Kaisan Muhammad Usman | Energy Efficiency | Best Researcher Award

Assoc. Prof. Dr Kaisan Muhammad Usman | Energy Efficiency | Best Researcher Award

Associate Professor, Department of Mechanical Engineering, Ahmadu Bello University, Zaria, Nigeria 

Dr. Kaisan Muhammad Usman is an Associate Professor at the Department of Mechanical Engineering, Ahmadu Bello University (ABU) Zaria, Nigeria. He specializes in automotive engineering, biofuels, bio-lubricants, internal combustion engines, emissions, and electric vehicles. With a wealth of experience spanning academia and industry, Dr. Kaisan has held various positions, including Deputy Director at the National Agency for Science and Engineering Infrastructure (NASENI), Scientific Officer at the Energy Commission of Nigeria, and Managing Director at the Heavy Equipment and Machinery Development Institute. He has contributed significantly to research on renewable energy, energy efficiency, and emission control technologies. His work is widely recognized in scholarly circles, having published numerous research papers in reputable journals.

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Strengths for the Award

Dr. Kaisan Muhammad Usman is a highly accomplished and prolific researcher, making significant contributions to the fields of automotive engineering, biofuels, and renewable energy. His impressive research output, reflected in over 20 published papers, demonstrates a strong commitment to addressing critical environmental and energy challenges. His work on biofuels, emission control technologies, and energy efficiency has been widely cited, highlighting his influence in the academic community. His expertise spans a variety of important and emerging topics, including bio-lubricants, internal combustion engine optimization, and the transition to electric mobility.

Dr. Kaisan has also actively engaged in applied research, seeking practical solutions for reducing emissions in internal combustion engines and improving engine performance through the use of alternative fuels. His interdisciplinary approach, combining energy engineering and sustainability, positions him as a leading researcher in the development of clean energy technologies. Moreover, his leadership roles in institutions such as the National Agency for Science and Engineering Infrastructure (NASENI) further demonstrate his capacity for innovation and academic excellence.

Areas for Improvement

While Dr. Kaisan has made great strides in various areas of renewable energy and engineering, there are a few potential areas where he could further enhance his impact:

  1. Collaboration with Industry: Although his work is highly academic, fostering deeper collaborations with industry could provide more practical, real-world applications for his research, particularly in commercializing biofuel technologies and improving electric vehicle infrastructure.
  2. Broader International Collaboration: While Dr. Kaisan has contributed to the development of renewable energy technologies in Nigeria and some international settings, expanding partnerships with global research institutes could allow him to tackle broader energy challenges on a larger scale.
  3. Public Engagement and Awareness: Dr. Kaisan could further amplify his research impact by engaging with the public and policymakers through outreach, workshops, and advocacy on the importance of biofuels, sustainable energy solutions, and environmental preservation.

Education 

Dr. Kaisan Muhammad Usman holds a PhD in Mechanical Engineering, with a focus on renewable energy and biofuels. He earned his undergraduate degree in Mechanical Engineering from Ahmadu Bello University, Zaria, and went on to complete his Master’s degree, where he specialized in energy efficiency and sustainable technologies. His academic journey led him to pursue advanced research in biofuels and internal combustion engines, addressing the challenges of energy and environmental sustainability. He is committed to advancing education in engineering, particularly in renewable energy technologies, and mentoring the next generation of engineers through his teaching and research initiatives. Dr. Kaisan’s educational background is complemented by a strong track record of participation in various international conferences and workshops, where he has presented his research and engaged in collaborative efforts to further sustainable energy solutions.

Experience

Dr. Kaisan Muhammad Usman has over 15 years of experience in academia, research, and industry. He currently serves as an Associate Professor at Ahmadu Bello University (ABU) Zaria, where he has also held the position of Senior Lecturer and Lecturer I in the Department of Mechanical Engineering. In addition to his academic roles, Dr. Kaisan has held several key leadership positions, including Managing Director of the Heavy Equipment and Machinery Development Institute in Bauchi and Deputy Director of Technical Services at NASENI, Abuja. He has also worked as a Research Fellow at the National Centre for Energy Efficiency and Conservation at the University of Lagos and as a Scientific Officer at the Energy Commission of Nigeria. Dr. Kaisan’s industry experience includes working as a Standard Engineer at the Standards Organization of Nigeria and a Graduate Trainee at Ashaka Cement PLC, Gombe.

Awards and Honors

Dr. Kaisan Muhammad Usman has received numerous accolades throughout his career, recognizing his contributions to engineering, research, and education. His work on renewable energy and biofuels has earned him citations in multiple international journals and recognition within the academic community. He has been invited as a visiting fellow at INTI International University in Malaysia, reflecting the global recognition of his expertise. Dr. Kaisan has also been honored for his leadership roles, particularly for advancing technical services in engineering and promoting innovation in equipment development at NASENI. His published research has received significant attention, influencing developments in energy conservation, internal combustion engine technologies, and environmental sustainability. Additionally, he has received awards for excellence in teaching and mentorship, helping to shape the future of mechanical engineering students at ABU Zaria.

Research Focus

Dr. Kaisan Muhammad Usman’s research primarily focuses on renewable energy, biofuels, bio-lubricants, internal combustion engines, and emissions. He is dedicated to exploring sustainable energy solutions, including the development of alternative fuels like biodiesel from non-edible plant oils and agricultural waste. His research aims to improve engine performance and reduce emissions, addressing both environmental and energy security concerns. Dr. Kaisan’s work also delves into the optimization of energy systems, renewable energy technologies, and electric vehicles. Through his studies, he seeks to enhance the efficiency of internal combustion engines while minimizing their environmental impact. Another key area of his research is in the transition to electric mobility, analyzing barriers and pathways for electric vehicle adoption in emerging economies. His commitment to innovation in energy and engineering extends to his work in improving energy storage systems, solar drying technologies, and hybrid renewable energy systems for sustainable development.

Publication Top Notes

  1. Development and Performance Comparison of Mixed-Mode Solar Crop Dryers with and without Thermal Storage 🌞
  2. Determination of Physico-Chemical Properties of Biodiesel from Citrullus lanatus Seeds Oil and Diesel Blends 🌱
  3. Calorific Value, Flash Point, and Cetane Number of Biodiesel from Cotton, Jatropha, and Neem Binary and Multi-blends with Diesel 🔥
  4. An Experimental Analysis on the Effect of n-Pentanol-Calophyllum Inophyllum Biodiesel Binary Blends in CI Engine Characteristics ⚙️
  5. Comparative Analyses of Biodiesel Produced from Jatropha and Neem Seed Oil Using GC-MS Technique 🧪
  6. Experimental Study of Methyl Tert-Butyl Ether as an Oxygenated Additive in Diesel and Calophyllum Inophyllum Methyl Ester Blended Fuel in CI Engine 🔬
  7. Potentials of Small Hydro Power in Nigeria: Current Status and Investment Opportunities 🌊
  8. Exhaust Emissions of Biodiesel Binary and Multi-blends from Cotton, Jatropha, and Neem Oil from Stationary Multi-Cylinder CI Engine 🌍
  9. Effects of Propanol and Camphor Blended with Gasoline Fuel on Performance and Emissions of a Spark Ignition Engine 🚗
  10. Transition to Electric Mobility in India: Barriers Exploration and Pathways to Powertrain Shift through MCDM Approach ⚡
  11. Influence of Injection Timing and Exhaust Gas Recirculation (EGR) Rate on Lemon Peel Oil-Fuelled CI Engine 🍋
  12. Comparative Analyses of Experimental and Simulated Performance of a Mixed-Mode Solar Dryer 🔧
  13. Physico-Chemical Properties of Biodiesel from Wild Grape Seeds Oil and Petro-Diesel Blends 🍇
  14. Adaptive Suspension Strategy for a Double Wishbone Suspension through Camber and Toe Optimization 🚗
  15. GC-MS Analyses of Biodiesel Produced from Cotton Seed Oil 🌿
  16. Effect of Hybrid Nanoparticle on DI Diesel Engine Performance, Combustion, and Emission Studies 🔬
  17. Determination of Engine Performance Parameters of a Stationary Single Cylinder Compression Ignition Engine Run on Biodiesel from Wild Grape Seeds/Diesel Blends 🛠
  18. Application of Statistical Approaches in IC Engine Calibration to Enhance Performance and Emission Characteristics 📊
  19. Influence of Post-Injection Parameters on the Performance of Continuous Regeneration Trap to Mitigate Greenhouse Gas and Particulate Emissions from CI Engine 🌱
  20. Model-Based Injector Control Map Development to Improve CRDi Engine Performance and Emissions for Eucalyptus Biofuel 🌿

Conclusion

Dr. Kaisan Muhammad Usman has demonstrated exceptional leadership and commitment to advancing energy-efficient technologies, biofuels, and emission control solutions. His prolific research and real-world impact, especially in the areas of biofuels and engine optimization, make him a strong candidate for the Best Researcher Award. By expanding his collaboration efforts with industry and broadening his global network, Dr. Kaisan’s research could reach even greater heights, contributing to the sustainable development goals and addressing global energy challenges. His continuous contribution to academic excellence and sustainable engineering solutions places him in a prime position to win the Best Researcher Award.

Fanghua Li | Geothermal Energy | Best Researcher Award

Dr. Fanghua Li | Geothermal Energy | Best Researcher Award

Research Assistant , Guangxi University ,China

Dr. Fanghua Li is a highly accomplished researcher in civil and communication engineering. Born on March 1, 1986, in Nanning, Guangxi, she is currently pursuing a Ph.D. in Civil Engineering at Guangxi University, where she has been a key figure in research and development. Dr. Li has a strong foundation in communication engineering, having completed her master’s degree at Hunan University and undergraduate studies at Xi’an University of Technology. With a unique combination of civil and communication engineering expertise, Dr. Li’s work focuses on sustainable infrastructure, energy systems, and environmental impact. She has contributed significantly to several high-impact research projects, particularly those addressing urban heat islands, energy storage, and nanotechnology applications. Dr. Li’s interdisciplinary research has earned her recognition in the field of engineering, and her publications continue to influence both academic and practical applications in civil and energy systems engineering.

Profile

Scopus

Strengths for the Award

  1. Diverse and High-Impact Research Dr. Fanghua Li’s research spans several critical areas, including civil engineering, communication engineering, and the application of nanotechnology in thermal energy systems. Her work on permeable concrete, urban heat island effects, roadbed reflectivity, and energy storage materials is both innovative and impactful.Notably, she has contributed to the following areas:
    • Evaporation resistance and urban heat island effects: This research addresses environmental and sustainability concerns that have wide-ranging urban applications.
    • Reflectivity of roadbeds in cold regions: The ability to regulate temperature through reflective materials can lead to more sustainable infrastructure in cold climates.
    • Thermal performance in energy systems: Her work on nanofluid behavior and thermal storage in porous media is important for enhancing the efficiency of renewable energy systems and buildings.

    These projects, especially those funded by national science foundations, demonstrate the significance and practical applications of her work.

  2. Publication Record Dr. Li has published extensively in reputable journals such as Energy and Buildings, Journal of Molecular Liquids, Powder Technology, and Cold Regions Science and Technology. Her papers cover a range of important topics from heat flux in pavement structures to the use of nanomaterials in improving thermal energy storage. Her publications have attracted significant citations (e.g., over 160 citations for one of her papers), highlighting her influence in her field.Notable publications include:
    • Energy storage and thermal management: Studies on improving heat transfer through nanomaterials in porous structures and phase change materials (PCMs) highlight her contribution to sustainable energy solutions.
    • Cooling performance of materials: Research into materials that can mitigate heat absorption in urban environments directly addresses climate change concerns.
  3. Research Leadership and Project Management Dr. Li’s leadership roles in various research projects, including her position as a key laboratory manager at Guangxi University, demonstrate strong organizational and collaborative skills. She has led several successful research initiatives, evidenced by the substantial funding received for her projects and her active involvement in guiding young researchers in the field.
  4. Multidisciplinary Expertise Dr. Li’s background in communication engineering, combined with her advanced studies in civil engineering, allows her to approach problems from a multidisciplinary perspective, which is essential in today’s research landscape. Her ability to bridge the gap between different fields enhances the quality and depth of her research.

Areas for Improvement

  1. Broader Interdisciplinary Collaboration While Dr. Li’s work is multidisciplinary, there could be further opportunity to collaborate with researchers in adjacent fields such as urban planning, environmental sciences, and policy to expand the practical applications of her findings. Collaborations in these areas could enhance the societal impact of her work, especially in urban sustainability.
  2. Public Engagement and Outreach Given the relevance of Dr. Li’s research to current global challenges such as climate change and urban heat islands, there is a potential to improve the visibility of her work outside the academic community. Engaging with policymakers, urban planners, and the public could help translate her research into real-world solutions.
  3. Research Diversification While Dr. Li’s focus on thermal management and nanomaterials is vital, expanding her research into other emerging areas such as smart cities or advanced materials for infrastructure resilience could further elevate her profile as a researcher. Additionally, exploring more innovative technological solutions like AI-driven modeling for energy systems could be a valuable direction for future research.

Education 

Dr. Fanghua Li began her academic journey at Xi’an University of Technology, where she earned her Bachelor’s degree in Communication Engineering (2005–2009). Building on her undergraduate education, she pursued a Master’s degree in Communication Engineering at Hunan University (2009–2012), where she gained expertise in communications technology. Following this, Dr. Li furthered her academic career by enrolling in a PhD program at Guangxi University (2020–present), focusing on Civil Engineering. Her current doctoral research explores innovative solutions for urban sustainability, with an emphasis on materials science, thermal management, and energy-efficient infrastructures. With a background that combines communication systems and civil engineering, Dr. Li is uniquely positioned to contribute to interdisciplinary research, particularly in the fields of urban planning, environmental engineering, and energy efficiency. Her commitment to education and research exemplifies her dedication to advancing both scientific knowledge and practical applications.

Experience 

Dr. Fanghua Li’s professional career began in 2012 when she joined the Huizhou Branch of China Mobile in Network Maintenance, where she worked until March 2013. This early role helped her develop a solid foundation in communication systems and infrastructure maintenance. In 2013, she transitioned to Guangxi University, where she took on a leadership role as the Key Laboratory Manager from 2013 to 2020. In this position, Dr. Li managed various cutting-edge research projects and was responsible for overseeing laboratory operations and fostering collaborative research initiatives. Her time at Guangxi University provided her with significant experience in managing large-scale research projects and mentoring junior researchers. Throughout her career, Dr. Li has contributed to a range of impactful research projects in civil and environmental engineering, particularly in areas related to sustainable infrastructure and energy efficiency. Her ability to bridge research with practical applications has positioned her as a leader in her field.

Awards and Honors 

Dr. Fanghua Li has earned multiple recognitions for her contributions to civil and environmental engineering. Notably, she was involved in NSFC Youth Projects such as “Evaporation Resistance Characteristics of Permeable Concrete” and “Reflectivity of Roadbeds in Cold Regions”, both of which were ranked third in their respective categories. These projects brought her recognition in the field of urban heat island mitigation and infrastructure sustainability. In addition, Dr. Li has received funding from prestigious institutions such as the Guangxi Natural Science Foundation for her research on urban canyon reflectivity and its environmental applications. Her publications in leading academic journals, including Energy and Buildings and Journal of Molecular Liquids, have attracted significant citations, further establishing her as a recognized leader in her research areas. Her interdisciplinary expertise in civil engineering, energy systems, and nanotechnology has earned her a reputation for innovation and excellence within the academic and professional communities.

Research Focus 

Dr. Fanghua Li’s research primarily focuses on sustainable infrastructure, energy systems, and the integration of nanotechnology in civil engineering applications. Her research addresses critical environmental challenges such as the urban heat island effect, the reflectivity of roadbeds, and energy storage systems. Dr. Li has conducted extensive studies on permeable concrete and its role in mitigating urban heat, as well as nanofluids for enhancing heat transfer in energy systems. She has also explored the use of phase change materials (PCMs) and porous media for improving the efficiency of thermal energy storage. A particular area of interest is her work on energy-efficient building materials and thermal management systems, which includes developing strategies for controlling temperature variations in urban environments. Dr. Li’s interdisciplinary expertise allows her to approach these problems from multiple angles, integrating civil engineering, material science, and energy technology to create practical, sustainable solutions.

Publications

  • “An innovative simplified approach for conductive heat flux in pavement structures”Energy and Buildings, 2024 🔥
  • “Free convection simulation of hybrid nanomaterial in permeable cavity with inclusion of magnetic force”Journal of Molecular Liquids, 2021 🔬
  • “Influences of imposed magnetic force on treatment of hybrid nanofluid involving non-Darcy porous model”International Communications in Heat and Mass Transfer, 2021 💨
  • “Melting process of nanoparticle enhanced PCM through storage cylinder incorporating fins”Powder Technology, 2021 ❄️
  • “Performance of ventilation system involving thermal storage unit considering porous media”Journal of Energy Storage, 2020 🔋
  • “Finned unit solidification with use of nanoparticles improved PCM”Journal of Molecular Liquids, 2020 🌡️
  • “Numerical study for nanofluid behavior inside a storage finned enclosure involving melting process”Journal of Molecular Liquids, 2020 💧
  • “Experimental study on the cooling performance of shading boards with different emissivities at the underside”Cold Regions Science and Technology, 2020 🏙️
  • “Moist curing increases the solar reflectance of concrete”Construction and Building Materials, 2019 🌞
  • “The amplitude and maximum of daily pavement surface temperature increase linearly with solar absorption”Road Materials and Pavement Design, 2017 🌡️

Conclusion

Dr. Fanghua Li is a highly accomplished and innovative researcher whose work addresses important environmental and energy challenges. She demonstrates excellence in both the quality and impact of her research, which is backed by substantial funding and numerous high-impact publications. Her interdisciplinary expertise, leadership skills, and contribution to sustainable infrastructure and energy solutions make her a strong candidate for the Best Researcher Award.While there is room for growth in terms of broadening interdisciplinary collaborations and engaging with external stakeholders, her research record, leadership, and significant contributions to both academia and society strongly support her candidacy for this prestigious award.

Mine Sertsöz | Energy Engineering | Best Researcher Award

Dr. Mine Sertsöz | Energy Engineering | Best Researcher Award

Assistant Professor, Eskisehir Technical University, Turkey

Assistant Professor Mine Sertsöz is an accomplished researcher and educator in the field of energy efficiency and sustainable transport systems. With a rich academic background and extensive work in both national and international projects, she has made significant contributions to the optimization of railway systems through innovative energy modeling. Currently, she serves as a faculty member at Eskişehir Technical University, where she focuses on transportation sciences and energy-efficient solutions. 🌍💡

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Education:

Mine Sertsöz holds a License Degree in Electrical Engineering from Yıldız Technical University (2009), an MSc in Electrical Engineering from Kocaeli University (2012), and a PhD in Energy Engineering from Bilecik Şeyh Edebali University (2018). Her research during her MSc centered on Energy Efficiency in Rail Systems, while her PhD dissertation explored Solar Energy Supported Innovative Energy Modeling, Optimization, and Analysis in Railway Systems. 🎓⚡

Experience:

Mine Sertsöz began her career as an Electrical Engineer at Anadolu University, working in the Faculty of Civil Aviation from 2010 to 2014. In 2014, she transitioned into academia as a lecturer at Eskişehir Technical University. Since 2021, she has served as an Assistant Professor, continuing her research and teaching in transportation sciences, with a specific focus on energy efficiency and railway systems. 👩‍🏫🚄

Research Interests:

Her research interests lie in energy efficiency, renewable energy integration, and optimization in rail transport systems. She is particularly focused on sustainable energy solutions, such as solar power, for enhancing the performance and environmental impact of transportation infrastructure. 🔋🚆

Awards & Recognitions:

Mine Sertsöz has received recognition for her work in sustainable transport and energy efficiency, notably as an invited speaker at the Eurasia Rail Conference in 2021, where she presented on Energy Conversion in Railway Systems. Her international collaborations and contributions to projects like the CA19126 – Positive Energy Districts European Network further emphasize her leadership in the field. 🏆🌿

Publications Top Notes:

 

  • Energy Efficiency in Rail Systems (2012). This MSc dissertation explores the potential for reducing energy consumption in rail transport systems through technological improvements and efficiency measures. Kocaeli University.
  • Solar Energy Supported Innovative Energy Modeling, Optimization, and Analysis in Railway Systems (2018). This PhD dissertation investigates the integration of solar energy in railways and develops optimized models for sustainable energy use. Bilecik Şeyh Edebali University.

Zhixiong Liu – ENVIRONMENTAL-FRIENDLY FUNCTIONAL MATERIALS – Best Researcher Award

Zhixiong Liu - ENVIRONMENTAL-FRIENDLY FUNCTIONAL MATERIALS - Best Researcher Award

SHANXI DATONG UNIVERSITY - China

AUTHOR PROFILE

SCOPUS
ORCID

PROFESSIONAL JOURNEY 🏢

Zhixiong Liu, an esteemed chemist, has been making significant strides in the field of chemistry and chemical engineering. Currently an Associate Professor at the School of Chemistry and Chemical Engineering, Shanxi Datong University, Dr. Liu has been dedicated to advancing research in nanomaterials and environmental protection since June 2019.

RESEARCH EXPERIENCE & INNOVATION 🌱

Dr. Liu’s research journey began in the Institute of Chemistry at the Chinese Academy of Sciences, where he earned his Ph.D. under the guidance of Prof. Qinghua Fan. His postdoctoral work at the Ningbo Institute of Industrial Technology, under the mentorship of Prof. Xuedong Wu and Prof. Liping Wang, further solidified his expertise in developing marine functional materials and hybrid hydrogels. At Shanxi Datong University, Dr. Liu has led groundbreaking projects focusing on heteroatoms-coped carbon dots (CDs) and their applications in metal protection and toxic ion detection.

ACADEMIC BACKGROUND 🎓

Zhixiong Liu received his B.S. in Chemistry from Xiangtan University and his Ph.D. in Organic Chemistry from the Institute of Chemistry, Chinese Academy of Sciences. His academic pursuits laid the foundation for his innovative research and contributions to the field.

PROJECT LEADERSHIP & FUNDING 📊

Dr. Liu has successfully managed multiple research projects funded by prestigious institutions, including the National Natural Science Foundation of China and the China Postdoctoral Science Foundation. His work on nano-materials and soft hydrogels has garnered significant attention and funding, reflecting the impact and importance of his research.

PUBLICATIONS & IMPACT 📚

With numerous publications to his name, Dr. Liu has contributed extensively to the scientific community. His research on CDs-based materials for environmental applications and marine functional materials for antifouling has been published in well-regarded journals, showcasing his expertise and innovation in chemistry.

RECOGNITION & ACHIEVEMENTS 🏆

Dr. Liu's dedication and contributions to chemistry have earned him recognition and respect within the academic and scientific communities. His innovative approaches and commitment to environmental protection through chemistry continue to inspire and drive progress in the field.

FUTURE ENDEAVORS 🌟

As Dr. Liu continues his work at Shanxi Datong University, his future endeavors will undoubtedly focus on furthering research in nanomaterials, environmental protection, and sustainable chemistry. His vision and expertise position him as a leading figure in the ongoing quest for scientific advancement and environmental sustainability.

NOTABLE PUBLICATION

Clinical characteristics and treatment strategies for pituitary adenoma associated with intracranial aneurysm.

Authors: Xuan Gao, Ming Zhang, Bing Bai, Chengwei Li, Xuan Zhao, Wutao Cheng, ...
Journal: World Neurosurgery
Volume: 112
Year: 2018

Causal association and shared genetics between telomere length and COVID-19 outcomes: New evidence from the latest large-scale summary statistics.

Authors: Massimo Mangino, Claire J. Steves, Panos Deloukas, Tim D. Spector, Cristina Menni
Journal: eLife
Volume: 10
Year: 2021

Recent advances in carbon dots as powerful ecofriendly corrosion inhibitors for copper and its alloy.

Authors: Fan Yang, Jinhao Zhang, Long Wei, Xiaotong Xie, Weifeng Dong, .
Journal: Carbon
Volume: 170
Year: 2020

Aptamer modified Ti3C2 nanosheets application in smart targeted photothermal therapy for cancer.

Authors: Hongwei Zhang, Xingxing Xu, Min Hu, Bingqiang Song, Ying Wang, ...
Journal: ACS Applied Materials & Interfaces
Volume: 12
Year: 2020

A novel ratiometric fluorescent probe based on dual-emission carbon dots for highly sensitive detection of salicylic acid.

Authors: Linlin Zhang, Jinsheng Zhai, Hongwei Zhang, Yan Liu, Jing Bai, ...
Journal: Sensors and Actuators B: Chemical
Volume: 293
Year: 2019