Assoc Prof Dr.  Yu-nan Chen – Thermochemical conversion of biomass and organic solid waste – Best Researcher Award

Assoc Prof Dr.  Yu-nan Chen - Thermochemical conversion of biomass and organic solid waste - Best Researcher Award

Xi'an Jiaotong University - China

Author Profile 

SCOPUS 

ORCID 

Early academic pursuits 🎓

Yu-nan Chen's journey in the field of energy and chemical engineering began with his passion for understanding complex chemical reactions. he pursued his education with a focus on chemical processes in extreme conditions, leading him to specialize in the area of supercritical water gasification. his academic foundation was further strengthened by advanced studies at xi’an jiaotong university, where he honed his skills in chemical reaction mechanisms and supercritical fluids.

Professional endeavors 🏛️

currently an associate professor at the state key laboratory of multiphase flow in power engineering at xi’an jiaotong university, yu-nan chen plays a pivotal role in advancing research on energy conversion processes. his professional career is centered around the exploration of coal, biomass, and organic waste gasification, focusing on the utilization of supercritical water. through his leadership in national research projects, chen has positioned himself as a key figure in the field of sustainable energy and resource utilization.

contributions and research focus 🌱

Yu-nan Chen’s research focuses on the supercritical water gasification process, exploring the chemical reaction mechanisms involved. using advanced computational techniques such as density functional theory, he has uncovered the microscopic reaction dynamics of supercritical water, hydrogen, and free radicals. his innovative Thermochemical conversion of biomass and organic solid waste work has contributed significantly to the understanding of how these elements interact during the gasification of coal and biomass, paving the way for more efficient and sustainable energy solutions.

Accolades and recognition 🏅

Yu-nan Chen’s contributions to the field are recognized through his extensive publication record, with over 30 original papers in leading scientific journals. he has also been awarded 11 patents, a testament to the practical application of his research. as a leader in national research initiatives, chen's work has received widespread Thermochemical conversion of biomass and organic solid waste recognition within the scientific community, solidifying his status as an influential figure in chemical engineering and energy research.

Impact and influence 🌍

The impact of yu-nan chen’s research extends beyond academia. his work on supercritical water gasification has practical implications for energy resource management, offering sustainable solutions for the utilization of coal, biomass, and organic waste. by revealing the microscopic reaction mechanisms in these Thermochemical conversion of biomass and organic solid waste processes, his research contributes to the development of cleaner, more efficient energy technologies, influencing both scientific advancements and industrial practices.

Legacy and future contributions 🔮

Yu-nan chen’s legacy lies in his groundbreaking research on supercritical water gasification and his role in promoting sustainable energy utilization. his future work promises to further advance the field, with a continued focus on uncovering deeper insights into the chemical reactions involved in energy conversion processes. chen’s commitment to innovation and sustainability ensures that his research will have lasting influence on both science and society.

Notable Publications

Mr. Chidiebele E. J. Uzoagba – Biofuel and Bioenergy -Best Researcher Award

Mr. Chidiebele E. J. Uzoagba - Biofuel and Bioenergy -Best Researcher Award

African University of Science and Technology, Abuja Nigeria - Nigeria

AUTHOR PROFILE

ORCID

🌱 EARLY ACADEMIC PURSUITS

Chidiebele E. J. Uzoagba's academic journey began with a strong foundation in mechanical engineering. He earned a B.Eng. in Mechanical Engineering with a focus on Energy and Power from the University of Nigeria, Nsukka. His thirst for knowledge propelled him to further studies, culminating in an M.Sc. in Petroleum Engineering and Project Development from the Institute of Petroleum Studies, University of Port Harcourt, in collaboration with IFP School France. His pursuit of academic excellence continued as he embarked on a Ph.D. in Material Science and Engineering, specializing in Biofuels and Bioenergy, at the African University of Science and Technology (AUST), Abuja. Complementing his technical expertise, he also obtained various certifications, including a Mini MBA and an Executive MBA, underscoring his commitment to comprehensive education and professional growth.

🛠️ PROFESSIONAL ENDEAVORS

Chidiebele's career in engineering and management spans over 15 years, marked by significant roles in the oil and gas industry and beyond. He currently serves as the Group Sustainability Lead and Manager of Gas Delivery Projects at Synergy E&P Limited, part of the PANA Group. His leadership extends to academia as the Director and Center Leader at the Centre for Climate Change Adaptation and Mitigation Studies (C3AMS) at AUST. His professional journey includes positions such as Sustainability Consultant at Jecmeralds Engineering Ltd and Head of Energy and Power Management at Alpha Mead Group, showcasing his versatility in various sectors.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

Chidiebele has made notable contributions to the fields of petroleum and mechanical engineering, focusing on sustainability and climate change mitigation. His research interests encompass a wide range of topics, including biofuels, bioenergy, and green building designs. He has developed expertise in facilities management, asset integrity management, and process engineering. His work also involves auditing and quality project management, evidenced by his certifications in ISO 9001:2015 and ISO 41001:2018. His research and practical applications aim to enhance energy efficiency and sustainability in industrial and academic settings.

🏆 ACCOLADES AND RECOGNITION

Chidiebele's contributions have been widely recognized, earning him fellowships with prestigious organizations such as the Nigerian Society of Engineers (FNSE) and the Institute of Management Consultants (FIMC). He is also a certified Project Management Professional (PMP) and a recognized EDGE Expert and Faculty member, certified by the International Finance Corporation (IFC) World Bank. His academic and professional achievements have solidified his reputation as a thought leader in engineering and sustainability.

🌍 IMPACT AND INFLUENCE

Chidiebele has had a profound impact on the engineering and environmental sectors, particularly in Nigeria and the broader African region. His work in promoting sustainable practices and energy efficiency has influenced policy and practice in both the public and private sectors. As an educator and mentor, he has guided numerous students and professionals, fostering a new generation of engineers committed to sustainability and innovation.

🏛️ LEGACY AND FUTURE CONTRIBUTIONS

Chidiebele's legacy lies in his commitment to sustainability and innovation. His work in developing green and sustainable building designs, coupled with his research in biofuels and bioenergy, positions him as a key figure in the transition towards a more sustainable future. He continues to lead efforts in climate change adaptation and mitigation, aiming to leave a lasting impact on the global community. His ongoing academic and professional endeavors promise further contributions to the fields of engineering and environmental science, ensuring a future where sustainability is at the forefront of development.

NOTABLE PUBLICATIONS

Prof. lijuan Jia – Solid waste resource utilization – Best Researcher Award

Prof. lijuan Jia - Solid waste resource utilization - Best Researcher Award

Yunnan Minzu University - China

AUTHOR PROFILE 

SCOPUS

EARLY ACADEMIC PURSUITS

Lijuan Jia embarked on his academic journey by obtaining a Ph.D. in Engineering, positioning himself as a prominent scholar in his field. His early academic pursuits laid the groundwork for his future contributions to the realm of environmental science and technology.

PROFESSIONAL ENDEAVORS

Transitioning into the professional realm, Jia assumed the role of a Professor and Master's supervisor at Yunnan Minzu University. He has been recognized as a top talent in Yunnan Province, further underscoring his dedication to academic excellence and research leadership.

CONTRIBUTIONS AND RESEARCH FOCUS ON SOLID WASTE RESOURCE UTILIZATION

Jia's research focuses on innovative solutions for environmental challenges in the chemical and metallurgical industries. His work encompasses flue gas desulfurization, denitrification technology, and solid waste resource utilization, addressing critical issues in pollution control and waste management.

IMPACT AND INFLUENCE

Lijuan Jia's research has made a significant impact on environmental science and technology, particularly in the areas of flue gas cleaning and solid waste management. His contributions have led to advancements in pollution control technologies and sustainable resource utilization practices, shaping industry standards and regulatory frameworks.

ACADEMIC CITATIONS

Jia's publications have garnered considerable attention within the scientific community, evident from his substantial citation index. His research on flue gas cleaning, mineral slurry utilization, and waste resource recovery has been widely cited, reflecting the relevance and influence of his work in academia and industry.

LEGACY AND FUTURE CONTRIBUTIONS

Lijuan Jia's legacy lies in his commitment to addressing pressing environmental challenges through innovative research and technology development. Moving forward, his work is poised to continue shaping environmental policy and practice, with a focus on promoting sustainable industrial processes and waste management solutions.

NOTABLE PUBLICATIONS

ZIF-67-derived Co@NC as an efficient catalyst for magnesium sulfite oxidation in the flue gas desulfurization process  2024

Synthesis of Ti3C2Tx nanosheets / ZnO nanowires composite material for NO2 gas sensing  2024

High efficiency removal of NO using waste calcium carbide slag by facile KOH modification  2024

Catalytic hydrolysis of monochlorodifluoromethane over ZnO/ZrO2 catalysts at low temperatures  2024

Enhanced low-temperature selective catalytic reduction (SCR) activity and H2O and SO2 resistance of flower-like  2024