Ali Danandeh Mehr | Environmental Science | Best Researcher Award

Prof. Dr. Ali Danandeh Mehr | Environmental Science | Best Researcher Award

Professor | The University of Antalya Bilim University | Turkey

Prof. Dr. Ali Danandeh Mehr is a prominent scholar in civil and environmental engineering, specializing in hydrology, drought modeling, and climate variability. His research integrates cutting-edge computational approaches such as machine learning, genetic programming, and hybrid data-driven models to solve complex water-related challenges. He has published 115 scientific documents in reputed international journals, advancing the field of hydroinformatics and predictive environmental modeling. With 4,186 citations and an h-index of 37, his research reflects significant global impact and scholarly recognition. His work focuses on understanding extreme climatic events, improving forecasting accuracy, and supporting sustainable water resource planning. Through innovative methodologies and interdisciplinary approaches, his contributions continue to enhance resilience and decision-making in water resources engineering and environmental sustainability.

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Featured Publications

Nazmunnahar Nazmunnahar | Environmental Science | Research Excellence Award

Mrs. Nazmunnahar Nazmunnahar | Environmental Science | Research Excellence Award

PhD Candidate | The University of Manchester | United Kingdom

Mrs. Nazmunnahar Nazmunnahar, in collaboration with Aman Ul Azam Khan, Mehedi Hasan Roni, Aurghya Kumar Saha, Zarin Tasnim Bristy, Abdul Baqui, and Abdul Md Mazid, co-authored a significant study on sustainable smart textile development using e-waste materials. The research focuses on fabricating twelve types of conductive threads by twisting copper filaments with cotton and polyester, followed by coating with carbon paste enriched with sea salt, sourced from recycled dry cell batteries. The developed threads exhibited exceptionally low electrical resistance, with the best-performing variant achieving 0.0164 Ω/cm. Comparative analysis revealed performance equal to or better than commercial conductive threads. The threads maintained stability under bending, twisting, and wash cycles, proving their suitability for wearable electronics, flexible circuits, and eco-friendly textile innovations.

Julia Grosinger | Environmental Science | Research Excellence Award

Mrs. Julia Grosinger | Environmental Science | Research Excellence Award

Investigadora | The University of  ICTA Universitat Autonoma De Barcelona | Spain

Mrs. Julia Grosinger is a dedicated researcher specializing in social-ecological systems, agro-food studies, and post-growth transformations in rural contexts. Her academic work focuses on understanding landscape governance, environmental justice, and the co-production of nature’s contributions to people. Through interdisciplinary and case-based methodologies, she examines how human needs can be spatially integrated into sustainability strategies. She has contributed to several international journals, addressing themes such as biodiversity governance, environmental disinformation, and participatory approaches to sustainability. Her publications reflect strong engagement with ecological economics and sustainability science. With 9 scholarly documents, 68 citations, and an h-index of 5, she has established a credible academic presence, contributing valuable insights into the transition toward sustainable and equitable socio-ecological systems.

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Zhujun Gu | Environmental Science | Research Excellence Award

Prof. Dr. Zhujun Gu | Environmental Science | Research Excellence Award

Director | The University of Pearl River Water Resources Research Institute | China

Prof. Dr. Zhujun Gu is an accomplished environmental scientist known for his contributions to AI-based remote sensing and ecological monitoring systems. His research focuses on vegetation structure estimation, soil and water conservation, and intelligent supervision of river–lake ecosystems using advanced data-driven approaches. With 33 publications, 503 citations, and an h-index of 14, his work reflects consistent scientific influence and innovation. He pioneered 3D vegetation volume analysis, improving the accuracy of environmental modeling and conservation strategies. His methodologies integrate multi-angle imaging, UAV data, and AI tools to enhance decision-making in environmental management. His research supports sustainable development by providing scalable solutions for ecological restoration, resource monitoring, and environmental protection across diverse geographic regions.

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Mapping Tropical Dry Forest Succession Using Multiple Criteria Spectral Mixture Analysis

– ISPRS Journal of Photogrammetry and Remote Sensing, 2015

Thyago Lima | Earth | Research Excellence Award

Mr. Thyago Lima | Earth | Research Excellence Award

Mr. Thyago Lima | Earth | Unesp | Brazil

Mr. Thyago Lima is a geoscientist and environmental researcher with strong expertise in applied Earth sciences, remote sensing, and disaster risk analysis, currently affiliated with research activities linked to CEMADEN/UNESP. Mr. Thyago Lima holds academic training in environmental and geosciences, with a solid educational background that supports his interdisciplinary approach to hydrogeology, geomorphology, and spatial analysis. His professional experience includes extensive work on ground subsidence, urban and coastal environmental dynamics, groundwater assessment, and risk mapping, with contributions to national and international scientific journals and conference proceedings. Mr. Thyago Lima’s research interests focus on land subsidence related to mining and urbanization, hydrogeological characterization, marine and coastal environmental processes, mass movement susceptibility, flood and landslide risk, and the application of SAR and optical remote sensing for environmental monitoring.

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Hee Kyung Park | Environmental | Best Researcher Award

Ms. Hee Kyung Park | Environmental | Best Researcher Award

Post-master’s Researcher | Korea Institute of Civil Engineering and Building Technology | South Korea

Ms. Hee Kyung Park is a Master’s Degree Researcher at the Department of Environmental Research, Korea Institute of Civil Engineering and Building Technology, whose work focuses on the quantitative risk assessment and safety management of next-generation clean energy systems. Her research emphasizes decarbonized fuels such as hydrogen and ammonia, exploring their combustion behavior, explosion risks, and fire dynamics through both experimental and computational methods. She has conducted extensive studies involving cone calorimetry, toxicity testing, and fire dynamics simulation to enhance safety protocols in energy infrastructure. Her recent publications in leading KCI and SCI(E) journals address crucial topics, including consequence analysis of hydrogen leakage accidents, ammonia fuel risk evaluation in combined cycle power plants, and semi-quantitative safety management frameworks using the Bow-tie method. Additionally, she has contributed to major national research projects developing hydrogen turbine combustor testing methods and retrofitting technologies for gas turbines co-firing hydrogen. Through her interdisciplinary approach integrating thermal engineering, safety systems, and computational risk analysis, Ms. Hee Kyung Park plays a key role in advancing safer, sustainable, and high-efficiency energy technologies that align with global carbon neutrality goals. Her expertise and scholarly output, reflected in 15 citations by 14 documents across 8 publications with an h-index of 3, continue to contribute significantly to the evolution of hydrogen and ammonia-based energy systems within industrial safety and environmental research domains.

Profiles: Scopus | Orcid 

Featured Publications

Park, H. K. (2023, November). Consequence analysis on the leakage accident of hydrogen fuel in a combined cycle power plant: Based on the effect of regional environmental features. Journal of Hydrogen and New Energy.

Park, H. K. (2024, January). Experimental investigation on the measurement performance of high-speed ultrasonic wave thermometry in ambient- and high-temperature environments. Applied Thermal Engineering.

Park, H. K. (2024, April). Semi-quantitative risk assessment using Bow-tie method for the establishment of safety management system of hydrogen fuel storage facility in a combined cycle power plant. Journal of the Korean Society of Safety.

Park, H. K. (2024, April). Analysis of damage impact range according to the NG/NH3 mixing ratio when applying ammonia as fuel for a combined cycle power plant using an ALOHA program. Journal of the Korean Institute of Gas.

Park, H. K. (2024, March). Fire dynamics and evacuation simulation study on the library adapting BIPV based on the experimental data of a cone calorimeter. The Korean Institute of Fire Science & Engineering.