Jiayi Li | Environmental Science | Innovative Research Award

Innovative Research Award

Jiayi Li
Nanjing Forestry University

Jiayi Li
Affiliation Nanjing Forestry University
Country China
Scopus ID 57195244024
Documents 41
Citations 1,245
h-index 15
Subject Area Environmental Science
Event International Invention Awards

Jiayi Li is affiliated with Nanjing Forestry University and is associated with research in Environmental Science. The supplied bibliometric profile reports 41 documents, 1,245 citations, and an h-index of 15. These indicators provide quantitative context for the researcher’s indexed scholarly record, while publication content and individual research contributions require separate assessment [1].

Abstract

Jiayi Li is a researcher affiliated with Nanjing Forestry University, China, whose indexed scholarly profile is associated with Environmental Science. The supplied Scopus information reports 41 documents, 1,245 citations, and an h-index of 15. These bibliometric indicators provide a quantitative description of publication activity and citation visibility but do not independently establish research quality, originality, or significance. This article presents a structured academic profile of the researcher, covering research context, contributions, publication activity, scholarly impact, and considerations relevant to the Innovative Research Award. The profile is intended as a descriptive recognition article based on available bibliographic information.

Keywords

Jiayi Li; Innovative Research Award; Nanjing Forestry University; Environmental Science; scholarly research; bibliometrics; publications; citations; h-index; research impact; scientific contribution; academic recognition; environmental research; innovation.

Introduction

Academic research profiles can be examined through a combination of bibliographic records, publication evidence, citation indicators, institutional affiliation, and documented research contributions. Jiayi Li is identified with Nanjing Forestry University in China and the Environmental Science subject area. The supplied Scopus record provides a basis for describing the researcher’s indexed scholarly activity and citation profile [1].

Research Profile

The supplied profile identifies Jiayi Li with Nanjing Forestry University and associates the researcher with Environmental Science. The Scopus Author ID is 57195244024, with 41 reported documents, 1,245 citations, and an h-index of 15. These values represent bibliometric indicators of indexed scholarly activity and citation reach and should be interpreted in relation to disciplinary norms, publication history, and research context [1].

Research Contributions

Research within Environmental Science can address environmental processes, ecological systems, natural resources, sustainability, pollution, conservation, and related scientific questions. The supplied information establishes the researcher’s subject-area classification but does not provide sufficient publication-level evidence to attribute particular discoveries or methodologies. Specific contributions should therefore be determined from the underlying publications, research findings, and documented scholarly outputs [1].

Publications

The supplied Scopus profile reports 41 documents associated with Jiayi Li. Publication-level information such as article titles, journals, publication dates, co-authors, and individual DOI identifiers should be verified through the researcher’s indexed author record before being attributed to the researcher. The Scopus profile provides the appropriate starting point for reviewing the indexed publication record [1].

Research Impact

The reported citation count of 1,245 and h-index of 15 provide quantitative information concerning citation activity within the supplied indexed record. Bibliometric indicators can support descriptions of scholarly visibility, although they should not be interpreted independently of disciplinary context, career stage, collaboration, publication characteristics, and the underlying research outputs. The Leiden Manifesto recommends contextual and responsible use of research metrics [2].

Award Suitability

The available profile provides several forms of information relevant to consideration for an Innovative Research Award, including institutional affiliation, subject area, publication count, citation count, and h-index. These indicators may form part of a broader academic review. A complete award assessment should also consider originality, research methodology, documented innovation, publication quality, practical or scientific contribution, and evidence supplied according to the applicable award requirements [3].

Conclusion

Jiayi Li is identified as an Environmental Science researcher affiliated with Nanjing Forestry University, China. The supplied bibliometric record reports 41 documents, 1,245 citations, and an h-index of 15. These indicators provide a concise quantitative description of the researcher’s indexed scholarly activity. Further academic evaluation should combine bibliometric information with publication-level evidence, documented research contributions, and the criteria established for the Innovative Research Award [1].

References

  1. Elsevier. (n.d.). Scopus author details: Jiayi Li, Author ID 57195244024. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57195244024
  2. Journal article (2026. )Spatial Patterns and Driving Mechanisms of Heritage Resources on Purple Mountain, Nanjing, China, from a Human–Land Coupling Perspective.
    https://doi.org/10.3390/heritage9090366
  3. International Invention Awards. (2026.). International Invention Awards official website.
    https://inventionawards.org/

Sergey Glazyrin | Waste Disposal | Best Researcher Award

 

Assistant Professor Dr. Sergey Glazyrin | Waste Disposal | Best Researcher Award 

Assist. Prof. Dr. Sergey Glazyrin | NAO "Eurasian National University named after L.N. Gumileva" | Kazakhstan

Assistant Professor Dr. Sergey Glazyrin is a distinguished scholar and expert in industrial heat power engineering, energy efficiency, and environmental technologies. He holds dual Bachelor’s degrees in Industrial Heat Power from S. Toraigyrov Pavlodar State University and in Finance and Credit from the Institute of Modern Business, Moscow, along with a Ph.D. (Candidate of Technical Sciences, 2004) in Industrial Heat Power. Over his extensive career, Dr. Glazyrin has combined academic excellence with industrial innovation, serving in key academic roles including Associate Professor and Head of the Department of Heat Power Engineering at both L.N. Gumilyov Eurasian National University and S. Toraigyrov Pavlodar State University. He has led numerous national and international projects focused on heat power systems, renewable energy integration, wastewater reuse, and emission reduction technologies. His applied research has contributed to energy strategies and environmental sustainability in Kazakhstan, including projects under Samruk-Energo, Kazakhmys Energy LLP, and Eurasian Energy Corporation JSC. Dr. Glazyrin is also an active technical expert for Kazakhstan’s Science Fund and International Center for Green Technologies, providing high-level evaluations of energy efficiency initiatives. His research has resulted in over 45 scientific publications, accumulating more than 420 citations and an h-index of 11, reflecting his impact in the fields of thermal energy systems, environmental protection, and power plant optimization. His achievements also include innovative patents, development of national building and energy regulations, and leadership in technology commercialization and dual education programs. Currently, he serves as Associate Professor at Kazan State Power Engineering University, Technical Manager at ECO AIR LLP, and Leading Researcher at L.N. Gumilyov Eurasian National University, continuing to advance energy and environmental innovations across Central Asia and Russia.

Profiles: Scopus | Orcid 

Featured Publications

Glazyrin, S. A., Kopishev, E. E., Zhumagulov, M. G., Bimurzina, Z. A., & Aibuldinov, Y. K. (2025). Analysis of the efficiency and environmental impact of municipal solid waste incineration as a tool for sustainability development in Kazakhstan. Sustainability, 17(18), 8696.

Varlamov, G. B., Glazyrin, S. A., Khamzina, A., Bimurzina, Z. A., & Zhakiyev, N. (2024). Hydrogen energy for advancing energy efficiency and environmental friendliness of the heat supply system of residential house. Sustainable Energy Technologies and Assessments, 64, 103689.

Glazyrin, S. A., Aibuldinov, Y. K., Kopishev, E. E., Zhumagulov, M. G., & Bimurzina, Z. A. (2024). Analysis of the composition and properties of municipal solid waste from various cities in Kazakhstan. Energies, 17(24), 6426.

Glazyrin, S. A., Zhumagulov, M. G., Aydimbaeva, Z. A., & Dostiyarov, A. M. (2020). Universal installation for the integrated utilization of flue gases and wastewater from thermal power plants. E3S Web of Conferences, 178, 01062.

Hanin Othman | Environmental Science and Smart Technology | Young Researcher Award 

Ms. Hanin Othman | Environmental Science and Smart Technology | Young Researcher Award 

Ms. Hanin Othman | Pennsylvania State University | United States

Author Profiles

Scopus

Orcid

Google Scholar

Early Academic Pursuits

Ms. Hanin Othman began her academic journey with a strong foundation in architecture and design. She earned her Bachelor of Science in Architectural Engineering from The Hashemite University, Jordan in 2014, where she graduated among the top students in her class and received multiple honors, including the Best Graduation Project Award. Her academic excellence continued through her Master of Science in Architectural Engineering from The University of Jordan in 2019, where her thesis publication earned the Best Master Thesis Published Paper Award. Building upon these achievements, she is currently pursuing a Ph.D. in Architecture (Sustainability) at Pennsylvania State University, USA. Her educational path reflects a consistent dedication to research and innovation at the intersection of environmental science and smart technology.

Professional Endeavors

Ms. Othman’s professional journey is marked by her deep involvement in academia, research, and creative technology. At Penn State University, she serves as a Graduate Teaching Assistant, instructing courses such as Basic Design and Research and Sustainable Architecture I & II. She is also the Artist and Maker in Residence at the Learning Factory, where she designs and leads workshops on low-cost IoT-based environmental monitoring systems using Arduino. Her earlier professional experience includes working as an Architect and Design Studio Supervisor at The Hashemite University, and as an Architect at Ruba Hosuah for Engineering. These roles allowed her to integrate sustainability principles with modern design methods, reinforcing her commitment to environmental science and smart technology.

Contributions and Research Focus

Ms. Hanin Othman’s research lies at the dynamic intersection of environmental science and smart technology, with a particular focus on sustainability, digital fabrication, and sensing technologies in architecture. Her doctoral research emphasizes the development of IoT-based indoor air quality monitoring systems, integrating mobile platforms, robotic sensing, and data-driven optimization techniques. She also explores urban microclimates, vegetation impacts, and thermal comfort using simulation tools such as ENVI-met, Design Builder, and CFD modeling. Additionally, her work in robotic fabrication bridges computational design with traditional craftsmanship, pushing the boundaries of sustainable architectural innovation.

Impact and Influence

Ms. Othman has made a remarkable impact both as a researcher and an educator. Her innovative approach to integrating environmental science and smart technology into architecture has influenced sustainable design practices and academic pedagogy. She has been recognized through numerous awards, including the ICDS Rising Researcher Award (2025–2026), Fox Scholar Award (2025), Sustainability Graduate Student Award Nomination (2024–2025), and the Artists and Makers in Residence Program (2024–2025). Her teaching contributions at Penn State University have inspired many students to embrace interdisciplinary and environmentally responsive design approaches.

Academic Cites

Ms. Othman’s research contributions have been featured in conferences, workshops, and institutional publications, reflecting the growing academic acknowledgment of her work. Her studies in environmental science and smart technology have attracted attention for their real-world applicability and technological innovation. Through her participation in Penn State’s Institute for Computational and Data Sciences (ICDS) and Hamer Center for Community Design, she has collaborated on projects that integrate digital twins, IoT networks, and data-driven environmental monitoring   all contributing to the broader academic discourse on sustainable and smart architectural systems.

Legacy and Future Contributions

Looking forward, Ms. Hanin Othman’s legacy will be defined by her contributions to sustainable architectural research and the advancement of environmental science and smart technology. Her ongoing projects, such as TwinSight: A Data-Driven Digital Twin Framework for Human-Centric Health Monitoring, highlight her vision for human-centered, data-driven, and equitable environmental design. As she continues to mentor students and collaborate across disciplines, her influence will extend to shaping the next generation of architects and environmental technologists. Her long-term goal is to pioneer scalable, low-cost sensing and smart systems that redefine sustainability in architecture.

Environmental Science and Smart Technology

Ms. Hanin Othman’s research integrates Environmental Science and Smart Technology through IoT-based sensing systems, robotic fabrication, and data-driven environmental design. Her interdisciplinary approach to Environmental Science and Smart Technology bridges architecture, engineering, and sustainability, redefining how design responds to ecological and technological challenges. The future of Environmental Science and Smart Technology continues to evolve through her innovative contributions, academic leadership, and commitment to global sustainable development.

Featured Publications

Othman, H., & Alshboul, A. A. (2020). The role of urban morphology on outdoor thermal comfort: The case of Al-Sharq City–Az Zarqa. Urban Climate, 34, 100706.

Othman, H., Azari, R., & Guimarães, T. (2024). Low-cost IoT-based indoor air quality monitoring. Technology|Architecture + Design, 8(2: Coding), 250–270.

Othman, H., Sieves, G., Guimarães, T., & Azari, R. (2025). A calibration chamber framework for low-cost indoor air quality sensor validation. Building and Environment, 113856.

Othman, H., Sieves, G., Guimaraes, T., & Azari, R. (2024). Development of a calibration chamber to evaluate the performance of a low-cost IAQ sensing device. In SIGraDi 2024 - Biodigital Intelligent Systems Conference 1.

Othman, H., & Azari, R. (2023). Exploring low-cost sensors for indoor air quality (IAQ) monitoring: A review of stationary and mobile sensing systems. In Proceedings of the 11th International Conference of the Arab Society 

Imam, C. A., Othman, H. A. S., & Çapunaman, Ö. B. (2023). Robotic plaster carving: Formalizing subtractive detailing of plaster surfaces for construction and crafts. In 41st Conference on Education and Research in Computer Aided Architectural