Shanakar Raman Dhanushkodi | Green electrolysis | Best Researcher Award

Assoc Prof Dr. Shanakar Raman Dhanushkodi | Green electrolysis | Best Researcher Award

VIT, Vellore | India

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ASSOC PROF DR. SHANKAR RAMAN DHANUSHKODI – A LEGACY IN CLEAN ENERGY RESEARCH AND EDUCATION ⚡🌍

INTRODUCTION 🌟

Assoc Prof Dr. Shankar Raman Dhanushkodi is a distinguished academic and researcher currently serving as an Associate Professor at the Vellore Institute of Technology (VIT), Vellore, Tamil Nadu, India. With more than two decades of experience, he has made significant contributions to the field of clean energy, specifically in fuel cell technology, electrolyzers, and the application of machine learning in energy systems. Dr. Dhanushkodi’s journey is marked by a blend of research excellence, academic contributions, and industry collaboration that continues to shape the future of energy solutions.

EARLY ACADEMIC PURSUITS 🎓

Dr. Dhanushkodi’s academic journey began in India, where he completed his Bachelor’s in Chemical Engineering from Alagappa College of Technology, Anna University, Tamil Nadu. He further pursued his Master’s in Process Systems Engineering at the University of Regina, Canada, and his Doctor of Philosophy in Chemical Engineering at the University of Waterloo, Canada. His academic foundation laid the groundwork for his pioneering research in electrochemical systems and fuel cell technologies.

PROFESSIONAL ENDEAVORS 💼

Dr. Dhanushkodi has held numerous prestigious positions across various academic and research institutions. His professional journey spans across countries, including India, Canada, and Germany. As an Associate Professor at VIT, he leads cutting-edge research in hydrogen technologies, focusing on fuel cells and electrolyzers. Additionally, he has served as a research consultant, postdoctoral fellow, and even founded his consulting company, Gandhi Energy Storage Systems and Solutions.

CONTRIBUTIONS AND RESEARCH FOCUS ON Green electrolysis 🔬

Dr. Dhanushkodi’s research expertise covers a wide range of areas such as electro-catalysis, membrane testing, fuel cell components, and the development of AI algorithms for chemical systems. His work in clean energy technologies is critical in advancing the efficiency and sustainability of energy systems. As a leading researcher, he has collaborated on global projects involving fuel cells and electrolyzers, while also contributing significantly to the development of diagnostic tools for electrochemical systems.

IMPACT AND INFLUENCE 🌍

Through his research and teaching, Dr. Dhanushkodi has not only contributed to the academic community but also impacted the global energy industry. His research has influenced the design and performance of fuel cells, electrolyzers, and other energy storage systems, helping to accelerate the transition to clean and sustainable energy sources. His collaborations with international institutions and industries have further reinforced his impact.

ACADEMIC CITATIONS AND PUBLICATIONS 📚

Dr. Dhanushkodi has authored over 15 publications in peer-reviewed journals, contributing to the advancement of knowledge in clean energy technologies and industrial ecology. His work is widely cited in the academic community, underlining the significance and relevance of his research. His focus on developing diagnostic tools for energy systems, particularly for PEM fuel cells and electrolyzers, continues to be a key area of innovation.

HONORS & AWARDS 🏆

Dr. Dhanushkodi’s excellence in research has been recognized through numerous awards and honors, including:

  • Raman Research Award for the paper in desalination and water treatment (2023)
  • Best Paper Award at the International Conference on Art, Education, and Business (2021)
  • Mrs. Chinnamaul Memorial Prize for the Best Technical Paper at CHEMCON (2021)
  • Outstanding Reviewer, Journal of Power Sources (2018)

LEGACY AND FUTURE CONTRIBUTIONS 🔮

Dr. Dhanushkodi’s work is far from over. As he continues to mentor young engineers at VIT and collaborate on international research projects, his legacy will undoubtedly inspire future generations. His ongoing research in fuel cell technology, electrolyzers, and machine learning applications in chemical engineering promises to yield groundbreaking solutions to the world’s energy needs. The future of clean energy is brighter, thanks to his vision and dedication.

FINAL NOTE 📌

Dr. Shankar Raman Dhanushkodi is not just a researcher; he is a mentor and a leader in the field of clean energy. His commitment to advancing energy systems and empowering the next generation of engineers and researchers has left an indelible mark on academia and industry alike. His contributions continue to inspire a future where sustainable energy solutions play a pivotal role in addressing global energy challenges.

 TOP NOTES PUBLICATIONS 📚

Development of Deep Learning Simulation and Density Functional Theory Framework for Electrocatalyst Layers for PEM Electrolyzers
    • Authors: Jaydev Zaveri; Shankar Raman Dhanushkodi; Michael W. Fowler; Brant A. Peppley; Dawid Taler; Tomasz Sobota; Jan Taler
    • Journal: Energies
    • Year: 2025
Machine Learning Framework for the Methyl Chloride Production Process
    • Authors: School of Mechanical Engineering, Vellore Institute of Technology; R. Gollangi; K. NagamalleswaraRao; Dhanushkodi Research group, School of Chemical Engineering, Vellore Institute of Technology; S. R. Dhanushkodi; Dhanushkodi Research group, School of Chemical Engineering, Vellore Institute of Technology; N. Mahinpey; Department of Chemical and Petroleum Engineering, University of Calgary
    • Journal: Journal of Environmental Informatics Letters
    • Year: 2024
Development of Semi-Empirical and Machine Learning Models for Photoelectrochemical Cells
    • Authors: Niranjan Sunderraj; Shankar Raman Dhanushkodi; Ramesh Kumar Chidambaram; Bohdan Węglowski; Dorota Skrzyniowska; Mathias Schmid; Michael William Fowler
    • Journal: Energies
    • Year: 2024
Development of Semi Empirical and Machine Learning Models for Photo-Electrochemical Cells
    • Authors: Niranjan Sunderraj; S.R. Dhanushkodi; Ramesh Kumar Chidambaram; B. Węglowski; Dorota Skrzyniowska; Mathias Schmid; Michael William Fowler
    • Journal: Preprint
    • Year: 2024
Design and Manufacturing Challenges in PEMFC Flow Fields—A Review
    • Authors: Prithvi Raj Pedapati; Shankar Raman Dhanushkodi; Ramesh Kumar Chidambaram; Dawid Taler; Tomasz Sobota; Jan Taler
    • Journal: Energies
    • Year: 2024

 

Salome Hauger | Spatial Data Analysis | Best Scholar Award

Mrs. Salome Hauger | Spatial Data Analysis | Best Scholar Award

Fraunhofer ISE | Germany

Publication Profile

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BIOGRAPHY OF MRS. SALOME HAUGER 🌱📚

INTRODUCTION 🌍

Salome Hauger is an accomplished project manager and PhD student specializing in the field of agrivoltaics at the Fraunhofer Institute for Solar Energy Systems (Fraunhofer ISE). She has demonstrated an exceptional combination of technical expertise and research passion, contributing significantly to the sustainability of energy solutions. Her academic and professional journey has been shaped by her dedication to environmental sciences and renewable energy.

EARLY ACADEMIC PURSUITS 🎓

Salome Hauger’s academic journey began with her undergraduate studies in Geography at the University of Freiburg im Breisgau, where she earned her Bachelor of Science degree in 2016. Her keen interest in environmental sciences led her to pursue a Master of Science degree in Environmental Sciences, which she completed in 2019. Throughout her studies, she developed a strong foundation in geographic information systems (GIS) and remote sensing, setting the stage for her future career in environmental research and innovation.

PROFESSIONAL ENDEAVORS 👩‍💼

After completing her studies, Salome embarked on a professional path that included a variety of internships and student assistant roles, demonstrating her eagerness to gain hands-on experience. She worked at renowned organizations such as Airbus Defence and Space, the German Aerospace Center, and the German Environmental Aid. These positions allowed her to apply her academic knowledge in real-world contexts, particularly in the fields of meteorology, remote sensing, and climate protection.

In 2020, Salome joined the Fraunhofer Institute for Solar Energy Systems (Fraunhofer ISE), where she took on the role of Project Manager in Agrivoltaics while simultaneously pursuing her PhD. Her focus in this innovative field aligns with global goals to enhance sustainable energy production by combining solar energy with agricultural land use.

CONTRIBUTIONS AND RESEARCH FOCUS  ON  Spatial Data Analysis 🔬

Salome Hauger’s research and contributions have been pivotal in the development and advancement of agrivoltaics—a field that integrates solar power generation with agricultural production. Her work addresses the pressing need for sustainable energy solutions that do not compromise agricultural land. As a PhD student, she has focused on optimizing the synergy between photovoltaic systems and crop cultivation, aiming to create more sustainable energy solutions for the future.

Her work has furthered the understanding of how solar panels can be integrated into agricultural landscapes without harming crop yields, contributing to the broader goal of achieving environmental sustainability through renewable energy sources.

IMPACT AND INFLUENCE 🌟

Salome’s influence extends beyond her immediate academic and professional circles. As a researcher at the Fraunhofer Institute, she has made substantial contributions to the understanding of agrivoltaics and its potential to reduce land-use conflicts while simultaneously addressing the global energy demand. Her research is instrumental in shaping the future of clean energy solutions and sustainable agricultural practices.

Her interdisciplinary work at the intersection of environmental science, technology, and agriculture positions her as a key figure in the renewable energy sector.

ACADEMIC CITATIONS AND PUBLICATIONS 📑

While Salome’s academic publications are still emerging as she continues her PhD, she has already contributed to several influential research papers and reports. These publications are likely to expand her recognition in the field, especially as agrivoltaics gains more global attention for its ability to support both energy production and agriculture.

Her work is cited in multiple academic and industry circles, and she continues to publish as part of her ongoing research at Fraunhofer ISE.

HONORS & AWARDS 🏆

Salome Hauger’s academic and professional achievements have not gone unnoticed. She has received recognition for her dedication to sustainability and innovation in the renewable energy sector. Her position as a project manager and PhD student at Fraunhofer ISE speaks to the value of her contributions to the development of agrivoltaics.

LEGACY AND FUTURE CONTRIBUTIONS 🔮

Salome’s future contributions to the field of agrivoltaics are anticipated to expand, as the global demand for renewable energy solutions continues to rise. Her ongoing research has the potential to reshape how we view the relationship between energy production and agriculture, offering innovative solutions to address land-use challenges. As she advances in her career, her legacy will undoubtedly inspire future generations of researchers and environmental advocates.

FINAL NOTE ✨

Salome Hauger is poised to make an enduring impact on the world of sustainable energy. Her contributions to agrivoltaics and her commitment to advancing clean energy solutions place her in a unique position to influence the trajectory of global renewable energy initiatives. As she continues her research, her legacy will be defined by her commitment to integrating environmental sustainability with technological advancement.

TOP NOTES PUBLICATIONS 📚

Spatial potential analysis and site selection for agrivoltaics in Germany
  • Authors: Salome Hauger, Vanessa Lieb, Rüdiger Glaser
  • Journal: Renewable and Sustainable Energy Reviews
  • Year: 2025

Jingzhao Lu | Environmental Data Analysis | Best Researcher Award

Dr. Jingzhao Lu | Environmental Data Analysis | Best Researcher Award

Hebei agricultural university | China

Publication Profile

Scopus

Research Gate

EARLY ACADEMIC PURSUITS 🎓

Dr. Jingzhao Lu began his academic journey at Hebei Agricultural University in China, where he initially focused on the environmental sciences. His early studies were deeply rooted in understanding the interaction between land-use types, environmental pollutants, and their broader impact on ecosystem health. With a keen interest in satellite technology and data analytics, he pursued research that involved the application of remote sensing in monitoring and quantifying environmental changes.

PROFESSIONAL ENDEAVORS 💼

Dr. Lu’s professional career has been marked by his dedication to the integration of satellite observations and environmental modeling. He has worked across various academic and research institutions, with Hebei Agricultural University standing as a cornerstone of his professional life. His work has advanced the understanding of environmental data analysis, especially regarding the effects of land-use changes, inorganic pollutants, and CO2 emissions. His professional endeavors include collaborations with national and international research bodies, enhancing global environmental monitoring efforts.

CONTRIBUTIONS AND RESEARCH FOCUS 🔬

Dr. Lu’s research primarily revolves around environmental data analysis, focusing on the quantification and modeling of environmental impacts. His contributions are vast, particularly in the fields of satellite-based observations, land-use classification, and the impact of inorganic pollutants on various ecosystems. His work on CO2 emissions and numerical modeling has opened up new avenues for understanding the complexities of greenhouse gases and their role in climate change. Dr. Lu has published several impactful papers, contributing to the growing body of knowledge on global environmental monitoring.

IMPACT AND INFLUENCE 🌍

Dr. Jingzhao Lu’s work has had a significant impact on both local and global environmental policy and research. His research findings have been used to inform land-use management practices, environmental protection strategies, and climate change mitigation efforts. Through his contributions, he has influenced the direction of future environmental research, particularly in the area of using remote sensing technologies for monitoring environmental changes. His influence can be seen in the growing integration of satellite data into environmental decision-making processes around the world.

ACADEMIC CITATIONS 📚

Dr. Lu’s academic citations highlight his contributions to the field of environmental science. His research papers are widely cited by scholars and researchers in the areas of environmental monitoring, land-use change, and pollutant studies. These citations are a testament to the relevance and quality of his work, as his findings continue to shape ongoing environmental research. He is frequently referenced in studies on satellite observations, CO2 emissions, and pollutant dynamics, establishing him as a leader in his field.

LEGACY AND FUTURE CONTRIBUTIONS 🌱

Dr. Jingzhao Lu’s legacy will be marked by his profound influence on the field of environmental data analysis and satellite-based observations. His work has laid a strong foundation for future generations of researchers to build upon, especially in addressing the challenges posed by climate change and environmental degradation. Moving forward, Dr. Lu’s future contributions are expected to focus on enhancing environmental models through improved satellite technology, refining CO2 emissions estimates, and advancing numerical models to better predict environmental outcomes. His work continues to inspire new research and collaborations, ensuring that his legacy will endure in the academic and environmental communities for years to come.

Publication Top Notes

Spatial Analysis of Carbon Metabolism in Different Economic Divisions Based on Land Use and Cover Change (LUCC) in China
    • Authors: Cui Yuan, Yaju Liu, Jingzhao Lu, Wei Su
    • Journal: Not specified in the provided text.
    • Year: January 2025
Research on the spatial–temporal distribution of three-dimensional carbon footprint in different urban agglomerations in China
    • Authors: Chengyi Guo, Jingzhao Lu, Cui Yuan, Yanlong Guan
    • Journal: Not specified in the provided text.
    • Year: January 2025
A multivariate analysis of microplastics in soils along the headwaters of Yangtze River on the Tibetan Plateau
    • Authors: Sansan Feng, Hongwei Lu, Yuxuan Xue, Tong Sun
    • Journal: Not specified in the provided text.
    • Year: April 2024
A review of the occurrence, transformation, and removal technologies for the remediation of per- and polyfluoroalkyl substances (PFAS) from landfill leachate
    • Authors: Jingzhao Lu, Hongwei Lu, Dongzhe Liang, Jingyu Li
    • Journal: Not specified in the provided text.
    • Year: May 2023
Population density regulation may mitigate the imbalance between anthropogenic carbon emissions and vegetation carbon sequestration
    • Authors: Dongzhe Liang, Hongwei Lu, Yanlong Guan, Jingzhao Lu
    • Journal: Not specified in the provided text.
    • Year: March 2023

Israel Muaka Mvitu | Energy and Utilities Analytics | Best Researcher Award

Mr. Israel Muaka Mvitu l Energy and Utilities Analytics | Best Researcher Award

Chang’an University, China

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👨‍🎓 Summary

Mr. Israel Muaka Mvitu Engineer Master’s student at Chang’an University, specializing in control science and engineering with a focus on new energy vehicles, energy storage technology, embedded systems, sensors, and AI. Passionate about applying acquired knowledge to solve real-world problems and improve quality of life.

🎓 Education

  • Master’s in Control Science and Engineering (2022 – present), Chang’an University, China
  • Bachelor’s in Electronics Information Engineering (2018 – 2022), Jiangxi Normal University, China
  • High-school Diploma (2011 – 2017), Mont-Amba Institute, with distinction in Mathematics and Physics.

💼 Professional Experience

  • Co-Founder & Technical Team Member, Lever Africa Ltd, Lyon, France (2019 – present): Responsible for app development, design, testing, and decision-making.
  • Personal English Teacher (April – June 2021): Taught English to a Chinese student, improving spoken and written skills.
  • Transcriber and QA, Relish International (Dec 2022 – April 2023): Transcribed French audio conversations and conducted quality assurance with a 98% approval rate.

🏆 Academic Achievements

  • Outstanding winner of the Jiangxi Provincial Scholarship (2018 – 2022).
  • Excellence Prize in the writing competition “A Letter to You” for foreign students in Jiangxi.
  • Passed HSK Level 4 Chinese proficiency test (May 2021).

🔬 Research Interests

  • Energy consumption reduction and efficiency in buildings using reinforcement learning and the CityLearn framework.
  • New energy vehicle technology, applications, and energy storage systems.

💻 Technical Skills

  • Control systems, embedded systems, sensors, AI, energy storage technology, new energy vehicles.

📚 Teaching Experience

  • Taught English to a Chinese student, focusing on language improvement in speaking and writing.
📖 Top Noted Publications
The Nonlinear Dynamics of CO₂ Emissions in Pakistan: A Comprehensive Analysis of Transportation, Electricity Consumption, and Foreign Direct Investment
    • Authors: Muhammad Adeel, Biao Wang, Ji Ke, Israel Muaka Mvitu
    • Journal: Sustainability
    • Year: 2024
Coordination and Optimal Supply of Microgrid Clusters in Large-Scale Transportation Self-Consistent Energy Systems: A Review
    • Authors: Muhammad Adeel, Biao Wang, Assad Ali, Ananna Zaman, Amin Ullah Khan, Misbah Fida, Israel Muaka Mvitu, Rabbi Binda Mvitu, Selma Magano Shuuya
    • Journal: International Journal of Latest Engineering Research and Applications (IJLERA)
    • Year: 2024

Stephen Livingston | Renewable Fuel | Best Researcher Award

Mr. T. Stephen Livingston l Renewable Fuel | Best Researcher Award

Rvs Technical Campus Coimbatore, India

Author Profiles

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Early Academic Pursuits 📚

Mr. T. Stephen Livingston began his academic journey with a strong foundation in mechanical engineering, earning a Bachelor of Engineering (B.E.) in Mechanical Engineering from Einstein College of Engineering, Tirunelveli, in 2008. He excelled with a First Class distinction, achieving a score of 74%. Later, he pursued a Master of Engineering (M.E.) in Energy Engineering at the Regional Centre of Anna University, Tirunelveli, completing it in June 2015 with a CGPA of 8.01, securing First Class distinction. This educational background laid the groundwork for his dedication to renewable energy solutions.

Professional Endeavors and Contributions 🌍

After embarking on his Ph.D. in Renewable Energy at Karpagam College of Engineering, Coimbatore, in 2022, Mr. Livingston’s research primarily focuses on improving the utilization of pyrolysis oil as a fuel for engines, aiming to create sustainable solutions from waste materials. His dedication to advancing renewable energy was evident in his published research paper in FUEL, showcasing his expertise and commitment to the field. His academic timeline reflects a consistent pattern of excellence, further enriched by various professional affiliations, such as being a Life Member of the Indian Society for Technical Education (ISTE) and a member of the International Association of Engineers (IAENG).

Research Focus and Impact 🔬

Mr. Livingston’s research centers on renewable energy, specifically on improving bioenergy processes like pyrolysis oil production and utilizing alternative resources. His notable presentation on “Optimization of Process Parameters for Lemongrass Flash Pyrolysis in a Fluidized Bed Reactor” at the International Conference at the CSIR-Central Leather Research Institute (CLRI) in Chennai emphasizes his contribution to bioenergy. With a robust research output and continuous academic exploration, his work is poised to make significant strides in renewable energy.

Technical Skills and Certifications 💡

Mr. Livingston possesses a diverse range of technical skills in energy engineering, renewable energy systems, and mechanical engineering. His expertise includes energy conservation, waste heat recovery, and the application of nano materials for energy. His continuous pursuit of knowledge is demonstrated by multiple NPTEL certifications, such as Sustainable Energy Technology, Energy Conservation and Waste Heat, and Renewable Energy Engineering: Solar, obtained from prestigious institutions like IITs.

Teaching Experience and Academic Contributions 🍎

As a passionate educator, Mr. Livingston has taught various engineering courses, including Engineering Thermodynamics, Thermal Engineering, Heat and Mass Transfer, Power Plant Engineering, and Renewable Sources of Energy. His experience extends to handling lab and practical sessions like Thermal Engineering Laboratory and Engine Performance and Testing. Additionally, he has been instrumental in guiding students in design and fabrication projects and project work, ensuring the holistic development of the next generation of engineers.

Legacy and Future Contributions 🌱

Looking ahead, Mr. Livingston is determined to further his impact in the field of renewable energy and teaching. His aim is to continue pushing the boundaries of sustainable energy research while inspiring students to contribute to a greener future. His legacy will be marked by his work in renewable energy solutions and his role in shaping a new generation of engineers passionate about sustainability.

Academic Citations and Recognition 🏆

Mr. Livingston’s work has gained recognition in both academic and professional circles. His published paper in the renowned journal FUEL exemplifies his commitment to research and contribution to the global renewable energy discourse. His presentations at international conferences and his active participation in webinars and advanced professional development programs further bolster his reputation as a thought leader in the field of renewable energy.

Future Outlook 🚀

With his vision set on making significant contributions to sustainable energy, Mr. Livingston’s future endeavors include exploring new methodologies to optimize energy systems and researching cutting-edge technologies in renewable energy. His ongoing participation in courses like Green Energy for Sustainable Development and Machine Learning for Energy Systems aligns with his goal to stay at the forefront of advancements in the energy sector.

 Top Noted Publications 📖

Article: An experimental investigation on performance, emission and combustion characteristics of IC engine using liquid fuel produced through catalytic co-pyrolysis of pressed oil cake and mixed plastics with the addition of nanoparticles

Authors: Stephen Livingston, T., Madhu, P., Sowmya Dhanalakshmi, C., Vignesh Kumar, R.
Journal: Fuel
Year: 2025

Article: Optimizing the Parameters of Spark Plasma Sintering to Enhance the Hardness of MgO/TiC Composites

Authors: Karanam, S.A.K., Rathinam, R., Mouria, P.K., Sharma, V.K., Livingston, T.S.
Journal: Advances in Materials Science and Engineering
Year: 2023

Article: Flash Pyrolysis of Lemon Grass (Cymbopogon flexuosus) for Bio-oil Production in an Electrically Heated Fluidized Bed Reactor

Authors: Madhu, P., Livingston, T.S., Kanagasabapathy, H.
Journal: Waste and Biomass Valorization
Year: 2018

Article: Fixed bed pyrolysis of lemongrass (Cymbopogon flexuosus): Bio-oil production and characterization

Authors: Madhu, P., Stephen Livingston, T., Manickam, I.N.
Journal: Energy Sources, Part A: Recovery, Utilization and Environmental Effects
Year: 2017

Armand Fopah Lele | Waste to energy | Best Researcher Award

Assist Prof Dr. Armand Fopah Lele | Waste to energy | Best Researcher Award

University of Buea, Cameroon

Author Profile

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Early Academic Pursuits 🎓

Dr. Armand Fopah Lele’s academic journey began with his foundational education in Mathematics and Physics, earning his Baccalaureate in 2003 from Lycée de Bafoussam, Cameroon. He continued his studies at the University of Yaoundé 1, where he obtained a Bachelor of Physics in 2006, followed by two Master’s degrees in Physics (2007 and 2009), one of which was a Master of Science with a thesis (D.E.A.). His academic pursuits reached their zenith at Leuphana University of Lüneburg, Germany, where he earned his Doctorate in Energetics in 2015, with a focus on thermochemical heat storage systems for households.

Professional Endeavors 💼

Dr. Fopah Lele’s career spans over a decade, marked by a consistent drive to advance the field of renewable energy and sustainability. He currently holds the position of Head of the Department of Mechanical and Industrial Engineering at the University of Buea, Cameroon, where he also serves as an Associate Professor in the Department of Electrical and Electronic Engineering. In these roles, he has been integral in shaping the department’s strategic direction, fostering international collaborations, and promoting research and academic excellence.

Before joining the University of Buea, Dr. Fopah Lele worked as the Director of Research, Innovation, and Business Relations at Ecole Supérieure des Métiers des Energies Renouvelables (ESMER) in Benin, where he was a leader in integrating innovation, entrepreneurship, and sustainable energy practices into the curriculum. He also contributed to various energy-related projects, such as a feasibility study for manufacturing small wind power plants in Benin, commissioned by ONUDI and the Department of Energy.

Contributions and Research Focus 🔬

Dr. Fopah Lele’s research has had a significant impact on energy systems and sustainability, with a particular focus on hydrogen-to-power research, renewable energy technologies, and energy storage. His work includes advancements in solar thermal electric power plants, heat recovery systems, and sustainable transportation, all aimed at enhancing sub-Saharan African development and addressing climate change challenges. He has a keen interest in exploring innovative methods of utilizing waste heat and optimizing thermochemical processes for energy efficiency. His research also extends to the development of hydrogen and fuel cell technologies, with a primary aim of contributing to the global energy transition.

Impact and Influence 🌍

Dr. Fopah Lele’s contributions have not only shaped the academic landscape but have also had a profound influence on the renewable energy sector. He has received several accolades, including the Best Thesis Award from Springer-Theses in 2016 and the 2nd German Sustainable Development Award in 2014. His work has been recognized globally, and he serves as an editor, guest editor, and reviewer for multiple prestigious scientific journals, contributing to the dissemination of knowledge in his field. As a session chair and scientific committee member for international conferences, his influence continues to resonate within academic and industry circles worldwide.

Academic Cites 📚

Dr. Fopah Lele has made significant scholarly contributions, with his work being frequently cited in academic journals, conferences, and books. His research on thermal analysis, energy storage, and sustainable energy technologies has provided a substantial foundation for both theoretical and applied advancements in the field. His influence extends beyond his own publications, as he actively collaborates with universities, research institutions, and industry players in Europe, Africa, and beyond.

Technical Skills 🛠️

his academic and research achievements, Dr. Fopah Lele is proficient in various technical and analytical skills. His expertise includes computer-aided design (CAD), simulations, thermal analysis, energy system modeling, and the design of energy-efficient systems. His strong command over both English and French, coupled with his proficiency in German, allows him to engage in cross-cultural and international collaborations seamlessly. Furthermore, his skill in utilizing editing software for scientific publications makes him a key asset in the academic publishing domain.

Teaching Experience 🍎

As an educator, Dr. Fopah Lele has been instrumental in shaping the next generation of engineers and energy professionals. His teaching portfolio includes courses on solar energy, hybrid energy systems, hydrogen technology, and renewable energy labs. He emphasizes the importance of both theoretical knowledge and hands-on experience, ensuring that students are well-equipped to address the pressing energy challenges of today. He has also guided students through research projects and internships, supporting the development of innovative solutions for real-world energy problems.

Legacy and Future Contributions 🔮

Dr. Fopah Lele’s legacy is rooted in his dedication to fostering sustainable energy practices and advancing academic excellence. Through his leadership roles at the University of Buea and ESMER, he has left a lasting impact on the development of renewable energy research in Africa. His forward-looking research on hydrogen and energy storage technologies promises to continue contributing to the global transition to clean energy. Dr. Fopah Lele is committed to mentoring future researchers and professionals, empowering them to innovate and drive sustainable change in the energy sector.

Top Noted Publications 📖

A review on the use of calcium chloride in applied thermal engineering

    • Authors: KE N’Tsoukpoe, HU Rammelberg, A Fopah Lele, K Korhammer, BA Watts, …
    • Journal: Applied Thermal Engineering
    • Year: 2015

Sorption and thermal characterization of composite materials based on chlorides for thermal energy storage

    • Authors: K Korhammer, MM Druske, A Fopah-Lele, HU Rammelberg, …
    • Journal: Applied Energy
    • Year: 2016

Lab-scale experiment of a closed thermochemical heat storage system including honeycomb heat exchanger

    • Authors: A Fopah-Lele, C Rohde, K Neumann, T Tietjen, T Rönnebeck, …
    • Journal: Energy
    • Year: 2016

Thermal decomposition kinetic of salt hydrates for heat storage systems

    • Authors: A Fopah Lele, F Kuznik, HU Rammelberg, T Schmidt, WKL Ruck
    • Journal: Applied Energy
    • Year: 2015

A review on the use of SrBr2· 6H2O as a potential material for low temperature energy storage systems and building applications

    • Authors: A Fopah-Lele, JG Tamba
    • Journal: Solar Energy Materials and Solar Cells
    • Year: 2017

Layal Kallach | Human Resources | Best Researcher Award

Dr. Yiqiang Zhong | Sustainability | Best Researcher Award

Institute of Urban Environment, Chinese Academy of Sciences, China

Author Profile

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🌱 Early Academic Pursuits

Dr. Yiqiang Zhong began his academic journey at the prestigious Institute of Mathematics and Systems Science, Chinese Academy of Sciences, where he earned his Master’s degree. During this time, he developed a deep interest in sustainable urban management and its intersections with environmental science and health. His academic foundation laid the groundwork for his later research, focusing on the environmental and societal impacts of food systems and urban environments.

🔬 Professional Endeavors and Research Focus

As a researcher at the Institute of Urban Environment, Chinese Academy of Sciences, Dr. Zhong’s work is characterized by a commitment to sustainable urban management. He specializes in examining the environmental and health impacts of food systems and exploring climate change mitigation and adaptation strategies. Dr. Zhong’s work is pivotal in addressing pressing urban challenges like the environmental footprint of food consumption, carbon emissions from delivery systems, and strategies for fostering sustainable urban living.

🌍 Contributions and Research Focus

Dr. Zhong has made significant contributions to understanding the carbon emissions from urban takeaway deliveries. His research is foundational in analyzing how urban food delivery systems in China contribute to carbon emissions, offering key insights into how cities can transition towards more sustainable food delivery methods. His work emphasizes how food consumption patterns in urban settings are directly linked to environmental outcomes, with a focus on urban sustainability and resilience against climate change.

📚 Impact and Influence

Dr. Zhong’s research has a profound impact on both academia and industry, particularly in climate change mitigation and environmental health. His published works, such as the influential articles “Carbon emissions from urban takeaway delivery in China” (npj Urban Sustain, 2024) and “Patterns, environmental impact and dietary quality of takeaway food consumption in typical cities of the Greater Bay Area” (Journal of Cleaner Production, 2024), have positioned him as a thought leader in the field of urban sustainability. These studies shed light on the real-world implications of everyday urban practices and provide a roadmap for policymakers to reduce carbon footprints and improve the environmental impact of urban living.

📊 Academic Citations

Dr. Zhong’s work, especially his 2024 publications, has attracted significant academic attention. His research is gaining traction in urban sustainability, food systems, and climate science, though citation metrics are not currently available. His contributions resonate within the broader academic community as they bridge environmental science with social practices, showcasing the crucial relationship between daily consumption habits and broader sustainability goals.

💡 Technical Skills

Dr. Zhong is highly skilled in data analysis and systems modeling, essential for his research on carbon emissions and sustainable food systems. His technical prowess allows him to integrate large datasets to evaluate urban food delivery systems and their environmental impacts. Additionally, he is proficient in environmental impact assessments, offering valuable insights into how cities can optimize resources and reduce emissions while enhancing urban sustainability.

👨‍🏫 Teaching Experience

Though specific details about Dr. Zhong’s teaching experience are not available, his contributions to the academic world through publications and collaborations with other experts like Yuanchao Hu indicate a role as a mentor and leader in his field. His academic presence and expertise undoubtedly influence the next generation of scholars in sustainable urban management and related disciplines.

🌟 Legacy and Future Contributions

Looking forward, Dr. Zhong is poised to continue making pivotal contributions in sustainable urban living, especially through his work in urban food systems and climate change adaptation. His research promises to leave a lasting impact on both scientific communities and the global efforts toward creating more sustainable, healthier urban environments. Dr. Zhong’s future endeavors will likely focus on expanding his work to include other cities globally, offering innovative solutions for sustainability in diverse urban contexts.

🌐 Collaborations and Academic Networks

Dr. Zhong collaborates closely with fellow researchers like Yuanchao Hu, contributing to a broader network of climate change and sustainability experts. He is an active participant in the global conversation about urban sustainability and health, and his work continues to foster cross-disciplinary dialogue between urban planners, environmental scientists, and policy experts. His contributions, while impactful in China, are beginning to resonate on a global scale, as cities worldwide grapple with similar challenges.

 

📖 Top Noted Publications

Patterns, environmental impact and dietary quality of takeaway food consumption in typical cities of the Greater Bay Area

Authors: Yiqiang Zhong, Yuanchao Hu, Yin Zhang, Xuejuan Fang, Shenghui Cui

Journal: Journal of Cleaner Production

Year: 2024

 Environmental-economic effects on agricultural applications of food waste disposal products: Evidence from a 2-year field study in subtropical China

Authors: Xuejuan Fang, Dongliang Zhong, Weijun Zhou, Mohammad Jawad Alami, Wei Huang, Xialu Wu, Bing Gao, Shenghui Cui

Journal: Resources, Conservation and Recycling

Year: 2024

Spatial patterns and influencing factors of takeaway consumption in 56 cities in China

Authors: Yin Zhang, Shenghui Cui, Yiqiang Zhong, Wei Huang

Journal: Journal of Cleaner Production

Year: 2024

Carbon emissions from urban takeaway delivery in China

Authors: Yiqiang Zhong, Shenghui Cui, Xuemei Bai, Wei Shang, Wei Huang, Lingxuan Liu, Shouyang Wang, Rongxuan Zhu, Yuanxiao Zhai, Yin Zhang

Journal: npj Urban Sustainability

Year: 2024

Carbon emissions from urban takeaway delivery in China (Preprint)

Authors: Yiqiang Zhong, Xuemei Bai, Wei Huang, Lingxuan Liu, Rongxuan Zhu, Yuanxiao Zhai, Yin Zhang, Shenghui Cui

Journal: Preprint

Year: 2023

Total electricity consumption forecasting based on Transformer time series models

Authors: Xuerong Li, Yiqiang Zhong, Wei Shang, Xun Zhang, Baoguo Shan, Xiang Wang

Journal: Procedia Computer Science

Year: 2022

Neil Page | Atmospheric Science | Best Researcher Award

Mr. Neil Page | Atmospheric Science | Best Researcher Award

Mr. Neil Page at University of Wollongong, Australia

👨‍🎓Professional Profile

🌱 Early Academic Pursuits

Neil Page’s academic journey reflects a strong commitment to environmental and atmospheric sciences, beginning with his undergraduate studies at Kingston University, London, where he earned a Bachelor of Environmental Science. He then pursued further studies at Queensland University of Technology, achieving a Bachelor of Applied Science before honing his expertise in atmospheric chemistry and climatology at the University of Wollongong. Through his Master’s research and the subsequent Masters of Philosophy (MPhil), Neil focused on atmospheric mercury and reactive bromine, specifically investigating their variability over coastal Antarctica and the Southern Ocean. This early academic foundation in environmental management, chemistry, and sustainability has laid a robust groundwork for his future research and professional pursuits. 

💡 Professional Endeavors

Neil’s professional career spans a broad range of roles across environmental consulting, climate science, and policy development. As a Senior Specialist at Deloitte Sustainability & Climate Change, he has worked on numerous physical climate risk assessments across various sectors, including agriculture, mining, construction, and finance. His expertise in data modelling and climate risk evaluation has helped clients assess and manage physical climate risks using advanced computational tools like GEOS-Chem and HYSPLIT. Neil’s role as a lead curator in the development of climate risk solutions, such as Deloitte Decarbonisation SolutionsTM (DDS), highlights his leadership in applying science to solve global challenges. 🏢🌐

📚 Contributions and Research Focus

Neil’s research focus is firmly entrenched in Atmospheric Chemistry, Meteorology, and Climate Science. His notable contribution to the field includes the measurement of reactive bromine and atmospheric mercury in polar regions, specifically over coastal Antarctica and the Southern Ocean. His work using ship-based observations, satellite retrievals, and back-trajectory modelling has been instrumental in understanding the factors driving atmospheric chemical variability in these sensitive regions. Furthermore, his early career research on mercury biogeochemical cycling in Australia using the GEOS-Chem model is a key example of his ability to integrate global chemical transport models with site-based observational data. Neil’s scholarly pursuits are not just limited to academia but extend to critical areas like climate change and air quality, influencing both scientific communities and policy development. 🌍🔬

🌍 Impact and Influence

Neil’s contributions extend beyond traditional research into real-world impact, notably in the area of climate change adaptation and mitigation strategies. His involvement in Australia’s national climate change risk assessment and state-wide climate risk assessments in regions like Tasmania and Northern Territory showcases his ability to translate complex climate science into actionable insights. Through his work, Neil helps shape policy frameworks and supports industries in building resilience to climate change. His leadership in big data modelling for physical climate risks further underscores his influence in shaping how companies and governments approach climate challenges. 🌡️⚖️

🧑‍🏫 Academic Cites and Research Recognition

Neil’s academic work has garnered recognition in the form of scholarships and citations in various research domains, particularly in atmospheric chemistry and environmental sustainability. His involvement in field campaigns, such as his research trip to Antarctica, not only contributed to advancing scientific knowledge but also positioned him as a respected figure in the scientific community. His work continues to be cited for its innovative methodologies and contributions to climate risk assessment and atmospheric science, with his publications influencing both academic and policy circles. 📑🌐

🖥️ Technical Skills and Tools

Neil’s technical prowess is vast and includes expertise in High-Performance Computing using platforms like NCI Gadi/Raijin. He is skilled in statistical analysis and proficient in the use of programming languages like Python, R, and Fortran, which he uses for data analysis and the development of complex climate and environmental models. His expertise extends to a wide array of modelling software, including GEOS-Chem, HYSPLIT, and AERMOD, to simulate atmospheric processes and evaluate environmental risks. His competence in Geographic Information Systems (GIS), as well as data visualisation tools like Tableau, allows him to communicate complex datasets in user-friendly formats for stakeholders across sectors. 💻📊

👨‍🏫 Teaching Experience

Beyond his professional and research endeavors, Neil has contributed to education through his role as an Academic Demonstrator at the University of Wollongong, where he assisted in practical sessions for undergraduate courses like “Earth’s Interconnected Spheres.” His teaching experience includes mentoring students, delivering practical demonstrations, and guiding students through assignments and practical works. His ability to explain complex scientific concepts to a diverse student body speaks to his excellent communication and interpersonal skills. 👨‍🏫📚

🌟 Legacy and Future Contributions

Looking ahead, Neil’s legacy will likely be defined by his continued contributions to the field of climate science, particularly in the realm of climate risk assessment and mitigation strategies. His research has the potential to influence not only environmental policy but also practical solutions for industries and communities seeking to adapt to climate change. As a specialist in the intersection of atmospheric science, data modelling, and climate resilience, Neil is positioned to make a lasting impact in shaping sustainable futures. His future contributions will continue to advance scientific understanding and provide innovative solutions to tackle some of the world’s most pressing environmental challenges.

Rajab Abousnina | Solution for Environmental Challenges | Excellence in Research

Dr. Rajab Abousnina | Solution for Environmental Challenges | Excellence in Research

Dr. Rajab Abousnina at University at Curtin University, Australia

 Professional Profile👨‍🎓

Early Academic Pursuits 📚

Dr. Rajab Abousnina began his academic journey in engineering with a strong focus on materials science. His foundational education emphasized sustainable practices, particularly in civil engineering and environmental solutions. This early focus laid the groundwork for his future endeavors in innovative construction techniques and waste material utilization.

Professional Endeavors 🛠️

Currently serving as a Postdoctoral Research Fellow at Curtin University in Australia, Dr. Abousnina leads groundbreaking research on sustainable geopolymer concrete. His previous role at Macquarie University involved heading a project on structural health monitoring systems for concrete pavements, showcasing his blend of academic knowledge and practical engineering skills.

Contributions and Research Focus 🌍

Dr. Abousnina’s research primarily targets several critical areas: the development of sustainable geopolymer concrete using alternative activators, advancements in 3D concrete printing, structural health monitoring with embedded sensing systems, and innovative wastewater treatment technologies. His work aims to reduce carbon emissions and promote eco-friendly construction practices.

Impact and Influence 💡

Through his impactful research and global collaborations, Dr. Abousnina significantly influences sustainable engineering practices. His findings not only advance academic discourse but also offer practical solutions that shape industry standards, addressing pressing environmental challenges in construction and materials science.

Academic Cites 📑

With over 12 Q1 journal articles and numerous conference papers, Dr. Abousnina has established a robust publication record. His research is frequently cited, reflecting its relevance and importance within the scientific community. This extensive bibliographic contribution demonstrates his commitment to advancing knowledge in the field.

Technical Skills ⚙️

Dr. Abousnina possesses a diverse range of technical skills, including expertise in developing geopolymer concrete and composite materials, proficiency in structural health monitoring technologies, and knowledge of advanced wastewater treatment processes. These competencies position him as a leader in sustainable engineering solutions.

Teaching Experience 🎓

As an educator, Dr. Abousnina plays a vital role in shaping future engineers. He teaches various civil engineering courses such as Transport Engineering and Structural Design, while also supervising MSc and PhD students in their research projects. His dedication to teaching fosters a new generation of professionals equipped with sustainable engineering practices.

Legacy and Future Contributions 🌱

Looking ahead, Dr. Abousnina is committed to continuing his innovative work in sustainable engineering. He aims to further develop new materials and construction methods that minimize environmental impact. His ongoing collaborations with industry partners will likely lead to practical applications of his research, ensuring a lasting legacy in civil and environmental engineering.

 Top Noted Publications 📖

Optimal design for epoxy polymer concrete based on mechanical properties and durability aspects

Authors: W Ferdous, A Manalo, HS Wong, R Abousnina, OS AlAjarmeh, Y Zhuge
Journal: Construction and Building Materials
Year: 2020

 Effects of light crude oil contamination on the physical and mechanical properties of fine sand

Authors: RM Abousnina, A Manalo, J Shiau, W Lokuge
Journal: Soil and Sediment Contamination: An International Journal
Year: 2015

Effect of using metakaolin as supplementary cementitious material and recycled CRT funnel glass as fine aggregate on the durability of green self-compacting concrete

Authors: Y Ouldkhaoua, B Benabed, R Abousnina, EH Kadri, J Khatib
Journal: Construction and Building Materials
Year: 2020

Experimental investigation on effects of calcined bentonite on fresh, strength and durability properties of sustainable self-compacting concrete

Authors: ZEA Laidani, B Benabed, R Abousnina, MK Gueddouda, EH Kadri
Journal: Construction and Building Materials
Year: 2020

Characteristics, strength development and microstructure of cement mortar containing oil-contaminated sand

Authors: R Abousnina, A Manalo, W Ferdous, W Lokuge, B Benabed, KS Al-Jabri
Journal: Construction and Building Materials
Year: 2020

Jean Sire Armand Eyebe Fouda | Energy Harvesting | Best Researcher Award

Prof Dr. Jean Sire Armand Eyebe Fouda | Energy Harvesting | Best Researcher Award

Prof Dr. Jean Sire Armand Eyebe Fouda at University of Yaoundé, Cameroon

👨‍🎓 Professional Profiles

🎓 Early Academic Pursuits

Prof. Dr. Jean Sire Armand Eyebe Fouda began his academic journey at the University of Yaoundé I, where he earned a Bachelor’s degree in Physics in 2001. His academic progression continued with a Master’s in Electronics in 2002, followed by a DEA in Electronics in 2003. He completed his PhD in Digital Signal Processing in February 2007, focusing on applications that would lay the groundwork for his future research in nonlinear time series analysis.

💼 Professional Endeavors

Dr. Eyebe Fouda has dedicated his career to the University of Yaoundé I, where he has held various academic positions, culminating in his role as a Full Professor in the Department of Physics since 2023. His professional journey also includes serving as a Senior Lecturer and Associate Professor, contributing significantly to the university’s academic environment and research initiatives. As the Head of the Circuit Prototyping Unit in the Electronics Laboratory, he has fostered innovative projects and collaborations.

🌟 Contributions and Research Focus

His research focuses on nonlinear time series analysis, complex systems, chaotic cryptography, and digital signal processing. With a keen interest in artificial intelligence, he explores statistical nonlinear time series analysis and complexity measures derived from real-world data. His work on chaos-based cryptography has the potential to influence secure communication systems significantly.

🌍 Impact and Influence

Dr. Eyebe Fouda’s impact extends beyond his immediate academic environment. Through his participation in international research collaborations and fellowships—such as those with the Alexander von Humboldt Foundation and CV-Raman in India—he has contributed to advancing knowledge in his field globally. His projects, including the Interfaced Nonlinear Time Series Analysis Toolkit (INTISAT), exemplify his commitment to integrating practical applications with theoretical research.

📚 Academic Cites

With 31 publications in peer-reviewed journals and presentations at various conferences, Dr. Eyebe Fouda’s work has garnered attention in the academic community. His contributions are documented on his ORCID profile, which serves as a testament to his research output and academic rigor.

⚙️ Technical Skills

Dr. Eyebe Fouda possesses a diverse skill set that enhances his teaching and research capabilities. His proficiency in Matlab, C++, and Spice (Multisim) allows him to tackle complex problems in digital signal processing and electronic circuit design. Additionally, he has experience programming microchip microcontrollers and developing standalone applications, showcasing his technical versatility.

👩‍🏫 Teaching Experience

With a career spanning over two decades, Dr. Eyebe Fouda has significantly shaped the academic experience of numerous students at the University of Yaoundé I. His roles have included lecturing and tutoring, where he emphasizes the importance of hands-on learning and practical applications in physics and electronics.

🌱 Legacy and Future Contributions

As he continues to lead in research and education, Dr. Eyebe Fouda aims to inspire the next generation of scientists and engineers. His vision includes further exploration of chaos-based applications in cryptography and advancing the integration of artificial intelligence in physical sciences. His legacy will likely be defined by his commitment to innovation, collaboration, and the promotion of scientific inquiry.

In conclusion, Prof. Dr. Jean Sire Armand Eyebe Fouda’s academic journey is marked by significant achievements and contributions that will undoubtedly leave a lasting impact on the fields of electronics and physics.

 

📖 Top Noted Publications

Amplification of very low output voltages of PV panels using a Duffing oscillator

Authors: Hermann Frederic Emakoua, Guy Valery Ayissi Eyebe, Annie Sylvie Wakata, Jean Sire Armand Eyebe Fouda, Martin Kom

Journal: Heliyon

Volume: Not specified

Year: 2024

Complexity from ordinal pattern positioned slopes (COPPS)

Authors: Jean Sire Armand Eyebe Fouda, Wolfram Koepf, Norbert Marwan, Jürgen Kurths, Thomas Penzel

Journal: Chaos, Solitons & Fractals

Volume: Not specified

Year: 2024

System dynamics monitoring using PIC micro-controller-based PLSE

Authors: Guy Morgand Djeufa Dagoumguei, Samuel Tagne, J. S. Armand Eyebe Fouda, Wolfram Koepf

Journal: Chaos: An Interdisciplinary Journal of Nonlinear Science

Volume: Not specified

Year: 2023

An 8-bit integer true periodic orbit PRNG based on delayed Arnold’s cat map

Authors: Vianney Boniface Ekani Mebenga, Venkata Reddy Kopparthi, Hermann Djeugoue Nzeuga, J.S. Armand Eyebe Fouda, Guy Morgan Djeufa Dagoumguei, Georges Bell Bitjoka, P. Rangababu, Samrat Sabat

Journal: AEU – International Journal of Electronics and Communications

Volume: Not specified

Year: 2023

An extendable key space integer image-cipher using 4-bit piece-wise linear cat map

Authors: Gaetan Gildas Gnyamsi Nkuigwa, Hermann Djeugoue Nzeuga, J. S. Armand Eyebe Fouda, Samrat L. Sabat, Wolfram Koepf

Journal: Multimedia Tools and Applications

Volume: Not specified

Year: 2023