Behnaz Yahyaei | Sustainabile Construstion | Research Excellence Award

Research Excellence Award

Behnaz Yahyaei
Affiliation Kharazmi University
Country United Arab Emirates
Scopus ID 57216251833
Documents 7
Citations 114
h-index 5
Subject Area Sustainable Construction
Event Agri Scientist Awards

Behnaz Yahyaei is affiliated with Kharazmi University and is recognized for scholarly contributions associated with sustainable construction and interdisciplinary engineering research. Her academic profile demonstrates active participation in scientific publication, citation development, and research dissemination related to construction sustainability, environmental engineering, and applied scientific methodologies.[1] The indexed research profile further reflects measurable academic visibility and engagement within internationally recognized scholarly databases and professional scientific communities.[2]

Abstract

This article presents a structured academic recognition overview of Behnaz Yahyaei, whose scholarly activities are associated with sustainable construction and engineering-oriented scientific research. The research profile demonstrates indexed publication activity, citation visibility, and participation in internationally recognized scholarly databases.[1] The article further evaluates publication performance, interdisciplinary engineering relevance, and scientific contribution areas associated with sustainable construction methodologies and applied environmental research.

Keywords

Sustainable Construction; Environmental Engineering; Scientific Publications; Citation Analysis; Academic Recognition; Engineering Research; Sustainable Development; Scopus Profile; Construction Engineering; Applied Scientific Research.

Introduction

Academic recognition systems commonly evaluate researchers based on publication quality, scientific visibility, interdisciplinary impact, and technical engagement. Within sustainable construction and environmental engineering disciplines, scholarly research contributes significantly to infrastructure sustainability, environmental management, material optimization, and engineering innovation.[3] Behnaz Yahyaei’s scholarly profile reflects measurable participation in these academic areas through indexed publications and citation records available in international research databases.[1]

Professional scientific recognition programs frequently emphasize research dissemination, technical contribution, and academic consistency within applied engineering and sustainability-oriented scientific disciplines.

Research Profile

According to indexed academic records, Behnaz Yahyaei has authored or co-authored seven scientific documents with a cumulative citation count of one hundred and fourteen and an h-index value of five.[1] These metrics indicate active scholarly participation and measurable academic visibility within sustainability-focused engineering research. The research portfolio is primarily associated with sustainable construction, environmental analysis, and engineering-related scientific methodologies.

Researchers working in sustainability-oriented engineering institutions frequently contribute to interdisciplinary scientific development involving environmental systems, construction technologies, engineering materials, and applied research methodologies relevant to sustainable infrastructure advancement.

Research Contributions

The available scholarly profile suggests contributions associated with sustainable construction methodologies, environmental engineering systems, and interdisciplinary scientific analysis. Sustainable construction research plays an important role in infrastructure resilience, resource optimization, environmental sustainability, and engineering efficiency.[3]

Engineering research within sustainability-oriented scientific domains frequently requires multidisciplinary integration involving environmental science, construction engineering, technical modeling, and computational analysis. The publication activity associated with Behnaz Yahyaei reflects participation in peer-reviewed scientific dissemination and academic communication within applied engineering disciplines.[2]

Publications

The indexed publication portfolio associated with Behnaz Yahyaei includes scientific works documented in internationally recognized research databases. Publication activity represents an important indicator of scientific engagement, collaborative participation, and technical communication within sustainability-oriented engineering communities.[1]

The documented research output demonstrates involvement in sustainability-focused engineering investigations and environmentally relevant scientific methodologies contributing to broader academic and technical development.

Research Impact

Citation indicators and indexed publication visibility provide measurable evidence of academic engagement and scientific dissemination. The citation profile associated with Behnaz Yahyaei indicates that the published research has received scholarly attention within related engineering and sustainability-focused scientific communities.[1]

Research impact within sustainable construction and environmental engineering frequently extends beyond direct publication metrics and contributes to broader applications including sustainable infrastructure development, engineering design optimization, environmental assessment, and scientific innovation processes.[3] Indexed publications further support international academic collaboration and interdisciplinary scientific visibility across research institutions and engineering communities.

Award Suitability

Based on the available scholarly indicators, Behnaz Yahyaei demonstrates characteristics commonly associated with professional scientific recognition programs, including indexed publication activity, measurable citation performance, and subject specialization in sustainable construction and engineering-oriented scientific research. The integration of sustainability-focused research with engineering applications aligns with broader objectives related to scientific advancement and sustainable technological development.

Professional academic award frameworks generally emphasize innovation potential, scientific dissemination, technical contribution, and measurable scholarly engagement within engineering and environmental science disciplines. The documented publication and citation profile supports consideration under academic recognition categories associated with sustainable engineering and applied scientific excellence.

Conclusion

Behnaz Yahyaei’s academic profile reflects active participation in sustainable construction research and indexed scientific publication. The documented metrics, including publication count, citation visibility, and institutional affiliation, indicate measurable scholarly contribution within engineering-related scientific disciplines.[1] The research record demonstrates alignment with professional academic recognition standards associated with engineering excellence, sustainability-focused research, and interdisciplinary scientific contribution.

References

    1. Elsevier. (n.d.). Scopus author details: Behnaz Yahyaei, Author ID 57216251833. Scopus.
      https://www.scopus.com/authid/detail.uri?authorId=57216251833
    2. ORCID. (n.d.). ORCID profile record for Behnaz Yahyaei.
      https://orcid.org/0000-0002-3418-0412
    3. Yahyaei, B., Asadollahfardi, G., & Salehi, A. M. (2021). Workability, mechanical, and durability properties of self‐compacting concrete using the treated wastewater. Structural Concrete, 22, E997-E1008.
      https://doi.org/10.1002/suco.202000540
    4. Bahraman, M., Asadollahfardi, G., Salehi, A. M., & Yahyaei, B. (2021). Feasibility study of using wash water from ready mixed concrete plant and synthetic wastewater based on tap water with different total dissolved solid to produce self-compacting concrete. Journal of Building Engineering, 41, 102781.
      https://doi.org/10.1016/j.jobe.2021.102781
    5. Yahyaei, B., Asadollahfardi, G., & Salehi, A. M. (2022). Study of using micro‐nano bubble to improve workability and durability of self‐compact concrete. Structural Concrete, 23(1), 579-592.
      https://doi.org/10.1002/suco.202100392

Dr. Xuechen Zhuang – Natural polymer materials – Best Researcher Award

Dr. Xuechen Zhuang - Natural polymer materials - Best Researcher Award

Lecturer - Ningbo University of Technology - China

AUTHOR PROFILE

SCOPUS

SUMMARY

Zhuang Xuechen is a dedicated academic serving as a Lecturer at Ningbo University of Technology. With a strong foundation in materials science, she holds a doctorate from Dalian University of Technology. Her work primarily revolves around innovative uses of natural polymers and nanomaterials. Zhuang’s research contributions, though still emerging, have demonstrated promising applications in sustainable material development. She strives to merge theory with practical utility, making strides in composite material innovation and application.

EDUCATION

Dr. Zhuang Xuechen completed her higher education at Dalian University of Technology, where she earned her doctoral degree. Her academic training focused on material sciences, particularly emphasizing natural polymer materials. This rigorous academic background laid the foundation for her career in research and teaching. Her educational journey enabled her to build deep knowledge in polymer composites and nanotechnology, fostering an innovative approach to sustainable material development. This education continues to inform her work at Ningbo University of Technology, where she integrates her learning into academic and research practices.

PROFESSIONAL EXPERIENCE

Currently a Lecturer at Ningbo University of Technology, Dr. Zhuang Xuechen combines teaching and research in the field of natural polymer composites. Although early in her academic career, her role involves mentoring students, developing research methodologies, and contributing to the institution’s scientific output. Despite the absence of large-scale projects or industry partnerships, she has shown potential through scholarly publications and patent activity. Her work environment encourages exploration of new materials, allowing her to apply her doctoral training to address material-related challenges.

RESEARCH INTEREST

Dr. Zhuang’s research centers on natural polymer composite materials and nanomaterials, targeting applications that contribute to eco-friendly innovation. Her interest lies in enhancing the functionality, sustainability, and applicability of bio-based materials. This includes developing composite structures with desirable mechanical and thermal properties while maintaining environmental compatibility. Her commitment to exploring natural polymers indicates a forward-looking research mindset focused on reducing environmental impact and supporting circular economies through novel material solutions.

RESEARCH SKILL

Dr. Zhuang demonstrates strong research capabilities in synthesizing and analyzing natural polymer composites and nanomaterials. Her skill set includes formulating experimental designs, applying analytical techniques, and interpreting complex data to evaluate material performance. She is also skilled in drafting scientific papers for reputed journals, with four SCI-indexed publications to her name. Her patent application showcases her practical approach to scientific discovery, highlighting her ability to bridge theoretical concepts with applicable innovations in the materials domain.

PUBLICATIONS

Zhuang Xuechen has published four journal articles in internationally recognized, SCI-indexed journals. These publications focus on her core research area of natural polymer composites and nanotechnology, indicating a consistent and targeted scholarly output. Her academic contributions aim to provide sustainable solutions in materials science, supporting advancements in both academic theory and industrial relevance. Each paper adds value to the field, and her publication record demonstrates her growing engagement with the global scientific community.

  • Preparation, characterisation and evaluation of loading paclitaxel into debranched corn starch

CONCLUSION

Dr. Zhuang Xuechen exemplifies an emerging researcher with the potential to make significant contributions to sustainable materials science. Through her work on natural polymers and nanomaterials, she offers fresh perspectives in environmental innovation. With a solid educational foundation, publication record, and ongoing research, she is well-positioned to expand her academic and scientific impact.