Anees ahmad | sustainable green energy | Best Researcher Award

Mr. Anees ahmad | sustainable green energy | Best Researcher Award

PhD Student, Chongqing University, Chongqing 400044, ChinaΒ πŸ†

Anees Ahmad is a dedicated PhD candidate in the Institute of Engineering Thermophysics, School of Energy and Power Engineering at Chongqing University, China. His research focuses on Power Engineering and Engineering Thermodynamics, with a strong emphasis on renewable energy, alternative fuels, waste-to-energy, and resource recovery. He has a Master of Philosophy in Environmental Sciences from Government College University Lahore, Pakistan, and a Master of Science in Environmental Science from the University of Peshawar. With two years of experience as a research assistant, he has contributed significantly to sustainability studies, life cycle assessments, and environmental techno-economic analysis. Anees has published over 10 journal papers, 11 conference papers, and two book chapters, along with delivering five invited talks at various national and international forums. His research contributions have been cited more than 75 times, with a total impact factor of over 68, an H-index of 6, and a research interest score above 90. He actively collaborates with researchers from 17 different countries and serves as a review editor for prestigious journals such as Renewable & Sustainable Energy Reviews, Journal of Energy Storage, and Environmental Research. Apart from academia, he is engaged in consultation services for global organizations, including the World Bank Developmental Program, Asian Bank Foundation, and National Bio Energy Ventures.

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Education πŸŽ“

Anees Ahmad is currently pursuing a Doctor of Philosophy (PhD) in Power Engineering and Engineering Thermophysics at Chongqing University, China (2024-Present). He completed his Master of Philosophy (MPhil) in Environmental Sciences (2020-2022) from Government College University Lahore, Pakistan, where his thesis focused on the Techno-economic and Environmental Assessment of Bio-fertilizer Production from Food Waste in Lahore City. Before that, he earned a Master of Science (MSc) in Environmental Science (2017-2019) from the University of Peshawar, Pakistan, with a research focus on the Socio-Economic and Environmental Impact Assessment of Trophy Hunting of Markhor in District Chitral. His academic journey began with a Bachelor of Science (BSc) in Biological Sciences (2015-2017) from Shaheed Benazir Bhutto University, Dir Upper, Pakistan.

Professional Experience πŸ’Ό

Anees Ahmad has extensive experience in sustainability, energy systems, and environmental assessment. He worked as a research assistant for two years at the Sustainable Development Study Centre, contributing to life cycle analysis, project management, and techno-economic feasibility studies. He has been involved in various national and international development projects, including the technical assessment of bio-pellets plant design for Bio Energy Ventures Limited and the environmental performance assessment of solid waste management facilities for the World Bank and Environmental Protection Department (EPD), Punjab. Additionally, he has contributed to the initial environmental examination of a water rehabilitation project in collaboration with the Environmental Protection Agency (EPA) and the Asian Bank. His research leadership is evident in his role as a Co-Investigator in a King Khalid University-funded project on plastic waste gasification for syngas and electricity generation using life cycle modeling.

Research Interests πŸ”¬

Anees Ahmad’s research revolves around renewable energy, alternative fuels, bioenergy, waste-to-energy, and resource recovery. He specializes in biorefinery technologies, anaerobic digestion, hydrothermal liquefaction, and environmental sustainability assessments. His expertise extends to techno-economic analysis, life cycle modeling, and solid waste management. He actively explores circular economy solutions, focusing on biofuel production, bioproducts valorization, and sustainable waste treatment strategies. His collaborations with researchers from 17 different countries further enrich his global research impact.

Awards & Achievements πŸ…

Anees Ahmad has received numerous accolades for his outstanding contributions to sustainable energy and environmental sciences. His work has been cited over 75 times, with an H-index of 6, a total impact factor exceeding 68, and a research interest score above 90. He has delivered five invited talks at prestigious international forums and serves as a review editor for high-impact journals such as Renewable & Sustainable Energy Reviews, Journal of Energy Storage, Environmental Research, and Renewable Energy. Additionally, his involvement with global organizations, including the UN Global Community of Learners, the UN Environmental Program, and the Asian Federation of Biotechnology (AFOB), has strengthened his professional impact.

Publications πŸ“š

Advancing Sustainable Energy: Environmental and Economic Assessment of Plastic Waste Gasification for Syngas and Electricity Generation Using Life Cycle Modeling – Sustainability, MDPI (2025, IF 3.3) πŸ”— Read Here

Advancing Biorefinery Technologies through Transesterification and Hydrothermal Liquefaction for Biodiesel and Bioproducts Production – Journal of the Taiwan Institute of Chemical Engineers, Elsevier (2024, IF 5.5) πŸ”— Read Here

Advancing Biohydrogen Production from Organic Fraction of Municipal Solid Waste through Thermal Liquefaction – International Journal of Hydrogen Energy, Elsevier (2024, IF 7.2) πŸ”— Read Here

Sustainability Assessment of Biofuel and Value-Added Products from Organic Fraction of Municipal Solid Waste – Environmental Research, Elsevier (2024, IF 8.4) πŸ”— Read Here

Empirical Analysis of Cost-Effective and Equitable Solid Waste Management Systems under Environmental and Economic Perspectives – Environmental Research, Elsevier (2024, IF 8.4) πŸ”— Read Here

Benign-by-Design Plant Extract-Mediated Preparation of Copper Oxide Nanoparticles for Environmentally Related Applications – Environmental Research, Elsevier (2024, IF 8.4) πŸ”— Read Here

Green Synthesis of ZnO Nanocubes from Ceropegia omissa Extract for Photocatalytic Degradation of Bisphenol A under Visible Light to Mitigate Water Pollution – Environmental Research, Elsevier (2024, IF 8.4) πŸ”— Read Here

Advancing Biodiesel Production System from Mixed Vegetable Oil Waste: A Life Cycle Assessment of Environmental and Economic Outcomes – Sustainability, MDPI (2023, IF 3.9) πŸ”— Read Here

Editorial: Integrated Waste Biorefineries: Achieving Sustainable Development Goals – Frontiers in Energy Research (2023, IF 3.9) πŸ”— Read Here

Unlocking Integrated Waste Biorefinery Approach by Predicting Calorific Value of Waste Biomass – Environmental Research, Elsevier (2023, IF 8.4) πŸ”— Read Here

Conclusion πŸ†

Anees Ahmad is a highly deserving candidate for the Best Researcher Award, with his exceptional contributions to renewable energy, sustainability, and environmental solutions. His solid academic background, impressive publication record, and active involvement in international collaborations and global organizations make him an outstanding researcher in his field. With some additional focus on industry partnerships and outreach, Anees has the potential to further solidify his position as a leader in sustainable energy research. His innovative approach to tackling critical environmental challenges positions him as an excellent candidate for the award.

Jyh-Jier Ho | Green Energy Devices | Best Researcher Award

Prof. Dr. Jyh-Jier Ho | Green Energy Devices | Best Researcher Award

Prof. @ Electrical Engineering Department, National Taiwan Ocean University, TaiwanΒ Β πŸ“–βœ¨

Prof. Jyh-Jier Ho is a distinguished scholar in electrical engineering, specializing in green energy and optoelectronics. Since 2003, he has been a professor at the Electrical Engineering Department of National Taiwan Ocean University (NTOU), where he also serves as Director of the Center for Green Energy and Photo-electronics. From 2021 to 2024, he chaired the department, contributing significantly to research and academic excellence. He collaborates with UCLA’s Device Research Lab, focusing on nano-science and clean technologies. With over 262 publications and more than ten patents, Prof. Ho is a leading figure in high-performance opto-electronic sensing devices. πŸ“‘πŸ”¬

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Education πŸŽ“πŸ“š

Prof. Jyh-Jier Ho holds advanced degrees in electrical engineering, underpinning his expertise in optoelectronics and green technology. His academic journey includes extensive research in nano-electronics and photonics, contributing to the development of high-performance sensors for medical and environmental applications. His affiliation with renowned institutions, including the University of California, Los Angeles, has further expanded his academic and technological impact. 🌱⚑

Experience πŸ«πŸ”§

With a career spanning over two decades, Prof. Ho has been a professor at NTOU since 2003 and Director of the Center for Green Energy and Photo-electronics. From 2021 to 2024, he served as the Chair of the Electrical Engineering Department. His international experience includes research at UCLA, where he contributed to clean energy technologies. His work integrates academia and industry, focusing on sustainable optoelectronics, semiconductor materials, and advanced photonic systems. πŸ’‘πŸ”

Research Interests πŸ”¬πŸŒ

Prof. Ho’s research focuses on high-performance opto-electronic sensing devices for nano-electronic and medical applications. His expertise spans advanced photovoltaic materials, semiconductor technologies, and green energy innovations. He has led significant research on Cu-(In, Ga)-Seβ‚‚ (CIGSe) solar cells, pioneering eco-friendly advancements in renewable energy. His work on nano-photonic structures and flexible electronics contributes to sustainable technological solutions. βš™οΈπŸ”†

Awards and Achievements πŸ†πŸŽ–οΈ

Prof. Ho has received multiple accolades for his contributions to electrical engineering and green energy research. His patented innovations, including solar-powered image analysis systems, highlight his impact in sustainable technology. As a key member of international research collaborations, he has been recognized for his advancements in semiconductor devices and clean energy solutions. 🌟⚑

Publications πŸ“„πŸ”—

Micro-Size Layers Evaluation of CIGSe Solar Cells on Flexible Substrates by Two-Segment Process Improved for Overall Efficiencies – Molecules, 2025. πŸ”—

Enhancing Thickness Uniformity of Nbβ‚‚Oβ‚…/SiOβ‚‚ Multilayers Using Shadow Masks for Flexible Color-Filtering Applications – Micromachines, 2024. πŸ”—

Optoelectronic Effects of Copper-Indium-Gallium-Sulfur (CIGSβ‚‚)-Solar Cells Prepared by Three-Stage Co-Evaporation Process Technology – Micromachines, 2023. πŸ”—

Performance of High-Efficiency Avalanche Poly-SiGe Devices for Photo-Sensing Applications – Sensors, 2022. πŸ”—

Rear-Surface Line-Contact Optimization Using Screen-Print Techniques on Crystalline Solar Cells for Industrial Applications – Materials Science in Semiconductor Processing, 2018. πŸ”—

Improving the Performance of Solar Cells with Novel Buffer Structure by the Chemical Bath Deposition Technique – Materials Science in Semiconductor Processing, 2017. πŸ”—

Conclusion 🎯

Prof. Jyh-Jier Ho is a highly deserving candidate for the Best Researcher Award due to his outstanding contributions to optoelectronics, semiconductor devices, and green energy technologies. His prolific publication record, patented innovations, academic leadership, and sustainable research impact make him a leading figure in his field. Strengthening industrial applications, policy engagement, and international funding diversification could further enhance his research’s real-world impact. πŸš€