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

Hongtao Wang | Gas sensor | Best Researcher Award

Mr. Hongtao Wang | Gas sensor | Best Researcher Award 

Mr. Hongtao Wang, Taiyuan university of technology, China

Mr. Hongtao Wang, Lecturer at Taiyuan University of Technology, is an emerging expert in the field of gas sensor technology. With a doctorate from Jilin University’s Key Laboratory of Advanced Gas Sensors, he has focused on developing high-performance semiconductor gas sensors for real-world environmental and industrial applications. He has led two funded research projects and published 22 peer-reviewed papers, amassing over 500 citations. His work significantly contributes to smart sensing innovation and sustainability. With four patents under process and publications in leading journals, Mr. Wang exemplifies academic excellence and applied research impact.

Author Profile

Scopus

🌱 Early Academic Pursuits

Mr. Hongtao Wang began his academic journey with a strong foundation in electronic science and engineering, eventually pursuing his master’s and doctoral studies at the prestigious Key Laboratory of Advanced Gas Sensors, College of Electronic Science and Engineering, Jilin University. During this time, he developed a keen interest in semiconductor gas sensing technology—an area increasingly critical to environmental safety, public health, and industrial monitoring. His early academic efforts were directed toward understanding the fundamental properties of gas-sensitive materials and exploring how to enhance their selectivity, stability, and performance. These formative years laid the groundwork for a research career marked by both innovation and applicability.

🧑‍🏫 Professional Endeavors

Currently serving as a Lecturer at Taiyuan University of Technology, Mr. Wang has quickly established himself as a dedicated educator and active researcher. Balancing both roles, he mentors students in electronics and sensor technology while independently leading research projects that bridge theory with practical implementation. He has successfully undertaken two significant projects—one at the national level and another at the provincial or ministerial level—highlighting his credibility in securing competitive funding and delivering impactful research. His commitment to interdisciplinary collaboration, though currently limited, continues to grow as he explores future opportunities in industrial consultancy and international cooperation.

🔬 Contributions and Research Focus

Mr. Wang’s primary area of research is semiconductor gas sensors, with a focus on designing high-performance sensing systems for real-world applications. His work revolves around the synthesis of novel sensing materials, optimization of sensor device architectures, and integration of intelligent features for data analysis. By improving sensor sensitivity and selectivity in complex and dynamic environments, his research directly contributes to the development of technologies for environmental monitoring, industrial safety, and air quality control.

To date, he has published 22 peer-reviewed research papers in prominent journals such as Sensors and Actuators B: Chemical, Ceramics International, and the IEEE Sensors Journal. Notably, eight of these publications appear in top-tier journals, reflecting the technical rigor and global relevance of his work. These papers have collectively received over 500 citations, signaling widespread academic recognition and influence.

In addition to his publications, Mr. Wang has four patents published or under process, reinforcing the translational potential of his research and his commitment to technological innovation.

🏆 Accolades and Recognition

While Mr. Wang has not yet been formally recognized through editorial appointments or memberships in international professional bodies, his scholarly impact and contributions speak volumes. The substantial citation index of his published work demonstrates peer acknowledgment, and his selection for leading both national and regional research projects underscores the trust placed in his expertise by academic and government institutions alike.

His work aligns closely with China’s national objectives related to smart sensing technologies, public safety, and sustainable development, making him a key contributor to national strategic research efforts. His publication record, citation impact, and patent portfolio position him as a promising young scholar deserving of broader recognition on global platforms.

🌍 Impact and Influence

Mr. Wang’s work holds practical relevance in addressing some of the world’s most urgent challenges: pollution control, workplace safety, and the health effects of poor air quality. The sensors and sensing technologies he develops are not confined to theoretical applications—they are being engineered to function efficiently in real-world, often harsh, environments. His innovations offer scalable solutions for integration into urban infrastructure, industrial plants, and smart cities, demonstrating both scientific excellence and societal value.

Moreover, his research influence extends through academic networks, where his publications are increasingly cited by peers working on environmental sensing, nanomaterials, and AI-driven diagnostics. With over 330 citations from his top-tier publications alone, Mr. Wang’s contributions are already shaping ongoing discourse and future research in sensor technology.

🌟 Legacy and Future Contributions

Looking ahead, Mr. Hongtao Wang is well-poised to become a thought leader in intelligent sensor systems. His work is moving toward the development of AI-integrated gas sensors, capable of self-calibration, adaptive learning, and real-time analytics. This evolution could revolutionize not just environmental monitoring but also health diagnostics, smart agriculture, and automotive safety systems.

With ongoing patents and a proven track record in research publication, Mr. Wang is also likely to influence technology commercialization pathways and policy-driven innovation frameworks. As he continues to mentor young scholars and expand his research collaborations, his legacy will be defined by both academic excellence and real-world transformation.

✍️Publication Top Notes


📘SO42− modified Bi2MoO6 nanosheets to effectively boost photodegradation of tetracycline in wastewater

Author: S., Zhou, Suochao, X., Yu, Xiaohong, J., Chen, Junbo, T., Ren, Tengfei, H., Wang, Hongtao

Journal: Seperation and purification technology

Year: 2025


📘Glacial melting accelerates andean uplift: Insights from 2D viscoelastic-plastic subduction models

Author: W., Wang, Weian, S., Li, Shichao, H., Wei, Hongyu, H., Wang, Hongtao, X., He, Xiaoqi

Journal: Earth and Planetary Science

Year: 2025


📘CuxO coupled with in-situ nitrogen-doped biomass carbon electrocatalysts for accelerated CO2 electroreduction to ethylene

Author: H., Wang, Hongtao, J., Zhang, Jianing, Y., Qi, Yu, T., Guo, Tianyu
Journal:  Environmental chemical engineering
 
Year: 2025

Lanhui Zhang | Earth and Planetary Sciences | Best Researcher Award | 13425

Prof Dr Lanhui Zhang | Earth and Planetary Sciences | Best Researcher Award

Prof Dr Lanhui Zhang,Lanzhou university,China

Prof. Lanhui Zhang is nominated for the Best Researcher Award in recognition of her exceptional contributions to environmental science and hydrology. Her pioneering work in land surface-atmosphere interactions and the integration of AI into hydrological modeling has significantly advanced the field. With over 40 publications, leadership in national research projects, and recognized international service, Prof. Zhang exemplifies innovation, impact, and academic excellence.

 Profile

Scopus

🎓 Early Academic Pursuits

Prof. Lanhui Zhang embarked on her academic journey with a deep curiosity about atmospheric sciences and their interactions with the Earth’s surface. She pursued her higher education at Lanzhou University, one of China’s leading institutions in environmental and earth sciences. In 2011, she earned her Ph.D. in Meteorology, laying the foundation for her lifelong commitment to hydrological research and land-atmosphere dynamics.

👩‍🔬 Professional Endeavors

Prof. Zhang has risen through the academic ranks to become a Professor at the Key Laboratory of West China’s Environmental System (Ministry of Education), under the College of Earth and Environmental Sciences, Lanzhou University. She was promoted to this position in 2024, after years of research excellence and academic leadership.

Her professional career is defined by active leadership in nationally funded research projects, with three projects under her leadership and contributions to three others supported by the National Natural Science Foundation of China (NSFC). These projects tackle critical issues such as two-dimensional soil water movement, land use change, and the assimilation of remote sensing data into hydrological models—areas crucial for the environmental management of China’s vulnerable mountain ecosystems.

🧠 Contributions and Research Focus

Prof. Zhang’s primary research interests include land surface-atmosphere interactions, hydrological modeling, and the integration of artificial intelligence (AI) in environmental systems. Her work represents a forward-thinking fusion of physical science with machine learning, aimed at improving the precision and adaptability of environmental simulations.

🏅 Accolades and Recognition

Prof. Zhang’s research excellence has earned her national and international recognition. From 2016 to 2024, she served as the Executive Director of the Steering Committee for the IGU Water Sustainability Commission, showcasing her leadership on a global platform concerned with water sustainability and climate resilience.

🌍 Impact and Influence

Prof. Zhang’s research extends beyond academia. By applying her models to real-world challenges in water management, especially in China’s ecologically sensitive mountain regions, she has contributed to sustainable agricultural and water resource practices. Her integration of AI in hydrological modeling has sparked interest among younger researchers and provided a framework for interdisciplinary collaborations, bridging environmental science, computer modeling, and engineering. Her hybrid modeling techniques are being adapted and cited in multiple environmental modeling platforms, influencing both research direction and educational curricula across institutions.

🔮 Legacy and Future Contributions

Looking forward, Prof. Zhang is committed to expanding the frontier of intelligent environmental modeling. She envisions developing adaptive, AI-driven hydrological models that respond in real-time to environmental changes—tools that will be critical in an era of accelerating climate variability. She also plans to mentor young scientists, expand international collaborations, and contribute to national policy through science-based guidance on water and land sustainability. Prof. Zhang’s work stands as a legacy of scientific innovation, real-world relevance, and educational impact. Her ongoing contributions promise to shape the future of environmental modeling and water resource management both in China and internationally.

Publications Top Notes

The effect of heat treatment on the electrochemical properties of additive manufactured TC4 titanium alloy

Author: S., Che, Shuanghang, Y., Zhang, Yifei, Q., Yuan, Quan, L., Kong, Lu, J., Li, Jianzhong

Journal: International Journal of Electrochemical Science This link is disabled

Year: 2025

Thermodynamics study for Y2O3-Al2O3-SiO2 system: Emphasis on the equilibrium phase relationship at 1400℃ and 1600℃

Author: S., Li, Sheng, J., Shi, Junjie, D., Li, Dong, Y., Qiu, Yuchao, J., Li, Jianzhong

Journal: Journal of Alloys and CompoundsThis link is disabled

Year: 2025

Effect of 5wt% Fe3O4 addition on the phase equilibria of the CaO-SiO2-TiO2 system at 1400°C in air

Author: J., Shi, Junjie, C., Jiang, Chenglong, Y., Cao, Yifei, M., Yao, Maoxi, J., Li, Jianzhong

Journal: International Journal of Minerals, Metallurgy and Materials This link is disabled

Year: 2025