technologies and nanofluid-based solar applications. With over a decade of academic and industrial experience, he has published extensively in top-tier journals and presented at international conferences. His research emphasizes innovative solutions to enhance the efficiency and sustainability of energy systems. Dr. Ibrahim’s collaborations with global experts have established him as a thought leader in renewable energy technologies.

PROFILE

Google scholar

Orcid

Scopus

STRENGTHS FOR THE AWARD

  1. Expertise in Renewable Energy: Dr. Adnan Ibrahim is an accomplished academic in Renewable Energy with a Ph.D. from UKM, focusing on Solar Energy Technology and Building Integrated Photovoltaic Thermal Systems (BIPVT).
  2. Prolific Research Output: His work is well-cited, with notable contributions in photovoltaic thermal (PVT) technology, including hybrid systems, nanofluids, and nano-PCM-based advancements.
  3. High Impact Publications: Several of his publications have citations exceeding 500, demonstrating significant influence in the field.
  4. Innovation and Interdisciplinary Work: Research on nanofluid and nano-PCM, as well as passive cooling PV modules with fins and planar reflectors, showcases innovation in enhancing energy efficiency and sustainability.
  5. International Collaboration: Extensive collaborations with researchers worldwide, adding diversity and a global perspective to his research.
  6. Academic Leadership: As an Associate Professor at Universiti Kebangsaan Malaysia, he is actively involved in teaching and mentoring, contributing to the academic community.
  7. Relevance and Applicability: His work in energy economic analysis and system optimization addresses real-world challenges in renewable energy implementation.

AREAS FOR IMPROVEMENTS

  1. Broadening Research Applications: Expanding research to include emerging technologies such as hydrogen-based energy systems or carbon capture integration could further solidify his leadership in renewable energy.
  2. Outreach and Policy Impact: Greater emphasis on translating research into actionable policies and industry practices would enhance societal impact.
  3. Grants and Industry Partnerships: Strengthening partnerships with industrial stakeholders for applied research could bolster funding and practical adoption.

EDUCATION

📚 Ph.D. in Renewable Energy (2007-2012) – Universiti Kebangsaan Malaysia (UKM), Malaysia
📚 M.Sc. in Integrated Product Development (2000-2002) – University of Warwick, United Kingdom
📚 B.Eng. in Manufacturing System Engineering (1998-2000) – University of Birmingham, United Kingdom

EXPERIENCE

👨‍🏫 Associate Professor – Universiti Kebangsaan Malaysia, specializing in renewable energy systems and sustainable technologies.
🔬 Lead Researcher – Multiple projects on PVT technologies, building-integrated solar systems, and nanofluid applications.
🌍 International Collaborator – Partnering with global institutions to advance solar thermal research.
📖 Mentor and Educator – Supervising postgraduate students and delivering impactful lectures on energy sustainability.

AWARDS AND HONORS

🏆 Best Researcher Award – Recognized for outstanding contributions to renewable energy innovation.
🌟 Top Cited Researcher – Multiple papers ranked among the most cited in energy conversion and management journals.
💡 Innovation Excellence Award – Acknowledged for groundbreaking advancements in PVT system technologies.
🎓 Outstanding Educator Award – Celebrated for exceptional teaching and mentoring in renewable energy.

RESEARCH FOCUS

☀️ Solar Energy – Advancing photovoltaic thermal (PVT) systems for higher energy efficiency.
🌡️ Thermal Systems – Developing nanofluid and nano-PCM-based collectors for sustainable applications.
🏢 Building-Integrated Systems – Innovating BIPVT systems for residential and commercial energy solutions.
🔬 Energy Optimization – Focusing on exergy and thermal analysis for optimal system performance.

PUBLICATION TOP NOTES

📄 Performance analysis of photovoltaic thermal (PVT) water collectors
📄 Recent advances in flat plate photovoltaic/thermal (PV/T) solar collectors
📄 Evaluation of the nanofluid and nano-PCM based photovoltaic thermal (PVT) system: An experimental study
📄 Efficiencies and improvement potential of building-integrated photovoltaic thermal (BIPVT) system
📄 Comparison of prediction methods of PV/T nanofluid and nano-PCM system using a measured dataset and artificial neural network
📄 Performance of photovoltaic thermal collector (PVT) with different absorbers design
📄 Energy and exergy analyses of photovoltaic thermal collector with ∇-groove
📄 Turbulent convective heat transfer of silica oxide nanofluid through corrugated channels: An experimental and numerical study
📄 Evaluation of Single-Pass Photovoltaic Thermal Air Collector With Rectangular Tunnel Absorber
📄 Hybrid Photovoltaic Thermal (PV/T) Air and Water-Based Solar Collectors Suitable for Building Integrated Applications

CONCLUSION

Dr. Adnan Ibrahim’s significant academic contributions, innovative research in solar energy technology, and dedication to advancing renewable energy systems make him a strong candidate for the Best Researcher Award. By addressing areas such as policy impact and industrial collaboration, he could further enhance his already impressive profile. Overall, his achievements position him as a deserving recipient of this honor.

Alok Kumar – Renewable energy – Best Researcher Award

Alok Kumar - Renewable energy - Best Researcher Award

NIT Nagpur - India

AUTHOR PROFILE

GOOGLE SCHOLAR

ALOK KUMAR 🎓

Alok Kumar is a dedicated Ph.D. candidate in Physics at Visvesvaraya National Institute of Technology (VNIT) Nagpur, India. His academic journey reflects a strong foundation in physics, with an ongoing focus on renewable energy and photovoltaic technologies. With a solid educational background, he aims to contribute significantly to the field through research and innovation.

RESEARCH FOCUS 🔬

His research interests lie in the design and simulation of photovoltaic solar power systems, exploring both grid-connected and off-grid solutions. Under the guidance of experienced faculty, Alok is investigating advanced solar cell technologies and their applications in sustainable energy generation. His work aims to improve the efficiency and accessibility of renewable energy sources for diverse communities.

TEACHING EXPERIENCE 👨‍🏫

Alok has gained valuable teaching experience as a Half-time Teaching/Research Assistant at VNIT Nagpur, where he teaches fundamental physics courses. Previously, he served as a Physics Lecturer at Kendrika Coaching Academy in Lucknow. His teaching philosophy emphasizes the importance of engaging students and fostering a deep understanding of physics concepts.

TECHNICAL SKILLS ⚙️

Proficient in designing LED lights and printed circuit boards, Alok has honed his skills using software tools like Altium and EasyEda. His expertise extends to creating portable solar lights and mobile charging systems tailored for remote areas. His practical skills complement his research, enabling him to bridge theory and application effectively.

CONFERENCES AND WORKSHOPS 📅

Active in the academic community, Alok has participated in numerous conferences and workshops, enhancing his knowledge of nanomaterials and renewable energy technologies. His involvement in these events reflects his commitment to staying updated with the latest advancements in his field. He looks forward to continuing his participation in international conferences to share his findings.

ACHIEVEMENTS AND AWARDS 🏆

Alok has successfully qualified for several prestigious national-level exams in physics, including IIT JAM and GATE. These achievements highlight his dedication to academic excellence and his proficiency in the subject. His hard work and determination have earned him recognition within the academic community.

PROFESSIONAL NETWORKING 🌐

An active member of the scientific community, Alok maintains a professional presence on platforms like LinkedIn, where he connects with fellow researchers and industry professionals. This networking enables him to exchange ideas and collaborate on projects that advance the field of physics and renewable energy.

NOTABLE PUBLICATION

Title: A Review of Photovoltaic Cell Generations and Simplified Overview of Bifacial Photovoltaic Cell Technology
Authors: MS Pattelath, SM Giripunje, AK Verma
Journal: Applied Solar Energy
Year: 2023

Title: Designing and Simulating of New Highly Efficient Ultra-Thin CIGS Solar Cell Device Structure: Plan to Minimize Cost per Watt Price
Authors: A Kumar, SM Giripunje, AK Patel, S Gohri
Journal: Journal of Physics and Chemistry of Solids
Year: 2024

Title: Simulation Study of Cadmium-Free CIGS Solar Cell for Efficiency Enhancement by Minimizing Recombination Losses Through Back Surface Field Mechanism
Authors: A Kumar, SM Giripunje, AK Patel, S Gohri
Journal: Solid State Communications
Year: 2024

Amutha Chinnappan – Urban Solutions and Sustainability – Best Researcher Award

Amutha Chinnappan - Urban Solutions and Sustainability - Best Researcher Award

National University of Singapore - Singapore 

AUTHOR PROFILE

Google Scholar

EARLY ACADEMIC PURSUITS

Amutha Chinnappan's academic journey is marked by excellence in Chemistry, culminating in a Ph.D. in Energy Science and Technology from Myongji University, South Korea. Her doctoral research on new pyridinium dicationic ionic liquids showcased her commitment to innovative solutions in chemical transformations, biomass conversion, and energy applications.

PROFESSIONAL ENDEAVORS

From her postdoctoral research at Myongji University to her current role as a Senior Research Fellow at the National University of Singapore, Amutha has consistently pursued cutting-edge research in Organic Chemistry, Green Chemistry, and Engineering. Her contributions to sustainable technologies, such as passive radiative cooling and nanofiber-based thermal management, underscore her commitment to addressing global challenges.

CONTRIBUTIONS AND RESEARCH FOCUS

Amutha's research interests span a wide range of topics, including ionic liquids, biomass conversion, plastic recycling, and nanomaterials. Her work emphasizes circular economy principles and sustainability, with a particular focus on developing novel materials and technologies for energy efficiency and environmental preservation.

IMPACT AND INFLUENCE

Through her mentorship of students and researchers, Amutha has played a pivotal role in advancing knowledge and fostering innovation in her field. Her collaborative research projects and grants reflect her ability to lead interdisciplinary teams and address pressing societal needs, contributing to urban solutions and sustainability initiatives.

ACADEMIC CITES

Amutha's research has been recognized through numerous awards and grants, reflecting the significance of her contributions to the scientific community. Her publications and projects have garnered attention for their relevance to urban solutions and sustainability, driving positive change in the pursuit of a more sustainable future.

LEGACY AND FUTURE CONTRIBUTIONS

As she continues her academic journey, Amutha's legacy will be defined by her dedication to leveraging chemistry and engineering principles for sustainable development. Through her research, mentorship, and advocacy, she is poised to make lasting contributions to urban solutions and sustainability, shaping the trajectory of scientific inquiry and societal progress.

NOTABLE PUBLICATIUON

Significance of Nanomaterials in Wearables: A Review on Wearable Actuators and Sensors 2019 (511)

Na Chen – carbon energy – Best Researcher Award

Na Chen - carbon energy - Best Researcher Award

Beijing Normal University School of Government - China

AUTHOR PROFILE

ORCID
Google Scholar

EARLY ACADEMIC PURSUITS

Na Chen commenced her academic journey at the School of Government, Beijing Normal University, pursuing a Ph.D. with a specialization in administrative management. Her early academic pursuits were marked by a commitment to exploring solutions to China's public governance and policy issues, with a particular focus on interdisciplinary studies in environmental science, energy, and public policy, including carbon energy-related research.

PROFESSIONAL ENDEAVORS

Throughout her career, Na Chen has been actively engaged in various professional endeavors, contributing significantly to the field of public management. Her research and academic pursuits have centered on developing theories and methods of institutional analysis and public management suitable for China's national conditions, with a notable emphasis on addressing challenges related to carbon energy and environmental sustainability.

CONTRIBUTIONS AND RESEARCH FOCUS ON CARBON ENERGY

Na Chen's research contributions span interdisciplinary studies on water management, land resources, environmental issues, and rural governance, with a particular emphasis on carbon energy-related policies. She has initiated groundbreaking research on the socio-economic impacts of achieving zero-carbon energy by 2030 and has collaborated on studies exploring the dynamics of public governance and policy diffusion, including in the context of carbon energy transitions.

IMPACT AND INFLUENCE

Na Chen's research findings have had a profound impact on academia and policymaking, particularly in shaping national policies related to carbon energy and environmental sustainability. Her published articles, conference papers, and books have been widely cited, reflecting their relevance and influence in advancing knowledge in the field of public management, with a specific focus on carbon energy-related issues.

ACADEMIC CITATIONS

While Na Chen's citation index in databases like Scopus, Web of Science, and PubMed may vary, her research outputs on carbon energy and related topics have garnered significant attention within the academic community. Her publications in high-impact journals and conference proceedings serve as valuable resources for scholars and policymakers alike, contributing to the ongoing discourse on carbon energy and environmental policy.

LEGACY AND FUTURE CONTRIBUTIONS

Na Chen's legacy in academia is characterized by her pioneering research in carbon energy and environmental policy, which has laid the groundwork for future advancements in the field. Her continued dedication to interdisciplinary research and her commitment to addressing pressing societal challenges, including those related to carbon energy, underscore her potential for making further impactful contributions to academia and policymaking in the years to come.

NOTABLE PUBLICATION

Scenario analysis of the socioeconomic impacts of achieving zero-carbon energy by 2030.  2024