Shuyao Wang | Environmental Science | Women Researcher Award

Women Researcher Award

Shuyao Wang
Affiliation McGill University
Country Canada
Scopus ID 57191283001
Documents 33
Citations 1,662
h-index 17
Subject Area Environmental Science
Event International Academic Achievements & Awards
ORCID 0000-0001-8825-1573

Shuyao Wang
Institution: McGill University, Canada

The Women Researcher Award recognizes outstanding scientific achievement, sustained scholarly excellence, and meaningful contributions to research and innovation. Shuyao Wang has developed an internationally recognized research portfolio in environmental science, sustainable biomaterials, food packaging technologies, biodegradable polymers, and tissue engineering. Her publications emphasize environmentally responsible material design, advanced polymer composites, antimicrobial packaging systems, and bio-based functional materials, reflecting significant contributions to both academic research and practical applications.[1]

Abstract

Shuyao Wang’s research integrates environmental science, polymer engineering, nanotechnology, and sustainable biomaterials to develop biodegradable food packaging materials and biomedical scaffolds. Her work emphasizes renewable polymers, antimicrobial films, electrospinning technologies, nanocomposites, and environmentally friendly packaging systems that improve food preservation, material functionality, and sustainability. Her scientific contributions have attracted substantial international recognition, reflected by a strong publication record and significant citation impact.[2]

Keywords

Environmental Science, Biodegradable Packaging, Chitosan Films, Food Preservation, Electrospinning, Nanocomposite Materials, Biopolymers, Tissue Engineering

Introduction

Growing environmental concerns have accelerated research into sustainable packaging materials and biodegradable polymers. Shuyao Wang has contributed to this field by developing multifunctional biomaterials that combine environmental sustainability with enhanced antimicrobial performance, improved preservation efficiency, and advanced biomedical functionality. Her interdisciplinary research bridges environmental science, materials engineering, polymer chemistry, and food technology.[3]

Research Profile

  • Affiliated with McGill University, Canada.
  • Primary research area: Environmental Science.
  • Research interests include biodegradable polymers and sustainable food packaging.
  • Extensive work on chitosan-based composite materials.
  • Studies integrating nanotechnology with functional biomaterials.
  • Scopus metrics include 33 indexed publications, 1,662 citations, and an h-index of 17.

Research Contributions

Her research has significantly advanced biodegradable food packaging through antimicrobial polymer films, nanofiber fabrication, electrospinning technologies, composite scaffolds for tissue engineering, and multifunctional packaging materials incorporating nanoparticles and natural extracts. These studies demonstrate practical innovations that improve food safety, extend shelf life, and promote environmentally sustainable packaging solutions while contributing to biomedical material development.[4]

Publications

  • Fabrication of antibacterial chitosan-PVA blended film using electrospray technique for food packaging applications. International Journal of Biological Macromolecules, 107, 848-854 (2018). DOI:
    https://doi.org/10.1016/j.ijbiomac.2017.09.043
  • Development of red apple pomace extract/chitosan-based films reinforced by TiO₂ nanoparticles as a multifunctional packaging material. International Journal of Biological Macromolecules, 168, 105-115 (2021). DOI:
    https://doi.org/10.1016/j.ijbiomac.2020.11.115
  • Composite poly(lactic acid)/chitosan nanofibrous scaffolds for cardiac tissue engineering. International Journal of Biological Macromolecules, 103, 1130-1137 (2017). DOI:
    https://doi.org/10.1016/j.ijbiomac.2017.05.147
  • Developing poly(vinyl alcohol)/chitosan films incorporated with d-limonene: Structural, antibacterial, and fruit preservation properties. International Journal of Biological Macromolecules, 145, 722-732 (2020). DOI:
    https://doi.org/10.1016/j.ijbiomac.2019.12.192
  • Fabrication of polylactic acid/carbon nanotubes/chitosan composite fibers by electrospinning for strawberry preservation. International Journal of Biological Macromolecules, 121, 1329-1336 (2018). DOI:
    https://doi.org/10.1016/j.ijbiomac.2018.10.088

Research Impact

Shuyao Wang has authored 33 Scopus-indexed publications with more than 1,662 citations and an h-index of 17. These scholarly metrics demonstrate sustained scientific influence in environmental science, biodegradable materials, sustainable packaging technologies, and biomaterial engineering. Her research has been widely cited across polymer science, food engineering, biomedical engineering, and environmental sustainability literature.[1]

Award Suitability

The Women Researcher Award recognizes scientific leadership, originality, measurable research impact, interdisciplinary collaboration, and contributions that advance knowledge while addressing societal challenges. Shuyao Wang’s internationally cited research, innovative biomaterial development, and sustained contributions to sustainable environmental technologies align well with the objectives of this academic recognition.

Conclusion

Shuyao Wang has established a distinguished academic profile through impactful research in environmental science, sustainable polymers, biodegradable packaging, and biomaterials. Her publication record, strong citation performance, interdisciplinary research, and practical innovations demonstrate meaningful contributions to sustainable material science and environmental engineering, making her an appropriate candidate for recognition through the Women Researcher Award.

References

  1. Elsevier. (n.d.). Scopus author details: Shuyao Wang, Author ID 57191283001. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57191283001
  2. Liu Y., Wang S., Lan W. (2018). Fabrication of antibacterial chitosan-PVA blended film using electrospray technique for food packaging applications. International Journal of Biological Macromolecules.
    https://doi.org/10.1016/j.ijbiomac.2017.09.043
  3. Lan W., Wang S. et al. (2021). Development of red apple pomace extract/chitosan-based films reinforced by TiO₂ nanoparticles as a multifunctional packaging material.https://doi.org/10.1016/j.ijbiomac.2020.11.115
  4. Liu Y., Wang S., Zhang R. (2017). Composite poly(lactic acid)/chitosan nanofibrous scaffolds for cardiac tissue engineering.
    https://doi.org/10.1016/j.ijbiomac.2017.05.147

Rizwan Sarwar Awan | Earth and Planetary Sciences | Innovative Research Award

Innovative Research Award

Rizwan Sarwar Awan
Affiliation Northeast Petroleum University
Country China
Scopus ID 57211126027
Documents 50
Citations 677
h-index 12
Subject Area Earth and Planetary Sciences
Event International Academic Achievements & Awards

Rizwan Sarwar Awan
Northeast Petroleum University, China

Rizwan Sarwar Awan is a distinguished geoscientist specializing in sedimentary geochemistry, paleoenvironmental reconstruction, unconventional hydrocarbon resources, and isotope geochemistry. His research integrates geochemical proxies, basin evolution studies, organic matter enrichment mechanisms, and shale reservoir characterization. Through extensive international collaborations and a strong publication record, he has contributed significantly to understanding geological processes related to energy resources and paleoclimate evolution.[1]

Abstract

This article presents the academic achievements and research accomplishments of Rizwan Sarwar Awan. His work focuses on sedimentary geochemistry, shale gas systems, paleoenvironmental reconstruction, rare earth element geochemistry, and petroleum geology. His multidisciplinary studies have enhanced understanding of depositional environments, organic matter accumulation, and unconventional energy resources across Asia and beyond.[1]

Keywords

Sedimentary Geochemistry, Paleoclimate, Paleoenvironment, Shale Gas, Organic Matter, Petroleum Geology, Rare Earth Elements, Basin Analysis, Isotope Geochemistry, Geochemical Proxies.

Introduction

Awan completed his PhD at China University of Petroleum Beijing and has held research and academic positions at leading institutions in China. His investigations combine field observations, laboratory geochemistry, basin modeling, and advanced analytical methods to evaluate source rocks, reservoir quality, and ancient environmental conditions.[2]

Research Profile

Currently serving as Distinguished Associate Professor at Northeast Petroleum University, Awan has established an international research portfolio spanning China, Pakistan, and collaborative global projects. His expertise includes unconventional hydrocarbon systems, black shale geochemistry, fossil geochemistry, natural hydrogen studies, and carbonate microbial systems. His scholarly activities include editorial responsibilities, peer review services, conference participation, and mentoring of emerging researchers.[3]

Research Contributions

  • Advanced understanding of organic matter enrichment in Cambrian black shales.
  • Developed paleoenvironmental models using elemental and isotopic proxies.
  • Contributed to shale gas and shale oil resource evaluation.
  • Applied geochemical methods to reconstruct paleoclimate evolution.
  • Expanded knowledge of rare earth element behavior in geological systems.

Publications

Awan has authored and co-authored more than fifty scholarly publications in internationally recognized journals including Marine and Petroleum Geology, Journal of Petroleum Science and Engineering, Geological Journal, Palaeogeography, Palaeoclimatology, Palaeoecology, and Journal of Asian Earth Sciences. His publications collectively address sedimentary processes, basin evolution, hydrocarbon generation, reservoir characterization, and geochemical indicators of environmental change.[4]

Research Impact

According to Scopus records, Awan has accumulated 677 citations from 574 citing documents, with 50 indexed publications and an h-index of 12. His work has influenced research in petroleum geology, geochemistry, shale resource assessment, and paleoenvironmental reconstruction. His publications continue to receive international recognition across multiple geoscience disciplines.[1]

Award Suitability

The combination of sustained publication productivity, international collaboration, editorial leadership, and measurable citation impact demonstrates strong suitability for a Research Excellence Award. His contributions address significant scientific challenges associated with energy resources, paleoclimate reconstruction, and sedimentary basin evolution while maintaining relevance to both academia and industry.[3]

Conclusion

Rizwan Sarwar Awan has developed a distinguished academic profile through impactful research, international scholarly engagement, and contributions to geoscience knowledge. His research achievements, publication record, and leadership roles position him as a notable contributor within the fields of sedimentary geochemistry and energy geosciences.

References

  1. Elsevier. (2026). Scopus Author Details: Rizwan Sarwar Awan, Author ID 57211126027.
    https://www.scopus.com/authid/detail.uri?authorId=57211126027
  2. Awan, R.S. (2021). PhD Dissertation, China University of Petroleum Beijing.
  3. Northeast Petroleum University. Faculty Profile and Academic Appointment Records.
  4. Awan, R.S., et al. (2025). Paleoenvironmental Conditions and Key Drivers of Organic Matter Accumulation in the Early Cretaceous Talhar Shale.
    https://doi.org/10.1016/j.jseaes.2025.106716

Supria Paul | Water Resources | Best Researcher Award

Mrs Supria Paul | Water Resources | Best Researcher Award

Mrs Supria Paul , University of Rhode Island , United States

Supria Paul is a seasoned Engineer III with over a decade of expertise in hydraulic and hydrologic modeling, specializing in stormwater management and drainage systems. She adeptly utilizes advanced computational programs such as HEC-RAS, HEC-HMS, and SWAT, coupled with geospatial tools like ArcGIS and QGIS. Her extensive project portfolio includes significant contributions to stormwater master plans, drainage improvements, and sewer system upgrades. Supria’s work spans across the United States and internationally, including Rhode Island, Missouri, and Bangladesh. Her role as a researcher has led her to engage in high-impact projects funded by entities such as the Asian Development Bank and the EU. She is currently completing her Ph.D. in Environmental and Life Sciences at the University of Rhode Island, further solidifying her expertise in the field.

Publication Profile

Google Scholar

Strengths for the Award

  1. Extensive Experience and Expertise:
    • Over 12 years of experience in hydraulic and hydrologic modeling, including work on stormwater management and drainage systems.
    • Proficiency with a wide range of computational tools and models (e.g., HEC-RAS, SWAT, SewerGEMS, etc.), demonstrating a deep understanding of both theoretical and practical aspects of water resources engineering.
  2. Diverse Project Experience:
    • Contributed to significant projects across various regions and contexts, such as the Centerville Village Water Main Improvement Project, the City of Rock Hill Stormwater Master Plan, and climate impact studies in Bangladesh.
    • Experience with complex modeling tasks and collaboration with cross-functional teams shows versatility and an ability to handle diverse challenges.
  3. Research and Publications:
    • Author of multiple peer-reviewed publications in reputable journals, addressing topics such as climate change impacts, flood hazard assessment, and hydrological modeling.
    • Contributions to research projects funded by notable organizations like the EU, ADB, and USDA, indicating high-quality research and significant contributions to the field.
  4. Academic Background and Continuing Education:
    • Ph.D. candidate in Environmental and Life Sciences, with prior degrees in Water Resources Engineering, showcasing a strong academic foundation.
    • Ongoing commitment to professional development through relevant courses and training.
  5. Technical Skills and Innovation:
    • Demonstrated ability in applying advanced modeling techniques and integrating geospatial tools to solve real-world problems.
    • Involvement in developing innovative solutions and models for hydrological and climate impact assessments.

Areas for Improvement

  1. Broader Impact and Dissemination:
    • While Supria has a strong publication record, focusing on broader dissemination and outreach could enhance the impact of her research. Engaging in more interdisciplinary collaborations and public communication could broaden her research’s influence.
  2. Leadership and Mentoring:
    • Increasing visibility in leadership roles or mentoring positions could further showcase her expertise and contribute to the development of future professionals in the field.
  3. Diversity of Research Topics:
    • Expanding research to include emerging areas or new methodologies could enhance her profile. For instance, incorporating aspects of machine learning or AI in hydrology could be a potential area of growth.

Education 

Supria Paul is pursuing a Ph.D. in Environmental and Life Sciences at the University of Rhode Island, expected to finish in 2024. She holds a Master’s degree in Water Resources Development from Bangladesh University of Engineering and Technology (BUET), Dhaka, completed in 2014. Supria also earned her Bachelor’s degree in Water Resources Engineering from the same institution in 2011. Her educational background provides a strong foundation in water resources engineering, hydrology, and environmental science, supporting her extensive practical experience in hydraulic and hydrologic modeling. This rigorous academic preparation has equipped her with the skills to undertake complex research and contribute to significant projects in stormwater management and climate impact assessment.

Experience

Supria Paul brings over 12 years of experience in hydraulic and hydrologic modeling, with a focus on stormwater and drainage systems. As an Engineer III at Lochmueller, she has led critical projects including water main improvements, sewer system enhancements, and stormwater master planning. Her work involves using advanced software like HEC-RAS, SewerGEMS, and SWMM for system analysis, design, and optimization. Supria has also contributed to research projects on climate impact and flood hazard assessment, applying models like SWAT and Delft3D. Her previous roles include significant research in Bangladesh, addressing climate change impacts and wastewater management. Her diverse experience highlights her capability in both practical engineering and research, making her a valuable asset to the field of water resources management.

Research Focus 

Supria Paul’s research focus lies in hydraulic and hydrologic modeling with a strong emphasis on climate change impacts, stormwater management, and flood risk assessment. Her work integrates advanced computational models, such as SWAT and HEC-RAS, with geospatial tools to analyze and improve water management systems. She has extensively studied the effects of climate variability on water resources, contributing to projects funded by international organizations like the Asian Development Bank and the EU. Her research includes developing predictive models for reservoir elevation and flood hazards, as well as assessing the resilience of urban water systems to extreme weather events. Supria’s work is instrumental in advancing our understanding of hydrological processes and enhancing the effectiveness of stormwater and drainage infrastructure.

Publications

  • Impact of land cover changes on land surface temperature and human thermal comfort in Dhaka city of Bangladesh 🌆
  • Flood hazard, vulnerability and risk assessment for different land use classes using a flow model 🌊
  • Hydrological response to climate change of the Brahmaputra basin using CMIP5 general circulation model ensemble 🌧️
  • A review of good adaptation practices on climate change in Bangladesh 📚
  • Assessment of nitrogen inputs into hunt river by onsite wastewater treatment systems via SWAT simulation 🌾
  • Evapotranspiration and vegetation cover classifications maps based on cloud computing at the Arab countries scale ☁️
  • Impact of climate change on river flows in the southwest region of Bangladesh 🏞️
  • A Comparative Analysis of CMIP3 and CMIP5 Climate Projections over Bangladesh 🔍
  • Assessment of change in future flow of Brahmaputra Basin applying SWAT model using multi-member ensemble climate data 🌍
  • IMPACT OF CLIMATE CHANGE ON URBAN DRAINAGE SYSTEMS IN THREE SELECTED COASTAL TOWNS OF BANGLADESH 🌧️
  • Flow Pattern Analysis in Haor Areas Using Delft3d 🌊
  • Changes of sediment discharge on the Pasur River using future climate change scenario 💧
  • An Assessment of Best Fitted Rainfall Distribution for Projected Climate Change over Bangladesh using Statistical Downscaling Method 🌦️
  • Assessing the Reservoir Inflow Relationship for Effective Flood Mitigation: A Hydrologic Modeling Approach for Scituate Reservoir, Rhode Island 🏞️
  • Shallow Groundwater Thermal Response to Land Surface Energy Dissipation and Potential Implications on the Use of Heat as a Tracer 🌡️
  • Effects of safe yield on Drinking Water Supply and Reservoir Capacity during Extreme Drought 💧
  • Sensitivity of different satellites gridded data over Brahmaputra Basin by using Soil and Water Assessment Tool (SWAT) 🛰️

Conclusion

Supria Paul is highly deserving of the Research for Best Researcher Award due to her impressive track record in research and practical applications within the field of water resources management. Her extensive experience, diverse project involvement, and strong academic background make her a standout candidate. To further enhance her candidacy, focusing on broader impact strategies, leadership roles, and exploring new research methodologies could be beneficial. Overall, her contributions to hydrology and environmental science are substantial, and she has demonstrated a commitment to advancing knowledge and practical solutions in her field.