Yan Wang | Sustainable Materials | Best Researcher Award

Assoc Prof Dr. Yan Wang | Sustainable Materials | Best Researcher Award 

Assoc Prof Dr. Yan Wang, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, China

Assoc. Prof. Dr. Yan Wang, a dedicated researcher at the Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, specializes in advanced oxidation processes for water treatment. With over a decade of expertise, she has led innovations in catalytic materials, environmental functional membranes, and contaminant removal technologies. She has authored over 40 SCI-indexed publications, holds 8 patents, and actively collaborates on national projects focused on wastewater reclamation. Dr. Wang’s impactful contributions have earned her prestigious honors, including the IWA China Star Program Member and multiple national science awards, reinforcing her role as a key figure in sustainable water treatment research.

Author Profile

Scopus

🎓 Early Academic Pursuits

Dr. Yan Wang embarked on her academic journey with a deep-rooted passion for environmental science and sustainability. She pursued her doctoral degree at Shandong University, where she laid the foundation for her future in eco-environmental research. Her early academic focus on chemistry and materials science seamlessly blended with environmental applications, particularly in the realm of water treatment. This strong academic preparation not only shaped her scientific perspective but also inspired her to delve into the complex challenges facing global water systems.

In 2015, following her Ph.D., she joined the Research Center for Eco-Environmental Sciences (RCEES), Chinese Academy of Sciences—one of China’s most prestigious environmental research institutions. This marked the beginning of a prolific research career dedicated to solving pressing water contamination issues through scientific innovation.

🧪 Professional Endeavors

Currently serving as an Associate Researcher and Master’s Supervisor at RCEES, Dr. Wang has cultivated an impressive research portfolio that includes:

  • 12 completed/ongoing projects

  • 40+ high-impact publications in SCI/Scopus-indexed journals

  • 8 patents (published/under process)

  • 1 authored book

  • 2 consultancy/industry collaborations

Her editorial contributions are notable as well, holding roles such as Guest Editor and Editorial Board Member for the journal Water Emerging Contaminants & Nanoplastics, showcasing her thought leadership in the field.

Dr. Wang is a key contributor to the National Natural Science Foundation of China-funded project: “Strengthening mechanism in wastewater reclamation by multiple micro-interface processes and water quality risk control,” where she designs novel materials for water remediation systems.

🧬 Contributions and Research Focus

Over the past decade, Dr. Wang has established herself as a prominent expert in advanced oxidation processes (AOPs), specializing in:

  • Development of environmental functional materials

  • Catalytic mechanisms for photo/electrochemical and Fenton-like systems

  • Removal of emerging contaminants and nanoplastics from water

A hallmark of her research is the development of self-supporting catalytic membranes via an in-situ synthesis approach—an innovation that enhances the stability and reusability of catalysts used in water treatment. Furthermore, she proposed a pioneering strategy to promote the regeneration of Fe(Ⅱ) from Fe(Ⅲ), addressing a long-standing limitation in Fenton catalytic cycles.

With an H-index of 27 (Web of Science), her research is both scientifically impactful and practically applicable, often bridging the gap between laboratory findings and real-world water purification systems.

🏆 Accolades and Recognition

Dr. Wang’s outstanding work has earned her national and international recognition, including:

  • IWA China Young Committee Member & Star Program Member

  • First Prize – Science and Technology Award, China Surface Engineering Association

  • Second Prize – Scientific and Technological Progress Award, Ministry of Environmental Protection

Her association with esteemed organizations like the International Water Association (IWA) and the Beijing Ecological Restoration Society further highlights her commitment to both the scientific community and sustainable development goals.

🌍 Impact and Influence

Dr. Wang’s influence extends beyond academia. Through collaborative partnerships with environmental companies, several of her technologies have been successfully commercialized and applied in water treatment plants across China. Her work not only contributes to improving water quality but also plays a critical role in shaping policy and best practices for water sustainability.

Her mentorship of graduate students fosters the next generation of eco-environmental scientists, and her editorial involvement ensures the advancement of scientific discourse on water contamination and remediation.

🔮 Legacy and Future Contributions

Looking ahead, Dr. Yan Wang aims to lead transformative projects that address climate-adaptive water purification, nanomaterials for pollutant capture, and low-energy AOP systems. Her future research will likely focus on risk assessment and quality control frameworks for wastewater reuse, crucial for achieving circular water economies.

With her proven track record and visionary outlook, Dr. Wang is well-positioned to become a global leader in eco-environmental innovation, with a legacy grounded in scientific excellence, environmental impact, and public health protection.

✍️Publication Top Notes


📘 Ozone Reactions with Olefins and Alkynes: Kinetics, Activation Energies, and Mechanisms

Author: Yan Wang, Eva M. Rodríguez, Daniel Rentsch, Zhimin Qiang, Urs von Gunten

Journal: Physico-Chemical Treatment and Resource Recovery

Year: 2025


📘Synergistic photogeneration of reactive oxygen species by Fe species self-deposited on resorcinol-formaldehyde towards the degradation of phenols under visible light

Author: Wenxiang Ji, Huiyu Dong, Yan Wang, Zhimin Qiang

Journal: Chemosphere

Year: 2024


 

Hou-Yun Yang | Environmental Science | Best Researcher Award

Assoc Prof Dr. Hou-Yun Yang | Environmental Science | Best Researcher Award 

 

Assoc Prof Dr. Hou-Yun Yang, Anhui Jianzhu University, China

Assoc. Prof. Dr. Hou-Yun Yang is a distinguished faculty member at Anhui Jianzhu University, China, specializing in engineering and sustainable energy systems. Renowned for his contributions to thermal science and renewable energy research, Dr. Yang plays a pivotal role in guiding emerging scholars and advancing practical solutions in green energy technologies. His mentorship and academic leadership continue to inspire innovation and academic excellence in the field.

Author Profile

Orcid

🌱 Early Academic Pursuits

Xuefeng Jiang began his academic journey with a deep-rooted interest in science and innovation. His early education laid a strong foundation in engineering and the natural sciences, with a particular curiosity for sustainable and renewable technologies. This early interest eventually guided him to pursue higher education at Liaoning Technical University, one of China’s notable institutions for technical education and research. As a Master’s candidate starting in 2023, Jiang chose to specialize in renewable energy systems, aligning his academic trajectory with one of the world’s most urgent challenges—sustainable development and climate resilience. His academic record demonstrates both diligence and intellectual curiosity, making him a standout among his peers.

🛠️ Professional Endeavors

Although currently a student, Xuefeng Jiang has already begun to establish a solid professional identity through academic research and innovation. His focus lies in renewable energy, with a particular emphasis on thermal storage systems and energy efficiency. His work bridges theoretical research with practical engineering applications, showing a mature understanding of how academic inquiry can translate into real-world impact.

Jiang’s most notable contribution to date is his work on phase change energy storage systems. His publication in the prestigious journal Applied Thermal Engineering reflects the level of professional maturity he has already achieved. His research paper titled, “Thermal performance analysis of a double-helix heat tube phase change energy storage system”, illustrates an innovative and technically sound approach to improving energy efficiency in storage systems—an essential area for future smart energy infrastructure.

🔬 Research Contributions and Focus

Jiang’s research primarily revolves around thermal energy storage, phase change materials (PCMs), and sustainable energy conversion systems. The core of his work focuses on optimizing the heat transfer performance within energy storage devices using advanced designs like double-helix heat tubes. His work offers a new design paradigm for engineers and scientists working on clean and efficient thermal energy storage systems.

His landmark publication not only contributes to the academic body of knowledge but also provides a roadmap for industry practitioners to enhance renewable energy storage solutions. The citation DOI https://doi.org/10.1016/j.applthermaleng.2025.127208 stands as proof of his credibility and growing impact in the research community.

🏆 Accolades and Recognition

Though early in his career, Xuefeng Jiang’s work has already received academic validation through peer-reviewed publication in a high-impact journal indexed in SCI and Scopus. His contribution has been acknowledged by professionals and academics alike, particularly those working in thermal science, sustainable design, and renewable energy systems.

His dedication, innovation, and technical accuracy have positioned him as a strong contender for the “Best Researcher Award”, a recognition he seeks not for personal glory, but as a testament to the transformative potential of renewable technologies.

🌍 Impact and Influence

Jiang’s work addresses pressing global issues, including climate change, energy crisis, and sustainable infrastructure. By focusing on enhancing the efficiency of energy storage systems, he contributes to making renewable energy sources more viable, scalable, and adaptable. His research has the potential to influence policy formulation, industrial design, and future academic curricula in the fields of green engineering and energy management.

Moreover, as a young researcher, he inspires fellow students and junior colleagues to take up meaningful, solution-oriented research projects. His publication, mentorship under esteemed professors, and growing research footprint contribute positively to China’s and the world’s sustainable development goals.

🌟 Legacy and Future Contributions

Xuefeng Jiang envisions a future where energy systems are clean, cost-efficient, and universally accessible. As he continues his academic pursuits, he plans to expand his work into multi-phase heat transfer systems, smart thermal grids, and AI-assisted energy optimization. His ambition is not only to publish more but to collaborate with industries, policy-makers, and academic institutions globally.

He also aims to file patents, co-author books, and eventually mentor future generations of energy engineers. With his growing profile on platforms like ORCID, Jiang is gradually carving out a space for himself in the international research community.

📖Publication Top Notes


📘 Systematic study of microplastics on methane production in anaerobic digestion: Performance and microbial response

Contributors: Chen-Yu Li; Li Yu; Xin He; Xian-Huai Huang; Wei-Hua Li; Hou-Yun Yang; Tong-Zhan Xue; Jun Liu; Zhen Yan; Ying Hui Ong
Journal:  Environmental Chemical Engineering
Year: 2025

📘 Nutrient Removal and Bioelectricity Generation in a Constructed Wetland-Microbial Fuel Cell: Performance of Pyrite Anode Materials
ContributorsShu Feng; Pei Xu; Jun-Cheng Han; Hou-Yun Yang; Xian-Huai Huang; Li Yu; Jun Liu; Bin-Bin Zhang; Wei-Hua Li
Journal: Environmental Engineering Science
Year: 2025

📘 A modified two-point titration method for the determination of volatile fatty acids in anaerobic systems

ContributorsZhe-Xuan Mu; Chuan-Shu He; Jian-Kai Jiang; Jie Zhang; Hou-Yun Yang; Yang Mu
Journal: Chemosphere
Year: 2018

Wei Lu | Renewable Energy Technologies | Best Researcher Award

Prof Dr. Wei Lu | Renewable Energy Technologies | Best Researcher Award

Professor at Guangxi University, China.

Wei Lu is a distinguished Full Professor of energy and power engineering at Guangxi University, recognized for his expertise in renewable energy, energy system analysis, and optimization. He holds a B.S. in heat engineering, an M.S. in engineering thermophysics from South China University of Technology, and a Ph.D. in engineering thermophysics from Tianjin University. Wei Lu’s career includes a postdoctoral fellowship at Tsinghua University and accreditation as a Registered Utility Engineer by Chinese government departments. His research focuses on carbon dioxide capture, utilization, and storage, alongside innovations in thermodynamics and fluid mechanics. With over 131 publications, 24 patents, and leadership in numerous research projects, he remains dedicated to advancing engineering solutions and education.

Professional Profiles:

Education 🎓

Wei Lu is a Full Professor of energy and power engineering at Guangxi University. He earned his B.S. in heat engineering and M.S. in engineering thermophysics from South China University of Technology, followed by a Ph.D. in engineering thermophysics from Tianjin University. With a background as a postdoctoral fellow at Tsinghua University, he holds credentials as a Registered Utility Engineer accredited by Chinese government departments. His research focuses on renewable energy, energy system analysis and optimization, carbon dioxide capture, utilization and storage, and advancements in engineering education.

Professional Experience

Wei Lu has a distinguished professional trajectory marked by significant contributions in academia and research. Currently serving as a Full Professor of energy and power engineering at Guangxi University, he brings extensive expertise to his role. Wei Lu’s career began with a postdoctoral fellowship at Tsinghua University, where he further honed his skills in energy systems and engineering. He has actively engaged in consultancy and industry-sponsored projects, totaling 36 collaborations, showcasing his practical insights and application of theoretical knowledge. His professional journey underscores his commitment to advancing renewable energy technologies, optimizing energy systems, and pioneering solutions in carbon dioxide capture and storage.

Research Interest

Wei Lu’s research interests span across several critical areas in energy and engineering. He is particularly focused on renewable energy, aiming to enhance efficiency and sustainability in power generation. His expertise extends to energy system analysis and optimization, where he explores methods to improve the performance and reliability of energy systems. Additionally, Wei Lu is actively involved in research related to carbon dioxide capture, utilization, and storage (CCUS), addressing crucial environmental challenges through innovative engineering solutions. His research also encompasses engineering education, aiming to cultivate future generations of engineers equipped with the knowledge and skills necessary to tackle global energy issues effectively.

Award and Honors

Wei Lu has accumulated numerous awards and honors throughout his illustrious career. He was granted honorary admission to the PhD program for his outstanding academic achievements and has consistently ranked at the top in both Master’s and Bachelor’s programs for his exceptional academic performance. His participation and high placement in collegiate scientific olympiads have further underscored his proficiency in computer engineering. Wei Lu’s recognition as a Registered Utility Engineer by Chinese government departments highlights his expertise in energy engineering. His contributions to renewable energy, energy system analysis, and carbon dioxide capture have been widely acknowledged, solidifying his reputation as a leader in these critical research areas.

Research Skills

Wei Lu possesses a robust set of research skills honed through his extensive academic and professional journey. His expertise spans across thermodynamics, fluid mechanics and machinery, gas separation, renewable energy, and carbon dioxide capture, utilization, and storage. He has developed innovative approaches in optimal design theory for ejectors and novel methods utilizing thermal transpiration effect for applications in hydrogen storage and transportation. Wei Lu’s proficiency extends to conducting comprehensive energy system analysis and optimization, contributing significantly to advancements in engineering education. His research skills are underscored by his prolific publication record, extensive project involvement, and leadership in collaborative research initiatives with international engineers.

Publications

  1. Engineering a photothermal responsive cellulose carbon capture material for solar-driven CO2 desorption
    • Authors: Luo, W., Lu, W., Xiang, Q., Xu, C., He, H.
    • Year: 2024
  2. The Comprehensive Influence of the Nozzle Distance and Throat Length of Mixing Chamber on the Performance of Ejector
    • Authors: Tan, L., Chen, H., Ge, J., Lu, W.
    • Year: 2024
  3. Energy Efficiency Analysis of Multistage Knudsen Vacuum Pump
    • Authors: Ke, J., Meng, S., Su, X., Lu, W.
    • Year: 2024
  4. Effect of membrane thermal conductivity on ion current rectification in conical nanochannels under asymmetric temperature
    • Authors: Qiao, N., Li, Z., Zhang, Z., Lu, W., Li, C.
    • Year: 2023
    • Citations: 2
  5. Ion current rectification in asymmetric nanochannels: effects of nanochannel shape and surface charge
    • Authors: Qiao, N., Zhang, Z., Liu, Z., Lu, W., Li, C.
    • Year: 2023
    • Citations: 6
  6. Analysis on influencing factors and improvement of thermal efficiency of bagasse boilers based on performance test data
    • Authors: Mo, Q., Zhu, X., Deng, C., Chen, X., Lin, X.
    • Year: 2023
    • Citations: 6
  7. Influence of graphite/alumina on co-pyrolysis of Chlorella vulgaris and polypropylene for producing bio-oil
    • Authors: Chen, C., Zhao, J., Wei, Y., Bi, Y., Qiu, H.
    • Year: 2023
    • Citations: 3
  8. Tailoring and properties of a novel solar energy-triggered regenerative bionic fiber adsorbent for CO2 capture
    • Authors: Lu, W., Shi, X., Zhou, H., Wang, L., He, H.
    • Year: 2022
    • Citations: 13
  9. Analysis of Flow Rate and Pressure Characteristics for Multistage Thermal Transpiration Based Vacuum Pump
    • Authors: Qin, R., Meng, S., Wang, B., Lu, W.
    • Year: 2022
    • Citations: 1
  10. Modelling, Optimization, and Experimental Studies of Refrigeration CO2 Ejectors: A Review
    • Authors: Zheng, L., Zhang, Y., Hao, L., Deng, J., Lu, W.
    • Year: 2022
    • Citations: 2

 

 

Mario Salazar | Products Naturales | Best Researcher Award

Dr. Mario Salazar | Productos Naturales | Best Researcher Award

Investigator assistant at Faculty of Biochemical and Pharmaceutical Sciences-UNR/CONICET, Argentina.

Dr. Mario Oscar Salazar is a seasoned researcher and educator in organic chemistry and pharmaceutical sciences, boasting over nineteen years of experience. He obtained his PhD in Chemistry from the National University of Rosario (UNR), Argentina, in 2010, following a Bachelor’s degree in Pharmacy from the same institution. Currently holding the position of Principal Professor of Practice in Pharmacognosy at UNR’s Faculty of Biochemical and Pharmaceutical Sciences, he also serves as an Adjunct Researcher at CONICET (National Scientific and Technical Research Council). Dr. Salazar’s research focuses on the chemical modification of natural products, enzyme inhibition, and effect-directed analysis, employing advanced analytical techniques such as NMR spectroscopy, HPLC-UV, GC-MS, and HPLC-HRMS. His contributions are reflected in numerous publications and collaborations with national and international research groups, aiming to explore the therapeutic potential of natural compounds and develop innovative pharmaceutical solutions. His leadership and expertise continue to drive advancements in organic chemistry and pharmaceutical sciences.

Professional Profiles:

Education

Dr. Mario Oscar Salazar pursued his academic journey at the National University of Rosario (UNR), Argentina, where he obtained his PhD in Chemistry from April 2006 to March 2010. Prior to this, he completed his Bachelor of Pharmacy degree at the same institution between April 1999 and May 2005. These educational achievements laid the groundwork for his distinguished career in organic chemistry research, during which he has made significant contributions to the field through extensive publications, research projects, and academic appointments. His academic qualifications reflect a deep commitment to advancing knowledge in chemistry and pharmaceutical sciences, particularly in the realm of natural product chemistry and enzyme inhibition research.

Professional Experience

Dr. Mario Oscar Salazar has amassed a wealth of professional experience, primarily centered around his roles in research, academia, and consultancy. Since October 2018, he has served as the Principal Professor of Practice in Pharmacognosy at the Faculty of Biochemical and Pharmaceutical Sciences of the National University of Rosario (UNR), where he continues to impart his expertise to students. Concurrently, since November 2016, he has held the position of Adjunct Researcher at CONICET, further solidifying his commitment to advancing scientific inquiry. Previously, he served as an Assistant Researcher at CONICET from April 2012 to October 2016, and as a Post-Doctoral Researcher at the Rosario Chemistry Institute (CONICET-UNR) from April 2010 to March 2012. His extensive tenure as a Teaching Assistant in Pharmacognosy at UNR from May 2005 to September 2018 underscores his dedication to both research and education in the field of organic chemistry and pharmaceutical sciences.

Research Interest

Dr. Mario Oscar Salazar’s research interests are deeply rooted in organic chemistry, particularly focusing on the chemistry of natural products and enzyme inhibition. His work spans various aspects of chemical modification of natural extracts, including sulfonylation, halogenations, and thiocyanation, aimed at altering their molecular diversity and enhancing biological activities. He is particularly adept in employing analytical techniques such as NMR spectroscopy, HPLC-UV, GC-MS, and HPLC-HRMS for the characterization and analysis of complex mixtures. Dr. Salazar’s research also extends to effect-directed analysis and the development of innovative methods for the identification and evaluation of bioactive compounds. His contributions significantly advance the understanding and application of organic chemistry in pharmaceutical development and environmental science.

Award and Honors

Dr. Mario Oscar Salazar has garnered notable recognition and honors throughout his career for his contributions to the field of organic chemistry and pharmaceutical sciences. His achievements include being awarded the prestigious position of Principal Professor of Practice in Pharmacognosy at the Faculty of Biochemical and Pharmaceutical Sciences of the National University of Rosario (UNR). Additionally, his research has been widely acknowledged through numerous publications in high-impact journals and presentations at international conferences. Dr. Salazar’s scholarly work has earned him a respectable citation index and an h-index of 14, reflecting the significance and influence of his research contributions in the scientific community.

Research Skills

Dr. Mario Oscar Salazar is a highly skilled researcher with a broad range of expertise in organic chemistry and pharmaceutical sciences. His research skills are exemplified through proficiency in various analytical techniques essential for characterizing complex mixtures and bioactive compounds, including NMR spectroscopy, HPLC-UV, GC-MS, IR spectroscopy, and HPLC-HRMS. His specialization in chemical modification reactions such as sulfonylation, halogenations, and thiocyanation has significantly contributed to altering the molecular diversity and enhancing the biological activities of natural products. Dr. Salazar’s research also extends to studying enzyme inhibition mechanisms, particularly focusing on α-glucosidase and β-glucosidase inhibitors. He is adept at effect-directed analysis methods for identifying bioactive compounds and has a strong publication record in high-impact journals, alongside frequent presentations at international conferences. Collaborative by nature, Dr. Salazar has successfully partnered with prestigious institutions like CONICET and various research institutes, underscoring his commitment to advancing scientific knowledge and innovation in his field.

Publications

  1. Chemically engineered extracts: source of bioactive compounds
    • Authors: IA Ramallo, MO Salazar, L Mendez, RLE Furlan
    • Year: 2011
    • Citations: 85
    • Journal: Accounts of chemical research 44 (4), 241-250
  2. Modified β-Cyclodextrin Inclusion Complex to Improve the Physicochemical Properties of Albendazole. Complete In Vitro Evaluation and Characterization
    • Authors: A Garcia, D Leonardi, MO Salazar, MC Lamas
    • Year: 2014
    • Citations: 74
    • Journal: PloS one 9 (2), e88234
  3. A rapid TLC autographic method for the detection of glucosidase inhibitors
    • Authors: MO Salazar, RLE Furlan
    • Year: 2007
    • Citations: 73
    • Journal: Phytochemical Analysis: An International Journal of Plant Chemical and …
  4. Unsaturated long chain free fatty acids are input signals of the Salmonella enterica PhoP/PhoQ regulatory system
    • Authors: G Viarengo, MI Sciara, MO Salazar, PM Kieffer, RLE Furlán, EG Véscovi
    • Year: 2013
    • Citations: 48
    • Journal: Journal of Biological Chemistry 288 (31), 22346-22358
  5. Brominated extracts as source of bioactive compounds
    • Authors: L Méndez, MO Salazar, IA Ramallo, RLE Furlan
    • Year: 2011
    • Citations: 35
    • Journal: ACS combinatorial science 13 (2), 200-204
  6. Discovery of a β-glucosidase inhibitor from a chemically engineered extract prepared through sulfonylation
    • Authors: MO Salazar, O Micheloni, AM Escalante, RLE Furlan
    • Year: 2011
    • Citations: 31
    • Journal: Molecular diversity 15 (3), 713-719
  7. Metabolic Footprinting of a Clear Cell Renal Cell Carcinoma in Vitro Model for Human Kidney Cancer Detection
    • Authors: ME Knott, M Manzi, N Zabalegui, MO Salazar, LI Puricelli, ME Monge
    • Year: 2018
    • Citations: 29
    • Journal: Journal of proteome research 17 (11), 3877-3888
  8. Thin layer chromatography‐autography‐high resolution mass spectrometry analysis: accelerating the identification of acetylcholinesterase inhibitors
    • Authors: IA Ramallo, MO Salazar, RLE Furlan
    • Year: 2015
    • Citations: 28
    • Journal: Phytochemical analysis 26 (6), 404-412
  9. Chemically engineered extracts: Bioactivity alteration through sulfonylation
    • Authors: MO Salazar, IA Ramallo, O Micheloni, MG Sierra, RLE Furlan
    • Year: 2009
    • Citations: 28
    • Journal: Bioorganic & medicinal chemistry letters 19 (17), 5067-5070
  10. Effect-directed analysis in food by thin-layer chromatography assays
    • Authors: I Cabezudo, MO Salazar, IA Ramallo, RLE Furlan
    • Year: 2022
    • Citations: 26
    • Journal: Food Chemistry, 132937