Qinhong Wei | Catalysis | Best Researcher Award

Assoc. Prof. Dr. Qinhong Wei | Catalysis | Best Researcher Award

Zhejiang Ocean University, China

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐ŸŽ“ Early Academic Pursuits

Dr. Qinhong Wei began his academic journey with a Bachelor of Chemical Engineering at Shenyang University of Chemical Technology, China. He then pursued a Master’s degree in Industrial Catalysis at the same institution, cultivating a foundational understanding of chemical processes and catalyst design. Driven by a keen interest in advanced materials and catalysis, he advanced to earn his Ph.D. in Nano New Functional Materials Science from the University of Toyama, Japan. During this period, Dr. Wei developed expertise in the synthesis and application of nano-scale materials, setting the stage for his future specialization in heterogeneous catalysis.

๐Ÿงช Professional Endeavors

Following his doctoral studies, Dr. Wei joined the Chinese Academy of Sciencesโ€™ Institute of Coal Chemistry as a Postdoctoral Researcher, where he worked on catalytic transformations of carbon-based feedstocks. He was later appointed as Associate Professor and Head of the Department of Chemical Engineering at Zhejiang Ocean University, Zhoushan, China. In this leadership role, Dr. Wei not only drives research initiatives but also oversees the academic and developmental direction of the department.

๐Ÿ”ฌ Contributions and Research Focus

Dr. Weiโ€™s research revolves around the design of catalytic materials, reaction pathway engineering, and catalytic conversion of low-carbon molecules. His work integrates heterogeneous catalysis, especially in C1 chemistry, and extensively employs in-situ characterization techniques to probe catalyst behavior under real conditions. He has made significant contributions in areas such as:

  • Hydrogenation of syngas and COโ‚‚ to produce liquid fuels and value-added chemicals (e.g., olefins, aromatics, and oxygenates)

  • Propane dehydrogenation (PDH) to yield propylene, a critical feedstock in the polymer industry

  • Methane conversion for enhanced utilization of natural gas

  • Catalyst design for sustainable energy solutions aligned with green chemistry principles

๐Ÿ“Š Research Projects and Honors

Dr. Wei has led over 10 research projects, securing competitive funding from prestigious bodies including the National Natural Science Foundation of China, China Postdoctoral Science Foundation, and Zhejiang Provincial Natural Science Foundation. His excellence in scientific innovation has earned him numerous accolades, such as the Leading Talent (Young Excellent Talent) distinction in Zhejiang Province and two Zhoushan Natural Science Excellent Paper Awards, reinforcing his reputation as a forward-thinking leader in chemical engineering.

๐ŸŒ Impact and Influence

With over 30 publications in top-tier international journals, such as Nature Communications, Applied Catalysis B: Environmental, Chemical Engineering Journal, and Fuel, Dr. Weiโ€™s research significantly advances the field of low-carbon catalytic conversion. His work provides both theoretical insights and practical pathways for clean fuel synthesis, carbon dioxide utilization, and natural gas valorization, directly contributing to global sustainability goals and carbon neutrality efforts.

๐Ÿ“š Academic Citations and Collaborations

Dr. Weiโ€™s growing citation record and publication impact demonstrate the high value of his research in the academic community. His collaboration with both domestic and international research institutions strengthens cross-border scientific exchange and facilitates the integration of cutting-edge catalytic techniques into industrial applications.

๐Ÿง  Technical Skills and Expertise

Dr. Wei is proficient in the synthesis and in-situ analysis of catalytic systems, with technical strengths spanning material characterization, reaction engineering, and mechanistic investigation of catalytic pathways. His ability to bridge the gap between material science and industrial catalysis allows him to design catalysts with high selectivity, stability, and energy efficiency.

๐Ÿ‘จโ€๐Ÿซ Teaching and Mentorship

As Head of Department at Zhejiang Ocean University, Dr. Wei actively contributes to curriculum development, student mentoring, and research training. His commitment to academic excellence is reflected in his support for young researchers, guiding them through experimental work, thesis development, and participation in funded research projects.

๐ŸŒฑ Legacy and Future Contributions

Looking ahead, Dr. Wei aims to expand his contributions in the fields of green catalysis, COโ‚‚ reduction, and circular carbon economy technologies. His research vision emphasizes integrated energy systems, advanced materials for clean fuels, and mechanistic studies that push the frontiers of catalytic science. With a strong foundation of academic rigor, industrial relevance, and mentorship, Dr. Wei is poised to make enduring contributions to chemical engineering and sustainable development.

๐Ÿ“–Notable Publications

Pre-phase transition of a Cuโ‚‚โˆ’xS template enables polymorph selective synthesis of MS (M = Zn, Cd, Mn) nanocrystals via cation exchange reactions
Authors: Yan Zhang, Shaobo He, Qingxia Zhang, Hongtao Zhang, Jinchen Zhou, Xing Yang, Qinhong Wei, Lihui Chen
Journal: Nanoscale
Year: 2024

Electronic structure modulation of metallic Co via N-doped carbon shell and Cu-doping for enhanced semi-hydrogenation of phenylacetylene to styrene
Authors: Feixiang Chang, Yize Wang, Haoting Yan, Jiashi Wang, Renkun Zhang, Xianmin Zheng, Qinhong Wei, Luhui Wang, Jing Xu
Journal: Separation and Purification Technology
Year: 2024

Atomically dispersed Feฮดโบ anchored on nitrogen-rich carbon for enhancing benzyl alcohol oxidation through Mott-Schottky effect
Authors: Qinhong Wei, Jiashi Wang, Wenzhong Shen
Journal: Applied Catalysis B: Environmental
Year: 2021

Metal 3D printing technology for functional integration of catalytic system
Authors: Qinhong Wei, Hangjie Li, Guoguo Liu, Yingluo He, Yang Wang, Yen Ee Tan, Ding Wang, Xiaobo Peng, Guohui Yang, Noritatsu Tsubaki
Journal: Nature Communications
Year: 2020

Constructing Co@N-doped graphene shell catalyst via Mott-Schottky effect for selective hydrogenation of 5-hydroxylmethylfurfural
Authors: Jiashi Wang, Qinhong Wei, Qingxiang Ma, Zhongya Guo, Fangfang Qin, Zinfer R. Ismagilov, Wenzhong Shen
Journal: Applied Catalysis B: Environmental
Year: 2020

Coal tar- and residual oil-derived porous carbon as metal-free catalyst for nitroarene reduction to aminoarene
Authors: Qinhong Wei, Fangfang Qin, Qingxiang Ma, Wenzhong Shen
Journal: Carbon
Year: 2019

Metal-free honeycomb-like porous carbon as catalyst for direct oxidation of benzene to phenol
Authors: Qinhong Wei, Huailin Fan, Fangfang Qin, Qingxiang Ma, Wenzhong Shen
Journal: Carbon
Year: 2018

Xianming Zhang | Green Chemistry | Best Researcher Award -1964

Prof. Xianming Zhang | Green Chemistry | Best Researcher Award

Ordos Institute of Technology, China

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐ŸŽ“ Early Academic Pursuits

Prof. Zhangโ€™s academic journey began with a strong foundation in chemical engineering, earning his Bachelorโ€™s degree in Chemical Engineering and Technology from Inner Mongolia University. His relentless pursuit of knowledge led him to further his studies at China University of Petroleum-Beijing, where he completed both a Masterโ€™s degree in Chemical Engineering and later a Ph.D. in Chemical Engineering and Technology. This rigorous educational background has empowered him with the technical expertise and innovative mindset required to tackle complex research problems.

๐Ÿข Professional Endeavors

At the Ordos Institute of Technology, Prof. Zhang holds the position of Professor in the Department of Chemical Engineering. In this role, he actively leads research projects and guides academic programs that bridge theoretical concepts with practical applications. His work in developing coal-based new materials and investigating novel solvents has positioned him as a key figure in chemical engineering, fostering collaborations between academia and industry.

๐Ÿ”ฌ Contributions and Research Focus

Prof. Zhangโ€™s research is marked by a commitment to innovation. His focus on coal-based new materials opens new pathways for sustainable resource utilization, while his investigations into ionic liquids and deep eutectic solvents offer promising alternatives for green chemistry applications. By exploring catalysis and phase equilibrium, he contributes to a deeper understanding of chemical reactions and process optimization, which are critical for advancing industrial technologies and reducing environmental impacts.

๐Ÿ“Š Impact and Influence

The impact of Prof. Zhangโ€™s research extends beyond academia. His work influences both industrial practices and environmental strategies by promoting sustainable chemical processes. The development of novel materials and efficient catalytic processes under his guidance has not only advanced scientific understanding but also provided practical solutions that drive technological innovation. His contributions are widely recognized in scholarly circles and have a lasting influence on the future of chemical engineering.

๐Ÿ“š Academic Citations and Publications

Prof. Zhangโ€™s research findings are well-documented in a range of peer-reviewed journals and academic conferences. His publications serve as a valuable resource for fellow researchers and have been extensively cited in studies related to advanced materials and chemical process engineering. This academic recognition underscores his role as a thought leader in his field.

๐Ÿ› ๏ธ Technical Skills

Prof. Zhang possesses a diverse set of technical skills that include expertise in material synthesis, process engineering, and experimental design. His proficiency with modern analytical techniques and simulation tools enables him to conduct in-depth studies on the behavior of chemical systems. These skills are essential in his ongoing research, which continuously pushes the boundaries of conventional chemical engineering.

๐ŸŽ“ Teaching and Mentorship

An equally dedicated educator, Prof. Zhang is deeply involved in mentoring the next generation of engineers and researchers. He combines his extensive research experience with a passion for teaching, guiding graduate and undergraduate students through complex concepts in chemical engineering. His approach to education emphasizes practical problem-solving and innovative thinking, preparing students to contribute meaningfully to the scientific community.

๐Ÿ”ฎ Legacy and Future Contributions

Looking ahead, Prof. Zhang is poised to make even greater contributions to the field of chemical engineering. His pioneering research in sustainable materials and innovative chemical processes promises to drive future advancements in environmental technology and industrial efficiency. With a legacy built on academic excellence and practical innovation, Prof. Zhang continues to inspire his peers and students, ensuring that his work will have a lasting and transformative impact on both science and society.

๐Ÿ“–Notable Publications

  • Liquidโˆ’liquid equilibrium for ternary systems of 1-Octene + 2-Hexanone + ionic liquid: Phase equilibrium measurement and correlation

    • Authors: Xianming Zhang, Yanping Li, Yongli Wu, Yunfei Wang, Panpan Yan, Zhilei Zheng, Hongyu Peng, Yuexin Chu

    • Journal: The Journal of Chemical Thermodynamics

    • Year: 2025

  • Experimental results for the vaporโ€“liquid equilibria of (formaldehyde + 1,3,5-trioxane + methanol + salt + water) systems and comparison with predictions

    • Authors: Xianming Zhang

    • Journal: Chinese Journal of Chemical Engineering

    • Year: 2021

  • Humic Acid Removal from Water with PAC-Al30: Effect of Calcium and Kaolin and the Action Mechanisms

    • Authors: Zhen Wu, Xian Zhang, Jinglin Pang, Xianming Zhang, Juan Li, Jiding Li, Panyue Zhang

    • Journal: ACS Omega

    • Year: 2020

  • Vaporโ€“liquid and chemical equilibria model for formaldehyde + 1,3,5-trioxane + methanol + salt + water system

    • Authors: Xianming Zhang, Yufeng Hu, Weiting Ma, Jianguang Qi, Shuqin Mo

    • Journal: Fluid Phase Equilibria

    • Year: 2020

  • Vaporโ€“liquid and chemical equilibria model for formaldehydeโ€“trioxaneโ€“sulfuric acidโ€“water mixtures

    • Authors: Siqi Jiang, Xianming Zhang, Yufeng Hu, Liuyi Yin, Jianguang Qi, Chunxiao Ren, Shuqin Mo

    • Journal: Journal of Chemical Technology & Biotechnology

    • Year: 2020

  • Theoretical Studies of the Hydrogen Abstraction from Poly(oxymethylene) Dimethyl Ethers by Oโ‚‚ in Relation with Cetane Number Data

    • Authors: Xianming Zhang, Yanping Li, Yufeng Hu, Jinglin Pang, Yunfei Wang, Zhen Wu

    • Journal: ACS Omega

    • Year: 2019

  • Concentration of linoleic acid from cottonseed oil by starch complexation

    • Authors: Xianming Zhang

    • Journal: Chinese Journal of Chemical Engineering

    • Year: 2019

 

Vaishali Sahu | Environmental Engineering | Women Researcher Award

Dr. Vaishali Sahu | Environmental Engineering | Women Researcher Award

The NorthCap University, India

๐Ÿ‘จโ€๐ŸŽ“Profiles

๐ŸŽ“ Early Academic Pursuits

Dr. Vaishali Sahu embarked on her academic journey with a Bachelorโ€™s degree in Civil Engineering from SGSITS, Indore, laying the foundation for her expertise in engineering. She further specialized in Environmental Engineering by obtaining a Masterโ€™s degree from IIT Roorkee, one of Indiaโ€™s premier institutions. Her commitment to academic excellence culminated in a Ph.D. from The NorthCap University, Gurgaon, where she delved deeper into sustainable waste management and environmental engineering.

๐Ÿ’ผ Professional Endeavors

With over 16 years of experience, Dr. Sahu has established herself as a leader in academics, research, and administration. She currently holds the position of Associate Head and Associate Professor in the Department of Multidisciplinary Engineering at The NorthCap University, Gurgaon, Haryana. Additionally, she plays a crucial role as the Deputy Director of the Internal Quality Assurance Cell (IQAC), ensuring academic and research excellence at the university.

๐Ÿ”ฌ Contributions and Research Focus

Dr. Sahuโ€™s research interests span across solid and liquid waste management, sustainable waste management, water and wastewater treatment, pollution control, and environmental geotechnology. Her research and teaching contributions have significantly influenced advancements in waste recycling, resource management, and environmental sustainability.

She has:
โœ”๏ธ Published over 42 research articles in renowned national and international journals.
โœ”๏ธ Authored 2 books in the field of environmental engineering.
โœ”๏ธ Presented 22+ research papers at prestigious conferences worldwide.
โœ”๏ธ Supervised 4 Ph.D. theses, 20 M.Tech dissertations, and 20+ B.Tech projects focused on sustainable environmental solutions.
โœ”๏ธ Currently guiding 10 Ph.D. scholars at The NorthCap University.

๐Ÿ“Š Impact and Influence

Dr. Sahu’s contributions extend beyond academia into policy and practical applications of waste and water management. Her expertise has been recognized through research funding, including:
โœ… DST-funded project (โ‚น25.41 lakhs) โ€“ โ€œExperimental and Numerical Study of Single Pile Capacity Adjacent to Existing Buried Pipe Systemโ€ (Completed in 2020).
โœ… Two international projects ($15,900) โ€“ Funded by Cintana Education in collaboration with universities from Mexico, Peru, and Egypt.

Her role as a reviewer for reputed international journals further highlights her influence in shaping research trends in environmental sustainability.

๐Ÿ“š Academic Citations and Recognition

Dr. Sahuโ€™s work has garnered significant academic citations due to its impact in the domain of environmental engineering and sustainability. Her research findings have been referenced in multiple studies, contributing to policy frameworks, industrial applications, and further innovations in waste management and pollution control.

๐Ÿ› ๏ธ Technical Skills

Dr. Sahu is proficient in:
โœ”๏ธ Solid and Liquid Waste Management Techniques
โœ”๏ธ Water and Wastewater Treatment Processes
โœ”๏ธ Environmental Geotechnology
โœ”๏ธ Air Pollution Control Strategies
โœ”๏ธ Sustainable Infrastructure Planning

๐ŸŽ“ Teaching Experience

As an educator, Dr. Sahu has been instrumental in mentoring students and fostering research-driven learning. Her teaching experience includes:
๐Ÿ“Œ Guiding students in sustainable waste management and environmental conservation projects.
๐Ÿ“Œ Providing hands-on training in resource recycling and water purification technologies.
๐Ÿ“Œ Encouraging multidisciplinary approaches in civil and environmental engineering.

๐ŸŒŽ Legacy and Future Contributions

Beyond academia, Dr. Sahu is deeply committed to social and community development. She strongly advocates for volunteering and community engagement, emphasizing the importance of environmental awareness. Through her initiatives at NCU, she is shaping a community of responsible and environmentally conscious individuals.

Her future contributions are poised to drive:
๐ŸŒ Sustainable urban development through innovative waste management solutions.
๐Ÿ”ฌ Cutting-edge research in water treatment and pollution mitigation.
๐Ÿ“˜ Policy recommendations for improving environmental regulations.
๐Ÿ‘ฉโ€๐ŸŽ“ Student-led research projects with real-world environmental impact.

๐Ÿ“–Notable Publications

Stabilization of fly ash and lime sludge composites: Assessment of its performance as base course material

Authors: V Sahu, A Srivastava, AK Misra, AK Sharma

Journal: Archives of Civil and Mechanical Engineering

Year: 2017

A comparative study on the removal of heavy metals by adsorption using fly ash and sludge: A review

Authors: G Varma, RK Singh, V Sahu

Journal: International Journal of Application or Innovation in Engineering and โ€ฆ

Year: 2013

Development of geopolymer cement concrete for highway infrastructure applications

Authors: N Dave, V Sahu, AK Misra

Journal: Journal of Engineering, Design and Technology

Year: 2020

The use of fly ash and lime sludge as partial replacement of cement in mortar

Authors: V Sahu, V Gayathri

Journal: International Journal of Engineering and Technology Innovation

Year: 2014

Identification of watershed preference management areas under water quality and scarcity constraints: Case of Jhajjar district watershed, India

Authors: R Gupta, AK Misra, V Sahu

Journal: Applied Water Science

Year: 2019

Sustainability assessment of EPS-geofoam in road construction: A case study

Authors: DK Srivastava, A Srivastava, AK Misra, V Sahu

Journal: International Journal of Sustainable Engineering

Year: 2019

Vanessa de Souza Marinho | Green Chemistry | Best Researcher Award -1881

Mrs. Vanessa de Souza Marinho | Green Chemistry | Best Researcher Award National

Institute for Amazonian Research (INPA), Brazil

๐Ÿ‘จโ€๐ŸŽ“Profile

๐ŸŽ“ Early Academic Pursuits

Vanessa de Souza Marinho began her academic journey in Food Engineering, where she gained a strong foundation in food processes, packaging technology, and food safety. Her undergraduate studies focused on understanding the science behind food production, quality control, and innovative processing techniques. This early exposure sparked her interest in developing functional food products and improving food sustainability.

๐Ÿ’ผ Professional Endeavors

With hands-on experience in food analysis laboratories, Vanessa has actively contributed to quality assurance and new product development. Her expertise extends to conducting physical-chemical, sensory, and microbiological analyses, ensuring that food products meet safety and regulatory standards. She has also collaborated on research projects exploring emerging technologies in the food industry, enhancing her skills in innovation and sustainable practices.

๐Ÿ”ฌ Contributions and Research Focus

Currently pursuing a Masterโ€™s degree in Agriculture in the Humid Tropics at the National Institute for Amazonian Research (INPA), Brazil, Vanessa focuses on the development of functional food products tailored for tropical environments. Her research investigates novel ingredients and sustainable processing methods to enhance food quality and nutritional value. She is particularly interested in how Amazonian biodiversity can contribute to health-promoting food innovations.

๐ŸŒ Impact and Influence

Vanessaโ€™s work has the potential to bridge the gap between traditional food science and sustainable agriculture. By leveraging her expertise in quality management and food microbiology, she aims to promote food safety, reduce waste, and contribute to the development of eco-friendly food solutions. Her research can support local farmers, food industries, and policymakers in making informed decisions about sustainable food production.

๐Ÿ“š Academic Citations and Research Recognition

Although still in the early stages of her research career, Vanessa has participated in projects that contribute to scientific publications and conference presentations. As she progresses in her academic journey, her work is expected to gain further recognition, contributing to discussions on functional foods and sustainable food processing.

๐Ÿ› ๏ธ Technical Skills

Vanessa possesses a diverse set of technical competencies, including:

  • Food Safety & Quality Management โ€“ Ensuring compliance with industry standards.
  • Sensory and Physical-Chemical Analysis โ€“ Evaluating food properties and consumer acceptability.
  • Food Microbiology โ€“ Detecting and preventing foodborne pathogens.
  • Packaging Technology โ€“ Studying sustainable and effective packaging solutions.
  • Emerging Technologies in Food Processing โ€“ Investigating innovative methods for food preservation and enhancement.

๐Ÿ‘ฉโ€๐Ÿซ Teaching and Knowledge Dissemination

While primarily focused on research, Vanessa is committed to knowledge-sharing. She actively engages in scientific discussions, presentations, and workshops, aiming to educate students, professionals, and food industry stakeholders about the latest advancements in food science and sustainable practices.

๐Ÿš€ Legacy and Future Contributions

Vanessa de Souza Marinho aspires to leave a lasting impact on food science and sustainability. She envisions a future where functional food products derived from Amazonian resources play a crucial role in global health and nutrition. Through continued research, collaboration, and innovation, she aims to transform food systems, making them more resilient, nutritious, and environmentally friendly.

๐Ÿ“–Notable Publication

Physicochemical characterization, pectin extraction and analysis of volatile compounds of Alibertia sorbilis Ducke using ultrasound: Potential for new products in the bioeconomy of the Amazon

Authors: Vanessa de Souza Marinho, Ludmylla Negreiros do Nascimento, Bruna Ribeiro de Lima, Jaime Paiva Lopes Aguiar, Francisca das Chagas do Amaral Souza
Journal: Food and Humanity
Year: 2025