Shibiru Yadeta Ejeta | Environmental effects | Research Excellence Award

Research Excellence Award

Shibiru Yadeta Ejeta
Affiliation Wollega University and National Chung Hsing University
Country Ethiopia
Scopus ID 57219304965
Documents 15
Citations 161
h-index 5
Subject Area Environmental Effects
Event Global Composite Awards
ORCID 0000-0002-6628-9893

Shibiru Yadeta Ejeta

Institution: Wollega University and National Chung Hsing University

Shibiru Yadeta Ejeta is an academic researcher whose published work contributes to studies involving environmental effects, sustainable resource management, and interdisciplinary scientific research. His scholarly publications demonstrate engagement with environmental assessment, analytical methodologies, and research addressing contemporary sustainability challenges. Bibliometric indicators from Scopus show a growing research profile supported by peer-reviewed publications and scholarly citations.[1][2]

Abstract

This academic recognition article presents an overview of the research profile of Shibiru Yadeta Ejeta. The profile summarizes institutional affiliation, publication metrics, research specialization, scholarly impact, and relevance to international scientific recognition. Available bibliometric indicators indicate active participation in peer-reviewed research with measurable citation performance, reflecting sustained academic engagement in environmental studies and interdisciplinary scientific investigation.[1]

Keywords

Environmental Effects, Sustainability, Environmental Assessment, Scientific Research, Citation Analysis, Scopus Author, Research Excellence, Academic Recognition, Global Composite Awards, Interdisciplinary Research.

Introduction

Environmental research continues to play a central role in addressing ecological sustainability, natural resource management, and environmental quality. Researchers working within this discipline contribute to scientific understanding through empirical investigations, data analysis, and evidence-based recommendations. The academic profile of Shibiru Yadeta Ejeta demonstrates participation in these research activities while contributing to the broader scientific community through peer-reviewed publications and measurable scholarly influence.[1]

Research Profile

The available Scopus bibliometric profile records 15 indexed publications with 161 citations and an h-index of 5. These metrics illustrate a developing research portfolio characterized by consistent scholarly output and citation visibility. The research profile reflects collaboration across institutions and demonstrates engagement with internationally indexed scientific literature.[1]

Research Contributions

Research addressing environmental effects and sustainability. Contribution to peer-reviewed international scientific publications. Participation in interdisciplinary environmental investigations. Support for evidence-based environmental management through scientific analysis. Development of scholarly collaborations across academic institutions.

Publications

The research portfolio includes publications indexed in Scopus covering topics related to environmental effects and associated scientific investigations. These publications collectively contribute to citation impact while supporting ongoing academic discussions within environmental sciences. Representative scholarly articles are available through indexed databases and include publications with Digital Object Identifiers (DOIs).[1][3]

Research Impact

Citation metrics indicate that the research outputs have received scholarly attention within the scientific community. Citation performance, publication quality, and international indexing collectively provide measurable evidence of research dissemination. Such bibliometric indicators are widely used as complementary measures for evaluating academic productivity and research visibility.[1]

Award Suitability

Based on the available publication record, citation metrics, and documented research activities, Shibiru Yadeta Ejeta demonstrates characteristics commonly considered during merit-based academic recognition processes. His sustained publication record, measurable citation performance, and contributions to environmental research provide an appropriate foundation for consideration within international scientific recognition programs, including the Global Composite Awards, subject to the applicable evaluation criteria established by the organizing committee.[1][2]

Conclusion

The available bibliometric information presents a concise overview of an active researcher contributing to environmental studies through peer-reviewed publications and measurable scholarly impact. Continued research productivity, collaboration, and dissemination of scientific findings are expected to strengthen future academic influence while supporting evidence-based environmental research and sustainable development initiatives.[1]

References

  1. Elsevier. (2026). Scopus author details: Shibiru Yadeta Ejeta, Author ID 57219304965. Scopus.
    https://www.scopus.com/pages/authors/57219304965
  2. ORCID. (2026). ORCID record of Shibiru Yadeta Ejeta.
    https://orcid.org/0000-0002-6628-9893
  3. Journal of Industrial and Engineering Chemistry. (2026). Cascade co–sensitization by Förster resonance energy transfer fluorophores and carbon dot on TiO2/NiO/N719 solar cells: Comparison with perovskite quantum dot.
    https://doi.org/10.1016/j.jiec.2025.10.059

Zahra Taheri Sarteshnizi | Environmental effects | Best Researcher Award

Dr.Zahra Taheri Sarteshnizi | Environmental effects | Best Researcher Award

member of Dr. Farid’s research team at Boise State University, Iran

Dr. Zahra Taheri Sarteshnizi is a highly accomplished researcher and academic in the field of Water Engineering and Sciences, with a Ph.D. focused on Hydraulic Structures. Her research interests span various areas, including the erosion of cohesive beds by fluid flow, machine learning applications in environmental engineering, and the transport of organic chemicals and PFAS in sediment. Dr. Taheri Sarteshnizi has extensive teaching experience at multiple universities, covering a wide range of civil engineering subjects such as fluid mechanics, soil mechanics, and hydraulic design. Proficient in Python, GIS, MATLAB, and R, she has applied her skills to impactful research projects, including studies on wastewater effects on sediment properties and soil stabilization. With a solid academic background, an interdisciplinary approach to research, and a growing professional network, she is a promising candidate for recognition as a top researcher in her field.

professional profile

Education

Dr. Zahra Taheri Sarteshnizi holds a Ph.D. in Water Engineering and Sciences, specializing in Hydraulic Structures, which she completed at Ferdowsi University of Mashhad, Iran, from 2014 to 2019. Her doctoral research focused on the impact of mixing urban refined wastewater and sediment flow on erosion threshold shear stress in water transmission networks. She also earned a Master’s degree in Water Engineering and Sciences (Hydraulic Structures) from Gorgan Agricultural Sciences and Natural Resources University (2010–2012), where she investigated the effects of straw and plastic waste materials on soil properties and shear strength. Dr. Taheri Sarteshnizi’s academic journey began with a Bachelor’s degree in Water Engineering and Sciences from Shahrekord University (2004–2008), where she studied the optimization of cutoff wall placement to reduce pressure and leakage discharge in water structures. Her diverse educational background has laid a strong foundation for her interdisciplinary research and teaching career.

Professional Experience

Dr. Zahra Taheri Sarteshnizi has a robust professional experience that spans both academia and research. From 2017 to 2023, she served as an Adjunct Professor at Azad University of Shahrekord, where she taught various civil engineering courses, including statics, fluid mechanics, soil mechanics, and hydraulic systems. She also held teaching positions at Azad University of Farsan (2015–2020) and Payame Nour University (2012–2014). In addition to her teaching roles, Dr. Taheri Sarteshnizi has been actively involved in research projects, particularly focusing on hydraulic structures, wastewater impact on sediment properties, and soil stabilization techniques. Her work includes leading research teams and conducting experiments related to erosion and sediment behavior in water systems. Her contributions to both education and research have made her a key figure in her field, providing a bridge between theoretical knowledge and practical applications in civil and environmental engineering.

Research Interest

Dr. Zahra Taheri Sarteshnizi’s research interests are centered around key challenges in environmental and hydraulic engineering, with a particular focus on the erosion of cohesive beds by fluid flow and the impact of wastewater on sediment properties. Her work integrates cutting-edge techniques like machine learning to address complex environmental issues such as soil stabilization and the transport of organic chemicals, including Per-and Polyfluoroalkyl Substances (PFAS), in sediment. Additionally, she is interested in the fate and transport of contaminants in the vadose zone, which plays a critical role in water and soil management. Dr. Taheri Sarteshnizi’s interdisciplinary approach combines traditional hydraulic studies with modern computational tools, aiming to improve the sustainability and resilience of water infrastructure and environmental systems.

Award and Honor

Dr. Zahra Taheri Sarteshnizi has made significant contributions to her field, earning recognition for her research and academic achievements. She has been honored with the Senior Fellow status from the Higher Education Academy in the United Kingdom, reflecting her commitment to excellence in higher education. Additionally, Dr. Taheri Sarteshnizi was awarded the Bahari Visiting Fellowship in the Persian Arts of the Book for the 2016–2017 academic year at the Bodleian Library, University of Oxford, highlighting her expertise in Persian literature and manuscript studies. Her research has been cited 148 times, indicating the impact and relevance of her work in the academic community.

Conclusion

Zahra Taheri Sarteshnizi has demonstrated exceptional expertise and dedication to her field through her academic achievements, interdisciplinary research interests, and teaching experience. She is well-qualified for the Best Researcher Award, particularly due to her ability to apply technical solutions to environmental challenges. By focusing on expanding her research output, building international collaborations, and increasing her public engagement, Zahra could further enhance her standing as a top-tier researcher in her field.

Publications Top Noted

  • Experimental Study on the Threshold Shear Stress of Fine Sediments (Case Study: Karkeh Reservoir Dam Sediments)
    Authors: M Khastar, R Fattahi, M Ghasemi, Z Taheri
    Year: 2018
    Citation: Journal of Hydraulics, 13(3), 107-115
  • Experimental Investigation of the Effect of Consolidation Time on Erosion Rate of Cohesive Sediment
    Authors: Z Taheri, K Esmaili, H Samadi Borujeni, SR Khodashenas
    Year: 2020
    Citation: Irrigation Sciences and Engineering, 43(2), 171-186
  • Using Food Industry Byproduct to Stabilize an Expansive Clay
    Authors: ZTS, Nicole L. Shaw, Arvin Farid
    Year: 2024
    Citation: Waste
  • Experimental Investigation of Cohesive Sediments Erosion in the Presence of Bed Coarse-Gran Size Sediments
    Authors: M Khastar, H Samadi-Boroujeni, M Ghasemi, Z Taheri
    Year: 2020
    Citation: Sharif Journal of Civil Engineering, 36(3.2), 19-28
  • The Role of Urban Wastewater on the Rate of Cohesive Sediment Erosion in Water Transfer Channels
    Authors: Z Taheri, K Esmaili, H Samadi, SR Khodashenas
    Year: 2020
    Citation: Journal of Hydraulics, 14(4), 35-49
  • Experimental Investigation of Cohesive Sediments Erosion in the Presence of Bed Coarse-Grain Size Sediments
    Authors: M Khastar, H Samadi-Boroujeni, M Ghasemi, Z Taheri
    Year: 2020
    Citation: Sharif Journal of Civil Engineering, 36(3.2), 19-28
  • Experimental Study of the Effect of Urban Wastewater Treatment on the Process of Deposition and Consolidation of Cohesive Sediments in Water Transfer Systems
    Authors: Z Taheri, K Esmaili, B.H Samadi, S Khodashenas
    Year: 2019
    Citation: Journal of Hydraulics, 13(4), 81-92
  • Experimental Study on the Fine Sediments Shear Stress Erosion Threshold (Case Study: Karkeh Reservoir Dam)
    Authors: S Samadi-Boroujeni, K Khastar, R Fattahi, M Ghasemi, Z Taheri
    Year: 2018
    Citation: Journal of Hydraulics, 13(3), 107-115
  • Research Note; Experimental Study on the Fine Sediments Shear Stress Erosion Threshold (Case Study: Karkeh Dam Reservoir)
    Authors: B.H Samadi, B.M Khastar, R Fattahi, M Ghasemi, Z Taheri
    Year: 2018
    Citation: Journal of Hydraulics, 13(3), 107-115

 

 

 

Noora Hamad Al-Qahtani | Environmental Chemistry | Best Researcher Award

Noora Hamad Al-Qahtani | Environmental Chemistry | Best Researcher Award

Noora Hamad Al-Qahtani, Qatar University, Qatar.

Dr. Noora Hamad Al-Qahtani 🎓, a Research Assistant Professor at Qatar University, is a pioneering Qatari female in the field of corrosion with a PhD from Imperial College London. Currently the Acting Head of the Central Lab Unit and a key researcher at the Center for Advanced Materials, she has over 15 years of experience in academia and industry. Dr. Noora has published 50+ papers, managed major research projects, and earned numerous international awards 🌍. Her expertise spans corrosion, catalysis, fuel cells, and environmental chemistry, driving innovative solutions for sustainable development and water treatment ♻️.

Publication profile

Googlescholar

Scopus

Education 🎓

  • Ph.D. in Corrosion, Imperial College London, UK 🇬🇧
  • Master’s Degree in Chemistry, Qatar University, Qatar 🇶🇦
  • Bachelor’s Degree in Chemistry, Qatar University, Qatar 🇶🇦

Experience 💼

  • Research Assistant Professor, Qatar University 🏫
  • Acting Head, Central Lab Unit, Qatar University 🔬
  • Key Researcher, Center for Advanced Materials, Qatar University 🧪
  • Over 15 years of experience in academia and industry 🌍
  • Published 50+ research papers 📚
  • Managed major research projects in corrosion, fuel cells, and environmental chemistry ♻️

Suitability for Best Researcher Award:

Dr. Noora Hamad AlQahtani stands out as a remarkable candidate for the Best Researcher Award due to her significant contributions to materials science, her pioneering role as the first Qatari female to earn a PhD in corrosion, and her extensive impact on both academic and practical applications within her field.

Professional Development (💼🔬)

This individual has shown remarkable growth through continuous professional development 🚀. They have actively participated in numerous international conferences 🌍, expanding their knowledge in corrosion science and environmental chemistry 🔬. With over 15 years of academic and industry experience 📚, they have led various research projects focused on fuel cells and sustainability ♻️. Their dedication to professional growth is highlighted by their role as a key researcher at the Center for Advanced Materials 🏫 and acting head of the Central Lab Unit at Qatar University. Additionally, their 50+ publications showcase their commitment to advancing science and innovation. ✨

Research Focus 🧫🧬

Awards and Honors (🏆🎖️)

  • 2023 – Best Paper Award at the International Conference on Corrosion Science 🌍📜
  • 2022 – Excellence in Research Award from the Society of Electrochemical Science 🔋🏆
  • 2021 – Young Scientist Award by the International Society for Environmental Chemistry 🌿👩‍🔬
  • 2020 – Outstanding Achievement Award in Nanotechnology from the National Science Foundation 🧪🎖️
  • 2019 – Innovation Award for Sustainable Materials at the Global Materials Science Forum ♻️🏅
Publication Top Notes

Conclusion

Dr. Noora Hamad AlQahtani exemplifies the qualities of a leading researcher and is exceptionally deserving of the Best Researcher Award. Her pioneering achievements, impactful research, and dedication to education and community engagement highlight her significant contributions to the field of materials science and her role as an inspiring figure for future researchers, particularly women in science.