Jiang Zheyun – Construction and Building Materials – Best Researcher Award

Jiang Zheyun - Construction and Building Materials - Best Researcher Award

Southeast university - China

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Jiang Zheyun's academic journey is deeply rooted in the field of Construction and Building Materials. He pursued his studies at Southeast University, where he developed a keen interest in geotechnical engineering and the utilization of industrial solid waste in construction.

PROFESSIONAL ENDEAVORS

Jiang Zheyun holds several key positions that highlight his leadership and expertise in Construction and Building Materials. He serves as the Secretary of the Environmental Geotechnical Engineering Professional Committee of the Jiangsu Society of Geomechanics and Engineering and is the General Manager of B-Z Geotechnical Technology (Nanjing) Co., Ltd. His professional endeavors demonstrate a strong commitment to advancing the field through both academic and industry channels.

CONTRIBUTIONS AND RESEARCH FOCUS

Jiang Zheyun's research is primarily focused on the utilization of industrial solid waste in construction and building materials. His work aims to develop sustainable solutions for industrial contaminated sites by creating novel barrier materials for organic and heavy metal contaminants. His contributions to Construction and Building Materials are significant, addressing critical environmental challenges and promoting resource efficiency.

IMPACT AND INFLUENCE

Jiang Zheyun's impact in the field of Construction and Building Materials is reflected in his numerous awards and honors. He has been recognized with the Silver Award at the 49th Geneva International Invention Exhibition in 2022, and several prestigious awards in 2021, including the 7th China International "Internet plus" Undergraduate Innovation and Entrepreneurship Competition and the Zhejiang Youth Innovation and Entrepreneurship Competition. His influence extends to both the academic community and the construction industry, where his innovative approaches are widely respected.

ACADEMIC CITES

Jiang Zheyun's research has been widely cited in academic literature, reflecting the importance and relevance of his work in Construction and Building Materials. His contributions are frequently referenced in studies related to industrial waste utilization and sustainable construction practices, underscoring his role as a leading researcher in the field.

LEGACY AND FUTURE CONTRIBUTIONS

Jiang Zheyun's legacy in Construction and Building Materials is marked by his dedication to sustainable development and environmental protection. His innovative research and practical applications have set new standards in the field, and his ongoing work continues to inspire future generations of engineers and researchers. As he advances in his career, his contributions are expected to further drive innovation and influence policies related to construction and environmental sustainability.

CONSTRUCTION AND BUILDING MATERIALS FOCUS

Throughout his career, Jiang Zheyun has made significant strides in Construction and Building Materials. His research on industrial solid waste resource utilization and novel barrier materials for contaminated sites addresses some of the most pressing environmental challenges. By integrating geotechnical engineering principles with sustainable practices, Jiang Zheyun has positioned himself as a key figure in Construction and Building Materials. His work not only enhances the field's body of knowledge but also contributes to practical solutions that benefit both industry and society.

NOTABLE PUBLICATION

Recycling, reusing and environmental safety of industrial by-product gypsum in construction and building materials 2024

Recycle of discarded masks in civil Engineering: Current status and future opportunities with silane coupling agent modified discarded masks  2023 (1)

An integrated fuzzy AHP and fuzzy TOPSIS approach for screening backfill materials for contaminant containment in slurry trench cutoff walls 2023 (3)

Hydraulic Conductivity, Microstructure, and Compositional Changes of Sand–Bentonite Backfill in Cutoff Walls Exposed to Organic Acids 2023 (6)