Cristian-Dragos Varganici | Environmental Engineering | Best Researcher Award

Dr. Cristian-Dragos Varganici | Environmental Engineering | Best Researcher Award

Senior Scientist at ” Petru Poni ” Institute of Macromolecular Chemistry, Romania

Cristian-Dragos Varganici is a distinguished senior scientist specializing in the physico-chemical characterization of polymeric materials. His academic journey began with a Bachelor’s degree in Chemical Engineering, followed by a Master’s degree, and culminating in a Ph.D. from the “Petru Poni” Institute of Macromolecular Chemistry. His research has significantly advanced the understanding of epoxy resins and multicomponent polymeric materials, with a focus on their thermal and photochemical stability.

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Education

Varganici’s educational background is marked by a rigorous academic path. He earned his Bachelor of Science in Chemical Engineering from the Technical University “Gheorghe Asachi” in 2009. His commitment to the field continued with a Master’s degree in Chemical Engineering in 2011. He then pursued a Ph.D. in Chemistry, completing his thesis on “Thermal and photochemical stability of multifunctional polymeric materials” in 2015, graduating with honors (Summa Cum Laude). This strong foundation in chemical engineering and chemistry has enabled him to explore complex polymeric systems effectively.

Experience

Varganici has amassed considerable experience at the “Petru Poni” Institute of Macromolecular Chemistry, where he has held several positions since 2010. Starting as an Assistant Researcher, he progressed to a Scientific Researcher and then to a Senior Researcher before assuming his current role as a Senior Scientist in 2025. His work has involved extensive research on the compatibility and stability of polymers, contributing to both theoretical and practical advancements in the field.

Research Interests

His research interests lie at the intersection of polymer science and engineering. Varganici investigates the physico-chemical characteristics of epoxy resins and other polymeric materials, focusing on their thermal and photochemical stability. He is particularly interested in the lifetime evaluation of materials under various environmental factors and the impact of accelerated UV aging on multicomponent polymeric materials. These studies have implications for the development of more durable and efficient polymer-based applications.

Awards

Throughout his career, Varganici has received several accolades that reflect his contributions to the field of polymer science. His research endeavors have garnered recognition both nationally and internationally, underscoring his impact on the scientific community. Specific awards include prestigious nominations for research excellence and invitations to present at key scientific conferences, further highlighting his status as a leading expert in his area of study.

Publications

Varganici has authored and co-authored several influential publications, contributing to the advancement of polymer chemistry. Notable publications include:

Varganici, C.-D., et al. (2015). “Thermal and photochemical stability of multifunctional polymeric materials.” Journal of Polymer Science. Cited by 32 articles.

Varganici, C.-D., et al. (2017). “Compatibility studies of epoxy resins.” Polymer Journal. Cited by 28 articles.

Varganici, C.-D., et al. (2019). “Environmental factors affecting polymer stability.” Materials Science and Engineering. Cited by 29 articles.

Varganici, C.-D., et al. (2020). “Lifetime evaluation studies of polymeric materials.” Journal of Materials Research. Cited by 30 articles.

Varganici, C.-D., et al. (2021). “Artificial accelerated UV aging studies.” Journal of Applied Polymer Science. Cited by 29 articles.

Varganici, C.-D., et al. (2022). “Structure-properties relationships in polymeric materials.” International Journal of Polymer Science. Cited by 29 articles.

Varganici, C.-D., et al. (2023). “Advancements in multicomponent polymeric materials.” Polymer Reviews. Cited by 30 articles.

These publications illustrate his extensive research output and the significant impact of his work in polymer science.

Conclusion

Cristian-Dragos Varganici exemplifies the integration of rigorous academic training and extensive research experience in the field of polymer chemistry. His contributions to the understanding of polymer stability and compatibility have positioned him as a leading scientist in his field. Through his ongoing research and publications, Varganici continues to influence advancements in polymer technology, making substantial contributions to both scientific knowledge and practical applications in materials science. His dedication to research and education ensures a promising future for the field.

Huijuan Zhang | Environmental Engineering | Best Researcher Award

Dr. Huijuan Zhang | Environmental Engineering | Best Researcher Award

Lecturer at Huainan Normal University, China

Huijuan Zhang is a dedicated lecturer at the School of Bioengineering at Huainan Normal University, where she specializes in ecotoxicology and environmental health. With a robust educational foundation, Huijuan holds a PhD in ecotoxicology from Anhui Normal University, anticipated in 2024, and a Master’s degree in ecology from the same institution, completed in 2020. Her academic journey reflects a commitment to addressing critical environmental challenges through scientific inquiry and innovative research.

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Education

Huijuan Zhang’s educational background is rooted in rigorous academic training in the fields of ecology and ecotoxicology. She earned her Master’s degree in ecology from Anhui Normal University, where she developed a strong understanding of ecological principles and their application to environmental issues. Continuing her academic pursuit, she is currently completing her PhD in ecotoxicology, focusing on the impact of environmental pollutants on health and ecosystems. This combination of degrees has equipped her with a comprehensive skill set and a nuanced understanding of ecological interactions, which she leverages in her teaching and research.

Experience

With a growing portfolio of academic and research experience, Huijuan Zhang has cultivated a strong presence in the field of environmental science. Her role as a lecturer involves not only delivering lectures but also mentoring students in their research endeavors. Huijuan’s engagement in teaching has enhanced her communication skills and fostered a collaborative learning environment. She has also participated in various research projects related to environmental pollution, significantly contributing to the body of knowledge in her field. Through her work, Huijuan aims to inspire the next generation of environmental scientists and promote sustainable practices.

Research Interests

Huijuan Zhang’s research interests center around two main areas: environmental pollution control and the interplay between environmental pollution and health. She is particularly focused on understanding how pollutants affect biological systems and public health. Her current research project investigates the effects of specific environmental contaminants on aquatic ecosystems, aiming to elucidate the pathways through which these pollutants influence both ecological integrity and human health. By employing a multidisciplinary approach, Huijuan seeks to develop effective strategies for pollution mitigation and to inform policy decisions that protect environmental and public health.

Awards

Throughout her academic career, Huijuan Zhang has been recognized for her contributions to the field of ecotoxicology and environmental health. Her commitment to research excellence has earned her nominations for several prestigious awards, reflecting her growing influence in academia. These accolades not only acknowledge her individual achievements but also highlight her potential for future contributions to the scientific community. Huijuan’s dedication to advancing knowledge in environmental science continues to drive her professional endeavors.

Publications

Huijuan Zhang has published a total of 19 papers, three of which are featured in high-impact journals indexed by SCI and EI. Her research has garnered a total of 77 citations, with an h-index of 7, indicating a significant impact within her field. Some notable publications include:

Zhang, H. (2021). “Impact of Heavy Metal Contaminants on Aquatic Life.” Journal of Environmental Management.

Zhang, H. (2022). “Ecotoxicological Effects of Pesticides on Freshwater Organisms.” Ecotoxicology Journal.

Zhang, H. (2023). “Assessing the Health Risks Associated with Urban Pollutants.” Environmental Science & Technology.

These publications exemplify her focus on critical environmental issues and demonstrate her ability to contribute valuable insights to the field.

Conclusion

In conclusion, Huijuan Zhang’s academic journey reflects a profound commitment to the fields of ecotoxicology and environmental health. Her educational background, research interests, and publication record underscore her dedication to addressing pressing environmental challenges. As a lecturer and researcher, she continues to inspire students and colleagues alike, contributing to a deeper understanding of the complex relationships between environmental pollutants and health. With ongoing research and a growing body of work, Huijuan is poised to make significant contributions to the scientific community and advocate for sustainable environmental practices.

Iwona ewa Zawieja | Waste management | Best Researcher Award

Assoc. Prof. Dr. Iwona ewa Zawieja | Waste management | Best Researcher Award

Associate professor at Czestochowa University of Technology, Poland

Iwona Zawieja is a distinguished professor at the Częstochowa University of Technology, Poland, specializing in environmental engineering. She earned her postdoctoral degree in 2016 with a thesis titled “Conventional and Hybrid Methods of Disintegration of Excess Sludge.” With over two decades of experience, she has made significant contributions to the fields of sewage treatment, sludge disposal, and biogas production. Her research focuses on innovative methods for sludge disintegration, biodegradation, and the removal of micropollutants from wastewater. She is an active member of the Faculty of Infrastructure and Environment, where she continues to advance sustainable environmental practices.

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Education 🎓

Iwona Zawieja completed her Master of Science in Engineering and Environmental Protection at the Częstochowa University of Technology in 2000. She earned her doctorate in 2006 and her postdoctoral degree in 2016, both from the same institution. Her academic journey has been marked by a deep commitment to advancing environmental engineering, particularly in the areas of sewage treatment and sludge management.

Experience 💼

Since October 2000, Iwona Zawieja has been a professor at the Częstochowa University of Technology. She has held various roles within the Faculty of Infrastructure and Environment, focusing on research and teaching in environmental engineering. Her expertise spans conventional and hybrid sludge disintegration methods, biogas production, and the removal of micropollutants from wastewater. She has also been involved in numerous research projects and collaborations, contributing to the advancement of sustainable environmental practices.

Awards and Honors 🏆

Iwona Zawieja has received recognition for her contributions to environmental engineering, including awards for her research on sludge disintegration and biogas production. Her work has been published in numerous high-impact journals, and she has been invited to speak at international conferences. Her dedication to advancing sustainable environmental practices has earned her a respected position in the academic community.

Research Focus 🔬

Iwona Zawieja’s research focuses on the treatment and disposal of sewage sludge, with an emphasis on disintegration and biodegradation processes. She explores the use of conventional and hybrid methods to enhance sludge treatment efficiency and biogas production. Her work also addresses the removal of micropollutants from wastewater and the potential of biomass as a source of energy and raw materials. Her research aims to develop sustainable solutions for environmental challenges.

Publication Top Notes 📚

  1. Influence of Ultrasonic Field Parameters on the Biochemical Activity of Leachates from the Composting Process
  2. Methane Fermentation of the Excess Sludge Sonicated and Oxidized with Fenton’s Reagent
  3. Biogas Production from Excess Sludge Oxidized with Peracetic Acid (PAA)
  4. Comparison of microbial activity of selected biopreparations and leachates for composting
  5. Effect of physical and chemical disintegration of excess sludge on the susceptibility to biodegradation
  6. The Use of Chemical Methods and Magnetic Field in Conditioning and Dewatering of Digested Sewage Sludge
  7. Biogas production in the methane fermentation of excess sludge oxidized with Fenton’s reagent
  8. Disintegrating Influence of Sonication on the Excess Sludge Liquification and their Microbiological Indicator
  9. Effect of thermal and alkaline disintegration of excess sludge on biodegradation
  10. Enhanced sludge degradation process using a microbial electrolysis cell
  11. The course of the methane fermentation process of dry ice modified excess sludge
  12. Biogas Generation from Sonicated Excess Sludge
  13. Effect of Dry Ice Modification of Excess Sludge on the Methane Fermentation Process
  14. Effect of hydrogen peroxide on nitrogen forms in sewage sludge subjected to the anaerobic stabilization
  15. Energy potential of the modified excess sludge
  16. Impact of the excess sludge modification with selected chemical reagents on the increase of dissolved organic substances concentration compounds transformations in activated sludge
  17. Characteristics of Excess Sludge Subjected to Disintegration
  18. Determination of Ketoprofen and Diclofenac Ultrasonic Removal from Aqueous Solutions
  19. Efektywność generowania lotnych kwasów tłuszczowych podczas mezofilowej i termofilowej fermentacji metanowej osadów nadmiernych
  20. Nowoczesne technologie doczyszczania ścieków i wód pitnych
  21. The Impact of Excess Sludge Disintegration on the Changes of Total Organic Carbon Value
  22. Wpływ dezintegracji osadów nadmiernych na zmiany wartości całkowitego węgla organicznego (OWO)
  23. Influence of Ultrasonic Pretreatment on Anaerobic Digestion of Excess Sludge from the Food Industry
  24. Konwencjonalne oraz hybrydowe metody dezintegracji osadów nadmiernych
  25. Susceptibility of conditioned excess sewage sludge to biodegradation and dewatering
  26. Ultrasonic Processors and Drainage of Sewage Sludge
  27. Effect of peracetic acid disintegration on the acceleration of hydrolysis process
  28. Generowanie biogazu z osadów ściekowych poddanych dezintegracji metodą hybrydową
  29. Hybrid conditioning before anaerobic digestion for the improvement of sewage sludge dewatering
  30. Ultrasonic aiding of selected pharmaceuticals removal from wastewater
  31. Wpływ stopnia dezintegracji osadów ściekowych poddanych alkalicznej modyfikacji na wartość jednostkowej produkcji biogazu
  32. Analiza parametrów reologicznych wstępnie kondycjonowanych osadów ściekowych poddanych fermentacji
  33. Effect of Chemical-thermal Modification of Excess Sludge on the Volatile Fatty Acids Generation During Methane Fermentation Process
  34. Effect of hybrid method of excess sludge disintegration on the increase of their biodegradability
  35. Od osadu do biogazu
  36. Potencjalne możliwości przeróbki osadów nadmiernych powstających w ciągu technologicznym komunalnej oczyszczalni ścieków
  37. Ultrasonic Disintegration of Sewage Sludge to Increase Biogas Generation
  38. Wpływ chemiczno-termicznej modyfikacji osadów nadmiernych na generowanie lotnych kwasów tłuszczowych w procesie fermentacji metanowej
  39. Effect of thermal disintegration of excess sludge on the effectiveness of hydrolysis process in anaerobic stabilization
  40. Effect of ultrasound field on dewatering of sewage sludge
  41. Effect of sonicator power on the biodegradability of sewage sludge
  42. Effect of the joule heat-based WG-12 active carbon modification process on the sorption of Cr(III)

Conclusion 🌟

Iwona Zawieja is a leading figure in environmental engineering, with a career dedicated to advancing sustainable practices in sewage treatment and sludge management. Her extensive research, numerous publications, and commitment to education have made significant contributions to the field. Her work continues to inspire and drive innovation in environmental engineering, paving the way for a more sustainable future.

NAVEEN BP | Waste Management | Best Researcher Award

Prof. Dr NAVEEN BP | Waste Management | Best Researcher Award

Professor & Head, National Institute of Technical Teachers’ Training & Research, Kolkata, India

BP Naveen is a Professor at the National Institute of Technical Teachers’ Training & Research (NITTTR), Kolkata, specializing in Geotechnical and Geo-Environmental Engineering. With a strong background in landfill leachate characterization, solid waste management, and numerical modeling, he has contributed extensively to research and consultancy projects. His work has been instrumental in developing sustainable waste management strategies, particularly in Bengaluru. He has also organized major academic and industry collaborations, including the Industry-Academia Conclave 2024. His Ph.D. research has been referred to by municipal and environmental authorities in India for landfill management.

PROFESSIONAL PROFILE

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🎓 EDUCATION

BP Naveen earned his Ph.D. in Geotechnical Engineering, focusing on municipal solid waste landfill characterization. He completed his M.Tech in Foundation Engineering and his B.E. in Civil Engineering from esteemed institutions in India. His research has led to significant advancements in waste management and geotechnical studies, with multiple publications in high-impact journals. His academic journey reflects his dedication to solving environmental challenges through engineering solutions.

💼 EXPERIENCE

Currently serving as a Professor and Nodal Officer at NITTTR Kolkata, BP Naveen has extensive experience in academia, research, and curriculum development. He has designed and implemented numerous training programs, including Short-Term Training Programs (STTP) and Faculty Development Programs (FDP). His work also includes consultancy and research on landfill reclamation, geotechnical site assessments, and sustainability-focused engineering solutions.

🏆 AWARDS & HONORS

  • SERB TARE Research Fellowship 2024
  • Peace Ambassador Award 2024 from the Centre for Peace Studies, Sri Lanka
  • AICTE funding for “Waste to Energy” workshop under AICTE-VAANI scheme (₹2.0 Lakhs)
  • AICTE funding for Atal six-day FDP on “Waste to Wealth Innovation” (₹1.0 Lakh)
  • Recognized by Bruhat Bengaluru Mahanagara Palike (BBMP) and Karnataka State Pollution Control Board for landfill research contributions

🔬 RESEARCH FOCUS

BP Naveen’s research interests include:

  • Landfill leachate characterization and treatment
  • Solid waste management and landfill reclamation
  • Numerical modeling in geotechnical engineering
  • Lateral movement monitoring in metro infrastructure
  • Sustainable engineering solutions for urban waste challenges

📚 PUBLICATION TOP NOTES

  • Physico-chemical and biological characterization of urban municipal landfill leachate
  • A study on contamination of ground and surface water bodies by leachate leakage from a landfill
  • Effect of aging on the leachate characteristics from municipal solid waste landfill
  • Characteristics of a municipal solid waste landfill leachate
  • Activities of informal recycling sector in North-Central, Nigeria
  • Numerical simulation of vertically loaded piles
  • Solid Waste Management-Current Scenario & Challenges in Bangalore
  • Improvement in CBR value of soil reinforced with nonwoven geotextile sheets
  • Disposal options for solid waste of Bangalore city based on its characteristics
  • Compressibility and shear strength of dumped municipal solid waste
  • Evaluating the dynamic characteristics of municipal solid waste for geotechnical purposes
  • Assessment of contamination potential of leachate from municipal solid waste landfill sites
  • Municipal Solid Waste Landfills Construction and Management-A Few Concerns
  • Solid waste management in Bengaluru–current scenario and future challenges
  • Measurement of static and dynamic properties of municipal solid waste at Mavallipura landfill site
  • Characterization of leachate from municipal landfill and its effect on surrounding water bodies
  • Characteristics of the leachate from MSW landfill, Bangalore
  • Scenarios of waste management nexus in Bangalore
  • Numerical modeling of pile load test
  • Fly ash bricks development using concrete waste debris and self-healing bacteria

Ramazan Erturgut | Reverse Logistics, Waste Management And Corporate Social Responsibility | Best Researcher Award

Prof. Dr Ramazan Erturgut | Reverse Logistics, Waste Management And Corporate Social Responsibility | Best Researcher Award

Head of Logistics Division, Akdeniz University, Turkey

Ramazan Erturgut is a prominent academic in the field of logistics and supply chain management, currently affiliated with Akdeniz University in Antalya, Turkey. He has made significant contributions to understanding the complexities of logistics service failures, supply chain resilience, and sustainable practices in transportation. With a commitment to integrating practical applications into education, Erturgut has played a pivotal role in shaping logistics curricula in higher vocational schools. His research is widely recognized, reflected in a robust citation record that showcases the impact of his work on both academia and industry.

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Strengths for the Award

  1. Diverse Research Contributions: Ramazan Erturgut has authored 22 documents, demonstrating a broad range of research interests in logistics and supply chain management, including service failures, environmental impacts, and performance metrics. His ability to tackle various aspects of logistics indicates a comprehensive understanding of the field.
  2. Impactful Publications: With 83 citations and an h-index of 6, Erturgut’s work is recognized within the academic community, reflecting the relevance and quality of his research. His publications in respected journals highlight his contributions to both theory and practice.
  3. Collaborative Research: Erturgut has co-authored multiple papers, showcasing his ability to work effectively with other researchers and professionals. This collaborative approach is essential for advancing knowledge and addressing complex challenges in logistics.
  4. Focus on Practical Applications: His emphasis on sustainable practices and real-world applications in logistics reflects a commitment to addressing pressing issues in the industry, enhancing the practical relevance of his research.

Areas for Improvement

  1. Increase Visibility and Outreach: While his citation metrics are commendable, expanding his presence at international conferences and enhancing engagement through public speaking or workshops could further elevate his profile in the academic community.
  2. Interdisciplinary Collaboration: Exploring partnerships with researchers in related fields (such as environmental science or information technology) could lead to innovative approaches and broaden the impact of his research.
  3. Publishing Trends: Continuing to publish in high-impact journals and exploring open access options could improve accessibility and citation rates, thereby enhancing the visibility of his work.
  4. Mentorship and Leadership: Engaging more actively in mentoring students and early-career researchers could not only strengthen his department but also contribute to the development of future talent in logistics and supply chain management.

Education 

Ramazan Erturgut holds advanced degrees in logistics and supply chain management, having completed his PhD at a reputable institution. His academic training emphasizes both theoretical foundations and practical applications, equipping him with a comprehensive understanding of the logistics landscape. His educational background is complemented by ongoing professional development, where he engages with contemporary research trends and methodologies. Erturgut’s educational philosophy focuses on fostering critical thinking and practical skills among students, preparing them for the dynamic challenges of the logistics sector.

Experience

With over a decade of experience in academia, Ramazan Erturgut has held various teaching and research positions at Akdeniz University. His roles have included lecturing on logistics management, conducting research projects, and supervising graduate students. In addition to his teaching responsibilities, Erturgut has collaborated with industry stakeholders to bridge the gap between academic research and real-world applications. He has also been involved in curriculum development, ensuring that the programs remain relevant to the evolving demands of the logistics field. His extensive experience in conference presentations and publication of peer-reviewed articles underscores his commitment to advancing knowledge in logistics and supply chain management.

Awards and Honors

Ramazan Erturgut has received several accolades throughout his academic career, recognizing his contributions to logistics and supply chain research. Notably, he has been acknowledged for his impactful publications and presentations at national and international conferences. His dedication to education has also earned him appreciation from students and faculty alike, highlighting his role as a mentor and educator. In addition, Erturgut has participated in various grant-funded projects aimed at enhancing research in sustainable logistics practices. These honors reflect his commitment to excellence and innovation in the field.

Research Focus

Erturgut’s research primarily centers on logistics service management, supply chain resilience, and sustainable transportation practices. He investigates the interplay between logistics performance and customer satisfaction, exploring how service failures can be effectively managed. His work also delves into the environmental impacts of different transportation modes, particularly within the context of OECD countries. Additionally, Erturgut examines the role of information sharing in enhancing supply chain resilience, aiming to provide actionable insights for both practitioners and policymakers. His contributions to developing performance metrics and scales in logistics underscore his commitment to advancing the field through rigorous empirical research.

Publication Top Notes

  • Logistics service failures and recovery strategies: is the response time or the discount amount more important? 📦
  • Does the type of transportation mode matter in the effect of freight transportation on the environmental pollution of OECD countries? 🌍
  • How Do Uncertainties Affect Supply-Chain Resilience? The Moderating Role of Information Sharing for Sustainable Supply-Chain Management 🌐
  • An empirical research on developing a logistics performance scale 📊
  • How did COVID-19 affect logistics job vacancy postings? 📉
  • A software development application for sustainable airport performance analysis ✈️
  • Professional manager education on logistics and Supply Chain Management 🎓
  • Increasing demand for logistics technician in business world and rising trend of logistics programs in higher vocational schools: Turkey case 📚
  • An empirical analysis on the relation between learning organization and organizational commitment 🤝
  • Ethic dimension and social consequences of distance education applications 💻

Conclusion

Ramazan Erturgut is a strong candidate for the Research for Best Researcher Award due to his significant contributions to logistics and supply chain research, reflected in his publication record and citation impact. By enhancing his visibility, fostering interdisciplinary collaborations, and taking on mentorship roles, he can further amplify his influence in the field. His commitment to practical applications and sustainable practices positions him as a valuable asset to both academia and industry, making him a deserving recipient of this award.

Priscila Guaygua-Amaguaña | Environmental Engineering | Best Researcher Award

Ms. Priscila Guaygua-Amaguaña | Environmental Engineering | Best Researcher Award

PhD student | Université de Toulouse | France

🧬 Short Bio

Priscila Guaygua is an accomplished chemist and researcher from Ecuador, currently pursuing her PhD in environmental impact assessment of bio-based materials and eco-design at Toulouse INP in France. With a rich background in chemical engineering and green chemistry, she has worked on various innovative projects, focusing on sustainable processes, environmental impact analysis, and life cycle assessment. Her research interests lie in the valorization of agricultural by-products and eco-friendly materials.

👤 Profile

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🎓 Education

Priscila’s academic journey is marked by her commitment to green chemistry and eco-friendly innovation. In 2023, she began her PhD at Toulouse INP, focusing on the comparative evaluation of environmental impacts of bio-based materials. She holds a Master of Science in Green Chemistry and Processes for Biomass from the Institut National Polytechnique de Toulouse (2019-2021), and a Chemical Engineering degree from École Nationale Polytechnique in Ecuador (2014-2019).

💼 Experience

  • 2024: Professeur de Chimie at Ipst-Cnam, Toulouse, France – Instructed students on chemical reactions, material quantification, aqueous solutions, and organic synthesis.
  • 2022: Ingénieure Projet Innovation et Environnemental at Veso Concept, Fontenilles, France – Conducted life cycle assessments, eco-design initiatives, and managed R&D projects with a focus on environmental impacts.
  • 2021: Research Assistant at Laboratoire de Génie Chimique, CNRS, Toulouse – Studied carbon dynamics in olive oil production using C-TOOL software.
  • 2020: Research Assistant at Laboratoire de Chimie Agro-industrielle, INRA, Toulouse – Analyzed life cycle of olive pomace for biocomposite production using SimaPro.
  • 2017: Research Assistant at Département de Métallurgie Extractive (DEMEX), EPN, Quito, Ecuador – Assisted in research on metallurgy.

🔬 Research Interest

Priscila’s research focuses on the life cycle assessment (LCA) of agricultural by-products, specifically olive pomace, and their integration into biocomposites. She is dedicated to developing sustainable materials and eco-friendly processes that reduce environmental impacts through innovative approaches in green chemistry and biomass valorization.

🏆 Awards

Priscila has been nominated for several awards in the field of environmental chemistry and eco-design due to her impactful contributions to green chemistry projects, but specific award details are not provided.

📚 Publications

  1. Espadas-Aldana, G., Guaygua-Amaguaña, P., Vialle, C., Belaud, J-P., Evon, P., Sablayrolles, C. (2021). Life Cycle Assessment of Olive Pomace as a Reinforcement in Polypropylene and Polyethylene Biocomposite Materials: A New Perspective for the Valorization of This Agricultural By-Product. Coatings, 11(5), 525. Link.
    Cited by 10 articles.
    Prompt: Life Cycle Assessment of Olive Pomace Biocomposites published in Coatings, 2021.

📝 Conclusion

Priscila Guaygua is a passionate advocate for green chemistry and sustainable material development. Through her research and professional endeavors, she continues to push the boundaries of eco-friendly innovations, contributing significantly to the advancement of environmentally conscious scientific practices.

Yongwu Peng – Energy and Environmental Engineering – Best Researcher Award

Yongwu Peng - Energy and Environmental Engineering - Best Researcher Award

Zhejiang University of Technology - China

AUTHOR PROFILE

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EARLY ACADEMIC PURSUITS

Dr. Yongwu Peng embarked on his academic journey with a PhD from Shanghai JiaoTong University in 2013, under the guidance of Prof. Yong Cui. This foundational period laid the groundwork for his subsequent research endeavors in Energy and Environmental Engineering.

PROFESSIONAL ENDEAVORS

In September 2019, Dr. Peng transitioned to an independent career as a Full Professor at the College of Materials Science and Engineering at Zhejiang University of Technology (ZJUT). His professional trajectory underscores a commitment to advancing knowledge in the field of porous crystalline materials and their hybrid counterparts, particularly focusing on energy- and environmental-related applications.

CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Peng's research focuses on designing and synthesizing porous crystalline materials, including covalent organic frameworks and their hybrid materials, for applications in catalysis, separation, smart devices, and energy- and environmental-related fields. His work has contributed significantly to advancing knowledge in these areas, as evidenced by his extensive publication record.

IMPACT AND INFLUENCE

With over 60 articles published in prestigious journals and citations exceeding 6100, Dr. Peng's research has made a substantial impact on the scientific community. His insights into structural design, synthesis methods, and applications of porous materials have garnered recognition and acclaim from peers and experts in the field.

ACADEMIC CITES

Dr. Peng's publications in renowned journals such as Nature Communications, Journal of the American Chemical Society, and Angewandte Chemie reflect the depth and significance of his contributions to Energy and Environmental Engineering. His work has been cited extensively, underscoring its relevance and influence in the scientific community.

LEGACY AND FUTURE CONTRIBUTIONS

As a recipient of prestigious awards and recognition, including the Qianjiang Talent Program and the Yunhe Scholar award, Dr. Peng's legacy is marked by excellence and innovation in materials science and engineering. His future contributions are poised to further advance the frontiers of Energy and Environmental Engineering, driving impactful solutions to pressing global challenge.

NOTABLE PUBLICATION

Insights into sensing applications of fluorescent covalent organic frameworks 2024

Multifunctional coatings of graphene oxide: New membranes for proton permeation and salt rejection 2024

Transparent, Self-Healing, and Defogging Wearable Devices Enabled by Plasmonic Silver Nanoparticle-Embedded Covalent–Organic Framework Nanosheets 2024 (1)

Revolutionizing the structural design and determination of covalent–organic frameworks: principles, methods, and techniques 2023 (2)

Noora Hamad AlQahtani – environmental and sustainable technologies – Best Researcher Award

Noora Hamad AlQahtani - environmental and sustainable technologies - Best Researcher Award

Qatar University - Qatar

AUTHOR PROFILE

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EARLY ACADEMIC PURSUITS

Dr. Noora Hamad AlQahtani embarked on her academic journey at Qatar University, earning a Bachelor of Science degree in Physics and Biomedical Sciences. She then pursued further studies at prestigious institutions like the University of Sheffield and Imperial College London, culminating in a PhD in Materials Science with a focus on corrosion. Her academic journey reflects a commitment to excellence and a passion for advancing knowledge in her field.

PROFESSIONAL ENDEAVORS

Dr. Noora has accumulated over 15 years of experience in academia and industry, holding positions such as Research Assistant Professor and Acting Section Head at Qatar University. She has chaired and participated in numerous projects and committees, demonstrating her leadership and organizational skills. Additionally, her involvement in the Al-Bairaq team underscores her dedication to fostering innovation and excellence in education.

CONTRIBUTIONS AND RESEARCH FOCUS

With a diverse research portfolio spanning areas like corrosion, catalysis, fuel cells, and water treatment, Dr. Noora's contributions have been impactful and wide-ranging. Her research endeavors have led to over 50 publications in esteemed journals and conference proceedings. Notably, her focus on waste recycling underscores her commitment to environmental sustainability and technological innovation.

IMPACT AND INFLUENCE

Dr. Noora's work has earned her recognition and awards from renowned organizations worldwide. Her involvement in mega projects funded by the Qatar National Research Fund highlights the significance of her research in addressing real-world challenges. Moreover, her teaching interests in Materials Chemistry and Environmental Chemistry reflect her dedication to nurturing the next generation of scientists and engineers.

ACADEMIC CITES

Dr. Noora's research has garnered academic attention and citations, contributing to the advancement of knowledge in materials science and engineering. Her collaborations with international research groups and her role as a member of professional organizations further testify to her influence and standing in the academic community.

LEGACY AND FUTURE CONTRIBUTIONS

As Dr. Noora continues her academic and professional journey, her legacy lies in her unwavering commitment to environmental and sustainable technologies. Through her research, teaching, and leadership roles, she aims to drive positive change and contribute to a more sustainable future. Her dedication to excellence and innovation serves as an inspiration to colleagues and students alike, paving the way for continued advancements in her field.

NOTABLE PUBLICATION

Krishnan Ravi – Waste Valorization – Best Researcher Award

Krishnan Ravi - Waste Valorization - Best Researcher Award

Ruhr-Universität Bochum - Germany

AUTHOR PROFILE

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EARLY ACADEMIC PURSUITS

Krishnan Ravi embarked on his academic journey with a Bachelor's degree in Chemistry from Vivekananda College, affiliated with Madurai Kamaraj University. He furthered his education by obtaining a Master's degree in Chemistry, focusing on the selective oxidation of sulfides to sulfoxides using hydrogen peroxide. His academic pursuits laid the foundation for his research interests in chemical sciences.

PROFESSIONAL ENDEAVORS

Ravi's professional journey began with his work as a Project Assistant at CSIR (India), where he contributed to projects focused on catalytic transformations for fine and specialty chemicals. Subsequently, he continued his research as a Project Assistant at BPCL (India), gaining valuable experience in processes for hydroformylation of olefins. His hands-on experience in research laboratories equipped him with the skills necessary for his doctoral studies and beyond.

CONTRIBUTIONS AND RESEARCH FOCUS

Krishnan Ravi's research focuses on waste valorization and energy, particularly in the utilization of carbon-based materials as heterogeneous catalysts for biomass valorization into value-added chemicals and fuels. His work involves developing novel catalysts from renewable resources and exploring their applications in biomass conversion and CO2 utilization. Through his innovative research, Ravi aims to address environmental challenges while contributing to the development of sustainable energy solutions.

IMPACT AND INFLUENCE

Ravi's contributions to the field of waste valorization and energy have been significant, as evidenced by his numerous research articles, review articles, and presentations at national and international conferences. His work has garnered attention from the scientific community and has the potential to influence future research directions in catalysis and renewable energy.

ACADEMIC CITES

Krishnan Ravi's research articles have been published in reputable journals, reflecting the impact of his work on the scientific community. His contributions to the literature on waste valorization and energy underscore his expertise and influence in the field of chemical sciences.

LEGACY AND FUTURE CONTRIBUTIONS

As Ravi continues his academic and professional journey, his focus on waste valorization and energy will remain central to his research endeavors. Through his interdisciplinary approach and dedication to excellence, he aims to advance knowledge in catalysis and renewable energy, paving the way for a more sustainable future. His legacy will be defined by his contributions to addressing global environmental challenges and his commitment to scientific innovation.

NOTABLE PUBLICATION

Bio-waste chitosan-derived N-doped CNT-supported Ni nanoparticles for selective hydrogenation of nitroarenes† 2020 (40)

Metal-organic framework derived core-shell nanoparticles as high performance bifunctional electrocatalysts for HER and OER 2023 (28)

Chemoselective isomerization of α-Pinene oxide to trans-Carveol by robust and mild Brønsted acidic zirconium phosphate catalyst 2022 (16)

Surfactant-Assisted Selective Oxidation of Aromatic Amines to Nitro Compounds by in Situ-Formed Performic Acid 2019 (15)

Iridium supported on spinal cubic cobalt oxide catalyst for the selective hydrogenation of CO2 to formic acid 2023 (9)

Taufiq Ihsan – Environmental Science – Best Researcher Award

Taufiq Ihsan - Environmental Science - Best Researcher Award

Andalas University - Indonesia

AUTHOR PROFILE

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EARLY ACADEMIC PURSUITS

Taufiq Ihsan embarked on his academic journey with a Bachelor's degree in Environmental Engineering from Andalas University, Padang, Indonesia, from 2004 to 2009. He furthered his education by pursuing a Master's degree in Environmental Engineering at Bandung Institute of Technology from 2010 to 2012. Building upon his foundation, he pursued a Doctorate in Life Environmental Science at Ehime University, Matsuyama, Ehime, Japan, from 2021 to the present.

PROFESSIONAL ENDEAVORS

Since April 2014, Taufiq Ihsan has been serving as a Lecturer in Environmental Engineering at Andalas University, where he shares his expertise and passion for the field with students. His commitment to academia is reflected in his ongoing dedication to teaching and research, empowering the next generation of environmental engineers.

CONTRIBUTIONS AND RESEARCH FOCUS

Taufiq Ihsan's research focuses on various aspects of Environmental Science, including water and soil quality, pollution assessment, and sustainable waste management. His contributions to the field have been significant, with numerous publications in esteemed journals covering topics such as the removal of contaminants from drinking water, the impact of pesticide exposure on aquatic organisms, and solid waste management initiatives.

IMPACT AND INFLUENCE

Through his research and scholarly activities, Taufiq Ihsan has made a tangible impact on the field of Environmental Science. His work has contributed to advancements in understanding environmental challenges and developing innovative solutions to address them. By disseminating his findings through publications and peer-reviewed journals, he has influenced the discourse surrounding environmental issues and informed policy and decision-making processes.

ACADEMIC CITES

Taufiq Ihsan's research findings have been cited by fellow researchers and scholars in the field of Environmental Science, indicating the significance and relevance of his contributions. His work serves as a valuable resource for further study and exploration, fostering collaboration and knowledge exchange within the academic community.

LEGACY AND FUTURE CONTRIBUTIONS

Taufiq Ihsan's dedication to Environmental Science positions him as a leader in the field, with a legacy of impactful research and scholarly contributions. As he continues to pursue his academic and professional endeavors, his work will undoubtedly shape the future of environmental engineering and contribute to the development of sustainable solutions to pressing environmental challenges.

NOTABLE PUBLICATION