Proscovia Paschal Kamugisha | Environmental | Best Researcher Award

Proscovia Paschal Kamugisha | Environmental | Best Researcher Award

Dr. Proscovia Paschal Kamugisha, Mzumbe University,Tanzania.

Publication profile

Googlescholar

Education and Experience

  • πŸŽ“Β Ph.D. in Agricultural EconomicsΒ (2015) – Sokoine University of Agriculture
  • πŸŽ“Β MSc in Agricultural EconomicsΒ (2006) – Sokoine University of Agriculture
  • πŸŽ“Β BSc in Agricultural Economics and AgribusinessΒ (2002) – Sokoine University of Agriculture
  • 🏫 Head of DepartmentΒ – Administrative Studies (2020-2023)
  • 🏫 Head of DepartmentΒ – Economics (2024 – Present)
  • πŸ“ŠΒ Core Researcher and Principal Investigator in multiple agricultural consultancy projects.

Suitability For The Award

Dr. Proscovia Paschal Kamugisha, Senior Lecturer at Mzumbe University, is an exceptional candidate for theΒ Best Researcher Award, given her remarkable contributions to agricultural economics, agribusiness, and sustainable agricultural development. With an extensive academic and research career, Dr. Kamugisha has demonstrated leadership and innovation in her field, making significant strides in livestock economics, environmental economics, aquaculture economics, and supply chain management.

Professional DevelopmentΒ 

Publications Top Notes

  • “Characterizing the Tanzanian quality beef supply chain: A case of Arusha and Dar-es-Salaam cities” (PP Kamugisha, NSY Mdoe, LA Mtenga, 2017) – Cited by 10Β πŸ“‹
  • “Sustainable solid waste management in developing countries: Tanzania outlook” (PP Kamugisha, SF Mhanga, 2020) – Cited by 4 🌍
  • “Public private partnerships for successful solid waste management and prospects for reducing public health risks in Kinondoni Municipality-Dar es Salaam, Tanzania” (P Kamugisha, J Ludete, S Mhanga, 2019) – Cited by 2Β πŸ™οΈ
  • “Evaluation of quality beef supply chain efficiency in Tanzania’s niche markets: A case study of Arusha and Dar-es-Salam cities” (PP Kamugisha, NSY Mdoe, LA Mtenga, 2017) – Cited by 2Β πŸ„
  • “Biomass to liquefied petroleum gas cooking energy: A solution to indoor pollution ailments in Temeke Municipality, Dar-Es-Salaam” (P Kamugisha, MM Kombo, S Mhanga, 2019) – Cited by 1Β πŸ”‹
  • “Quality beef supply chain efficiency and consumption in Arusha and Dar es Salaam cities, Tanzania” (PP Kamugisha, 2015) – Cited by 1Β πŸ₯©

 

Balakrishna S Maddodi | Environmental | Sustainability Achievement Award

Balakrishna S Maddodi | Environmental | Sustainability Achievement Award

Dr. Balakrishna S Maddodi, Manipal Institute of Technology, India.

Publication profile

Orcid
Scopus

Education and Experience

  • πŸŽ“Β Ph.D.Β in Geo-informatics and Geo-evaluation Studies from Manipal Academy of Higher Education (2020).
  • πŸŽ“Β M.Phil.Β with distinction in Marine Geology from Mangalore University (1997).
  • πŸ“šΒ 26 years of experience in teaching, administration, and research.
  • 🌍 Expert in Environmental Studies, Hydrogeology, Engineering Geology, GIS, and Remote Sensing.
  • πŸ“‹Β Research focused on sediment transport, river basin dynamics, and coastal morphometry.

Suitability For The Award

Dr. Balakrishna S. Maddodi, a visionary Associate Professor at the Manipal Institute of Technology, has been conferred with the prestigious Sustainability Achievement Award for his remarkable contributions to environmental sustainability, water resource management, and societal well-being. With over 26 years of experience spanning teaching, research, administration, and community service, Dr. Maddodi exemplifies excellence in fostering sustainable practices through education, innovation, and community outreach.

Professional DevelopmentΒ 

Publications Top Notes

  • Correlation of Geotechnical and Mineralogical Properties of Lithomargic Clays in Uttara Kannada Region of South IndiaΒ (2024) –Β Geosciences (Switzerland)Β πŸ—ΊοΈΒ –Β 3 citations.
  • Sustainable options for fertilizer management in agriculture to prevent water contamination: a reviewΒ (2024) –Β Environment, Development and Sustainability 🌱 –Β 34 citations.
  • Enhanced Wear Resistance in Carbon Nanotube-Filled Bio-Epoxy Composites: A Comprehensive Analysis via Scanning Electron Microscopy and Atomic Force MicroscopyΒ (2023) –Β Journal of Composites ScienceΒ πŸ§ͺΒ –Β 6 citations.
  • Effect of Polypropylene Macro Fiber on Geotechnical Characteristics of Black Cotton Soil: An Experimental Investigation and Correlation AnalysisΒ (2023) –Β Engineered ScienceΒ πŸ› οΈΒ –Β 7 citations.
  • New polymeric and inorganic membrane materials for water separationΒ (2023) –Β Modern Approaches in Membrane Technology for Gas Separation and Water TreatmentΒ πŸ’§
  • Simulation and Experimental Analysis of L-Section in Reinforced Cement Concrete: Uncertainties in Performance and StrengthΒ (2023) –Β Engineering ProceedingsΒ πŸ“
  • Performance Evaluation of Hybrid Glass Wastes Incorporated ConcreteΒ (2022) –Β Engineered ScienceΒ πŸ₯½Β –Β 6 citations.
  • Experimental and Statistical Evaluation of Mechanical Properties of Green Cement Concrete – Taguchi Integrated Supervised Learning ApproachΒ (2022) –Β Engineered ScienceΒ πŸ—οΈΒ –Β 12 citations.

Melvin Samuel | Environmental | Environmental Innovation Award

Melvin Samuel | Environmental | Environmental Innovation Award

Dr. Melvin Samuel, Marquette University, United States.

Publication profile

Orcid
Scopus
Googlescholr

Education and Experience

  • Doctor of Philosophy – Ph.D.Β πŸŽ“
    Vellore Institute of Technology (VIT), Vellore, India – Environmental Science and Engineering, BiotechnologyΒ (2013-2016)
  • Master of Science by Research – M.S. by ResearchΒ πŸŽ“
    Vellore Institute of Technology (VIT), Vellore, India – Environmental Science and Engineering, BiotechnologyΒ (2010-2013)
  • Bachelor of Technology – B.TechΒ πŸŽ“
    Karunya Institute of Technology & Sciences, India – BiotechnologyΒ (2006-2010)
  • Senior Research AnalystΒ πŸ“Š
    Marquette University, USAΒ (2022-present)
  • Research AssociateΒ πŸ§‘β€πŸ”¬
    University of Wisconsin-Milwaukee, USAΒ (2018-2022)
  • Science and Policy Advisory Committee MemberΒ πŸ›οΈ
    Southeastern Wisconsin Watersheds Trust, Inc.Β (2018-2022)
  • Project AssistantΒ πŸ”¬
    Indian Institute of Technology, Kharagpur, IndiaΒ (2018)
  • Post-Doctoral Research FellowΒ πŸ‘¨β€πŸ”¬
    Indian Institute of Technology, Kharagpur, IndiaΒ (2016-2018)

Suitability For The Award

Dr. Melvin Samuel is highly suitable for the Environmental Innovation Award, given his remarkable contributions to environmental science, particularly in developing groundbreaking solutions for water purification and contaminant degradation. His research has focused primarily on the mitigation of per- and polyfluoroalkyl substances (PFAS), a persistent environmental and public health concern, showcasing his commitment to creating innovative methods for pollution control and water treatment.

Professional DevelopmentΒ 

Awards and HonorsΒ 

  • Patent: United States Provisional Patent for antibacterial and anti-biofilm hygiene coatings for water systemsΒ πŸ…
  • Patent: GO/Cu3(BTC)2/Fe3O4 nanocomposites with enhanced photocatalytic propertiesΒ πŸ…
  • Patent: Metal-organic framework composite for removing environmental contaminantsΒ πŸ…
  • Certification: Biosafety/Biosecurity & Risk Management valid until 2026Β πŸŽ–οΈ
  • Certification: Data Security and Privacy, Chemical Hygiene, and Microbiology Lab SafetyΒ πŸ”

Publications

  • πŸ› οΈΒ Effect of heat treatment on microstructure and high-temperature wear performance of additive manufactured IN718Β – Journal of Manufacturing Processes, 2024, cited by 0.
  • πŸ’§Β Enhanced perfluorooctanoic acid (PFOA) degradation by electrochemical activation of peroxydisulfate (PDS) during electrooxidation for water treatmentΒ – Science of the Total Environment, 2024, cited by 3.
  • 🌊 A comprehensive review of the challenges and opportunities in microalgae-based wastewater treatment for eliminating organic, inorganic, and emerging pollutantsΒ – Biocatalysis and Agricultural Biotechnology, 2024, cited by 2.
  • 🌱 Green energy breakthroughs: Harnessing nano-catalysts and enzymatic catalysts for bioenergy generationΒ – Industrial Crops and Products, 2024, cited by 1.
  • 🌿 Ammonia production from microalgal biosystem: Present scenario, cultivation systems, production technologies, and way forwardΒ – Fuel, 2024, cited by 0.
  • βš›οΈΒ Advancement in integrated ammonia synthesis, and its techno-economic analysis, emission index, and contribution to the hydrogen 2.0 economyΒ – Fuel, 2024, cited by 3.
  • 🌍 Production and utilization of green ammonia for decarbonizing the energy sector with a discrete focus on Sustainable Development Goals and environmental impact and technical hurdlesΒ – Fuel, 2024, cited by 20.
  • πŸ“Β Graphene materials in pollution trace detection and environmental improvementΒ – Environmental Research, 2024, cited by 6.

Jiacong Li | Decarbonization | Best Researcher Award

Jiacong Li | Decarbonization | Best Researcher Award

Mr. Jiacong Li , Tsinghua University, China

πŸ“šπŸ”¬Publication Profile

OrcidΒ 

Suitability For The Award

Jiacong Li is a dedicated Ph.D. student at Tsinghua University, specializing in environmental science and engineering. His research focuses on energy system decarbonization, particularly through the application of carbon capture, utilization, and storage (CCUS) technologies. His innovative approach and significant contributions position him as a strong candidate for the Best Researcher Award.

Education and Experience:

πŸŽ“Β Ph.D. in Environmental Science and Engineering
Tsinghua University, ongoing

πŸŽ“Β Bachelor of Engineering
Tsinghua University

πŸŽ“Β Bachelor of Philosophy
Tsinghua University

πŸ› Β Research Focus:
Energy system decarbonization, carbon capture, utilization, and storage (CCUS)

πŸ“ŠΒ Published in Applied Energy:
Assessing flexible carbon capture power plants’ synergies with renewable energy

Professional Development

πŸš€Β Jiacong Li has actively contributed to cutting-edge research on the decarbonization of power systems, focusing on the flexible operation of carbon capture and storage technologies. His current projects explore the integration of renewable energy sources like wind and solar with carbon capture systems to enhance power system flexibility.Β πŸ’‘Β Jiacong is involved in collaborations with theΒ Tsinghua-Toyota Joint Research InstituteΒ and theΒ Ordos-Tsinghua Innovative & Collaborative Research Program, advancing carbon neutrality goals. His ongoing work on decarbonizing the coal-to-methanol industry showcases his dedication to developing sustainable energy solutions for the future. 🌱

Research Focus

πŸ”¬Β Jiacong Li’s research is centered on decarbonizing energy systems through flexible carbon capture and storage (CCS) technologies. His work explores the synergy between CCS power plants and renewable energy sources such as wind and solar, focusing on large-scale power systems.Β πŸ”‹Β His research aims to optimize the flexibility of CCS operations, ensuring that energy generation remains efficient while reducing carbon emissions. 🌍 By examining the economic and environmental benefits, Jiacong’s studies provide insights into how CCS can be deployed in the near term, offering a pathway toward a carbon-neutral future. 🌱

Awards and HonorsΒ πŸ†βœ¨

πŸ…Β Best Researcher Award Nominee – 2024

πŸŽ–Β Research Publication in Applied Energy – 2025

🌟 Tsinghua-Toyota Joint Research Institute Cross-discipline Program

🌟 Ordos-Tsinghua Collaborative Research in Carbon Neutrality

PublicationsΒ πŸ“šπŸ“

πŸ“„Β Assessing the synergies of flexibly-operated carbon capture power plants with variable renewable energy in large-scale power systems – Applied EnergyΒ (2025)
Cited by: N/A

πŸ“„Β Combined solar power and storage as cost-competitive and grid-compatible supply for China’s future carbon-neutral electricity system – Proceedings of the National Academy of SciencesΒ (2021)
Cited by: N/A

Conclusion

Jiacong Li’s academic achievements, robust research contributions, and innovative approach to energy decarbonization align well with the criteria for the Best Researcher Award. His ongoing efforts to advance CCUS technologies and his ability to publish impactful research highlight his potential to make significant contributions to the field of environmental science and engineering. Recognizing his work with this award would not only honor his achievements but also encourage further innovation in sustainable energy solutions.