Pawarin Tuntariyanond | Research Excellence | Research Excellence Award

Assist. Prof. Dr. Pawarin Tuntariyanond | Research Excellence | Research Excellence Award

Kasetsart University | Thailand

Asst. Prof. Dr. Pawarin Tuntariyanond is a leading researcher in circular textiles and sustainable textile value chains at Kasetsart University. As Project Leader of the Hub of Knowledge for Low Carbon Materials (HK-LCM), she advances low-carbon material innovation, supply chain collaboration, and digital traceability systems. Her work integrates circular economy principles and ecosystem-based management, connecting academia, industry, government, and communities. Through research, consultancy, and multi-stakeholder engagement, she drives the practical implementation, upscaling, and innovation of sustainable, low-carbon textile systems that promote environmental and economic resilience.

Citation Metrics (Scopus)

    30
    20
    10
      5
       0

Citations
22

Documents
6

h-index
3

Citations

Documents

h-index


View Scopus Profile View Orcid Profile

Featured Publications

Dr. Ahmed Sobhy Abdelrahim Abdallah darwish | Green Chemistry | Best Academic Researcher Award | 2736

Dr. Ahmed Sobhy Abdelrahim Abdallah darwish | Green Chemistry | Best Academic Researcher Award

Zagazig university, Egyptian International Pharmaceutical Industries Company, EIPICO | Egypt

Ahmed Sobhy Abdelrahim Abdallah Darwish is a highly accomplished analytical chemist with strong academic credentials and extensive pharmaceutical industry experience. He holds advanced qualifications in analytical chemistry up to the doctoral level and demonstrates a sustained commitment to specialization, quality, and scientific rigor. Professionally, he has progressed through key quality control, stability, and methodology leadership roles, culminating in his current position as Deputy Manager of Labs Development at EIPICO, where he leads multidisciplinary teams and oversees method development, comparative in vitro studies, and stress stability research. He possesses strong regulatory expertise and the ability to engage technically with major international pharmacopoeias and global regulatory authorities. His research portfolio is centered on eco-friendly, stability-indicating HPLC methods, with numerous completed publications emphasizing green analytical chemistry principles. With a solid citation record and recognized contributions to sustainable pharmaceutical analysis, his profile reflects both industrial impact and academic excellence.

Citation Metrics (Scopus)

80
60
40
20
0

Citations
49

Documents
10

h-index
4

Citations

Documents

h-index


View Scopus Profile
View Google Scholar Profile
View Orcid Profile

Featured Publications

Wahad Rahman | Energy Sustainability | Best Researcher Award

Mr. Wahad Rahman | Energy Sustainability | Best Researcher Award

Mr. Wahad Rahman | University of Engineering and Technology Peshawar | Pakistan

A highly skilled engineering professional with extensive experience in mechatronics, renewable energy systems, additive manufacturing, and Internet of Things (IoT) technologies. With a strong academic foundation including advanced research in hybrid energy harvesting systems, this expert has contributed significantly to cutting-edge developments in sustainable power solutions for sensor networks and pipeline monitoring applications. Current work in additive manufacturing and reverse engineering involves leading research and development initiatives, operating advanced 3D printing technologies (FDM, SLA), managing high-precision 3D scanning, and conducting specialized training programs. This blends practical engineering with innovation-driven problem-solving across industrial and applied research environments. Previously, research contributions in sensor and energy harvesting systems included the design and development of micro Kaplan and Crossflow turbines, IoT-based pipeline monitoring solutions, energy-efficient wireless sensor nodes, and experimental setups for testing hybrid energy harvesters. These projects demonstrate strong proficiency in mechanical design, simulation, prototyping, and system integration. With several years of experience in academia, this professional has taught undergraduate theory and laboratory courses in mechanics of materials, fluid mechanics, robotics, and engineering software tools such as MATLAB and SolidWorks. Extensive involvement in STEM capacity-building programs further highlights commitment to engineering education and technology dissemination. Research expertise spans renewable energy, hybrid and flow-based energy harvesting, control systems, self-powered systems, power management circuits, wireless sensors, and IoT technologies. Published work includes multiple journal articles in reputable international outlets focusing on piezoelectric, electromagnetic, and hybrid energy harvesters, turbine modeling, RF energy harvesting, and sensor network applications. Professional development includes specialized training in IoT, Arduino, Raspberry Pi, MATLAB, image processing, robotics, content writing, and digital marketing, demonstrating a broad multidisciplinary skillset. Overall, this profile reflects a dynamic researcher and engineer dedicated to advancing sustainable energy solutions, intelligent monitoring systems, and modern manufacturing technologies.

Profiles: Orcid | LinkedIn | Google Scholar

Featured Publications

Rahman, W. U., & Khan, F. U. (2025). A hybrid flow energy harvester to power an IoT-based wireless sensor system for the digitization and monitoring of pipeline networks. Machines, 13(11). https://doi.org/10.3390/machines13111025

Rahman, W. U., & Khan, F. U. (2025). An integrated fluid flow and solar hybrid energy harvester for pipeline monitoring system. AIP Advances. https://doi.org/10.1063/5.0284001

Rahman, W. U., & Khan, F. U. (2025). A survey of flow-based energy harvesters for powering sustainable wireless sensor nodes. Journal of Renewable and Sustainable Energy. https://doi.org/10.1063/5.0237597

Rahman, W. U., & Khan, F. U. (2023). A hybrid flow energy harvester using combined piezoelectric and electromagnetic transductions for pipeline network monitoring. Journal of Intelligent Material Systems and Structures. https://doi.org/10.1177/1045389X221147647

Nicola Cantasano | Environmental Science | Best Researcher Award

Dr. Nicola Cantasano | Environmental Science | Best Researcher Award

Dr. Nicola Cantasano | National Research Council of Italy | Italy

Dr. Nicola Cantasano’s research integrates marine biology, astrobiology, and freshwater ecosystem monitoring, focusing on developing innovative methodologies to measure, map, and interpret complex ecological systems on Earth and beyond. His work spans both marine and planetary environments, uniting biological and geological perspectives to enhance understanding of life’s signatures in diverse contexts. In marine science, he has made significant contributions to the taxonomy of seaweeds, monitoring of Posidonia oceanica meadows, and the management of beach-cast seagrasses, which are vital for Mediterranean coastal stability and biodiversity. His studies have also explored the surveillance of invasive algal species such as Caulerpa racemosa, contributing to regional environmental management and conservation strategies. Through the development of water mapping and ecological assessment methods, including the Indice di Funzionalità Fluviale (I.F.F.), he has advanced tools for evaluating the ecological status of fluvial systems, particularly within the Calabrian region. Dr. Cantasano’s research extends into astrobiology, where he investigates potential biosignatures on Mars by analyzing digital imagery from NASA missions. He explores analogies between terrestrial stromatolites—layered microbial structures formed by cyanobacteria—and Martian organosedimentary formations, proposing biogenic interpretations of textures observed in Martian rocks. This work contributes to the broader understanding of planetary habitability and the possible existence of ancient microbial life on Mars. His extensive publications cover topics such as marine and freshwater ecosystem management, coastal zone conservation, nutrient dynamics, and biogeochemical assessments. He has published in leading journals including Ocean & Coastal Management, International Journal of Astrobiology, Plant Biosystems, and Rendiconti Lincei. By bridging marine ecology and planetary science, his research provides innovative frameworks for sustainable ecosystem management on Earth and supports the scientific quest for life beyond it.

Profiles: Scopus | OrcidResearch Gate

Featured Publications 

Cantasano, N. (2025). Ecological and fluvial corridor of the Verri Stream as a connecting step in the Natura 2000 network along the Calabria coastal region, Italy. Environments, 12(11), 426. https://doi.org/10.3390/environments12110426

Cantasano, N., Di Martino, V., & Pellicone, G. (2024). The invasion of Caulerpa cylindracea Sonder 1845 in the Calabria coastal seas. Coasts, 4(1), 3. https://doi.org/10.3390/coasts4010003

Ietto, F., Pellicone, G., & Cantasano, N. (2023). Silting process and loss of Posidonia oceanica meadows in the Tyrrhenian waters of Calabria (Southern Italy). Sustainability, 15(17), 13102. https://doi.org/10.3390/su151713102

Ietto, F., Pellicone, G., & Cantasano, N. (2023, May 25). Silting process and loss of Posidonia oceanica meadows in the Tyrrhenian Calabria waters (Southern Italy). Preprints. https://doi.org/10.20944/preprints202305.1751.v1

Cantasano, N. (2022). Marine pollution by microplastics in the Mediterranean Sea. Journal of Marine Science and Engineering, 10(7), 858. https://doi.org/10.3390/jmse10070858

Bentaallah, M. E. A., Taibi, N. E., & Cantasano, N. (2021). Additional new records of Caulerpa cylindracea Sonder 1845 along the West Algerian coasts. Indian Journal of Geo-Marine Sciences, 50(1), 97–103.*

Cantasano, N., Caloiero, T., Pellicone, G., Aristodemo, F., De Marco, A., & Tagarelli, G. (2021). Can ICZM contribute to the mitigation of erosion and of human activities threatening the natural and cultural heritage of the coastal landscape of Calabria? Sustainability, 13(3), 1122. https://doi.org/10.3390/su13031122

 

Ruchi Singh Parihar | Climate change | Best Researcher Award

Assist. Prof. Dr. Ruchi Singh Parihar | Climate change | Best Researcher Award

Assist. Prof. Dr. Ruchi Singh Parihar | CHRIST University | Bengaluru | India

Dr. Ruchi Singh Parihar is an Assistant Professor in the Department of Statistics and Data Science at CHRIST (Deemed to be University), Bangalore, and an Associate at the International Centre for Theoretical Physics (ICTP), Trieste, Italy. Her research bridges climate science, data analytics, and public health, with expertise in climate change impacts on human health, climate and atmospheric modeling, environmental epidemiology, and climate risk assessment. Holding a Ph.D. in Climate Change and Health from IIT Delhi, she applies statistical and dynamical modeling, remote sensing, and GIS techniques to explore the influence of climate variability on vector-borne diseases and environmental systems. Dr. Parihar is proficient in working with global climate models (GCMs), high-performance computing, and scientific programming tools, contributing to impactful publications in top-tier journals including Nature Scientific Reports, GeoHealth, and iScience. She has received multiple international research and travel grants from globally recognized institutions such as the NSF (USA), ICTP (Italy), IBS (South Korea), and Rutgers University (USA). As an active member of several international scientific organizations—AGU, EGU, AOGS, and ISNTD—she continues to promote interdisciplinary collaboration and innovative approaches toward climate resilience, sustainability, and global health.

Profile: Google Scholar

Featured Publications

Parihar, R. S., Bal, P. K., Saini, A., Mishra, S. K., & Thapliyal, A. (2022). Potential future malaria transmission in Odisha due to climate change. Scientific Reports, 12(1), 9048.

Singh Parihar, R., Bal, P. K., Kumar, V., Mishra, S. K., Sahany, S., Salunke, P., & Dhiman, R. C. (2019). Numerical modeling of the dynamics of malaria transmission in a highly endemic region of India. Scientific Reports, 9(1), 11903.

Bal, P. K., Dasari, H. P., Prasad, N., Salunke, P., & Parihar, R. S. (2021). Variations of energy fluxes with ENSO, IOD and ISV of Indian summer monsoon rainfall over the Indian monsoon region. Atmospheric Research, 258, 105645.

Parihar, R. S., Bal, P. K., Thapliyal, A., & Saini, A. (2022). Climate change projections and its impacts on potential malaria transmission dynamics in Uttarakhand. Journal of Communicable Diseases, 54(1), 47–53.

Parihar, R. S., Kumar, V., Anand, A., Bal, P. K., & Thapliyal, A. (2024). Relative importance of VECTRI model parameters in the malaria disease transmission and prevalence. International Journal of Biometeorology, 68(3), 495–509.