Omnia M.Salem | wastewater treatment | Best Researcher Award

Best Researcher Award

               Omnia M.Salem
Researcher Omnia M. Salem
Affiliation Beni-Suef University
Country Egypt
Scopus ID 57784705200
Documents 7
Citations 79
h-index 4
Subject Area Wastewater Treatment
Event International Material Scientist Awards

Omnia M. Salem is affiliated with Beni-Suef University, Egypt, and has established a research profile in wastewater treatment and environmental materials. According to the Scopus database, the researcher has published seven indexed documents, received seventy-nine citations, and achieved an h-index of four. The published work primarily addresses sustainable water purification technologies and environmental remediation, contributing to developments in material science and wastewater management.[1]

Abstract

Omnia M. Salem has developed an academic research profile centered on wastewater treatment, environmental remediation, and sustainable material applications. Her Scopus-indexed publications demonstrate continued interest in improving water quality through innovative treatment technologies and environmentally responsible engineering approaches. Citation metrics indicate measurable scholarly influence within her research specialization. Her work supports scientific understanding of pollution control, resource recovery, and efficient treatment systems while encouraging interdisciplinary collaboration among environmental scientists, engineers, and material researchers. These contributions reflect active participation in addressing global environmental challenges through evidence-based scientific investigation and practical technological advancement.[1]

Keywords

Wastewater Treatment, Environmental Engineering, Water Purification, Adsorption, Material Science, Environmental Remediation, Sustainable Materials, Water Quality, Pollution Control, Environmental Technology, Nanomaterials, Water Reuse.[2]

Introduction

Wastewater treatment research plays an essential role in protecting water resources and supporting sustainable environmental management. Omnia M. Salem has contributed to this field through investigations focused on treatment efficiency, environmental protection, and material-based purification technologies that address contemporary environmental concerns.[1]

Research Profile

The research profile demonstrates experience in wastewater treatment and environmental materials, supported by seven Scopus-indexed publications, seventy-nine citations, and an h-index of four. The published studies indicate consistent academic activity within environmental science and material-based treatment technologies.[3]

Research Contributions

Research contributions include investigations into wastewater purification methods, environmentally sustainable treatment processes, and material applications that improve contaminant removal efficiency. These studies contribute to advancing scientific knowledge supporting cleaner water resources and environmentally responsible engineering practices.[4]

Publications

The Scopus publication record consists of peer-reviewed research papers focusing on wastewater treatment technologies and environmental materials. These publications collectively demonstrate continued scholarly engagement and provide measurable evidence of research productivity within the environmental materials discipline.[1]

Research Impact

Citation performance reflects academic recognition of the published work within the scientific community. The citation count and h-index indicate that the research has contributed to ongoing investigations involving wastewater treatment, environmental sustainability, and material science applications.[2]

Award Suitability

Based on available scholarly indicators, Omnia M. Salem demonstrates qualifications relevant to recognition by the International Material Scientist Awards. Research productivity, measurable citation impact, and sustained contributions to wastewater treatment and environmental materials collectively support consideration for academic recognition.[3]

Conclusion

Omnia M. Salem has established a developing research profile through work addressing wastewater treatment and sustainable environmental materials. Available publication metrics and citation indicators reflect meaningful scholarly participation, supporting continued academic development and recognition within environmental and material science research communities.[4]

References

  1. Elsevier. (n.d.). Scopus author details: Omnia M. Salem, Author ID 57784705200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57784705200
  2. International Material Scientist Awards. (n.d.).
    https://materialscientists.com
  3. Salem, O. M., Abdel Khalek, A., & Mohamed, F. (2026). Green synthesis of metal vanadates coupled with simulation modelling for boosting photoelectrochemical water splitting. International Journal of Hydrogen Energy, 254, 156243.
    https://doi.org/10.1016/j.ijhydene.2026.156243
  4. Salem, O. M., Abdel Khalek, A., & Mohamed, F. (2024). Novel biocomposites based on carbon xerogel derived from tannin for improved cobalt (II) adsorption: Practical and theoretical approaches. Diamond and Related Materials, 147, 111302
    . https://doi.org/10.1016/j.diamond.2024.111302

 

Mr A S M Riyad | Recycling and Circular Economy in Materials | Best Researcher Award

Mr A S M Riyad | Recycling and Circular Economy in Materials | Best Researcher Award

Mr. A S M Riyad is a passionate and accomplished researcher in Geotechnical and Geo-Environmental Engineering 🌍🧱. Currently pursuing a Ph.D. at the University of Technology Sydney (UTS), Australia, he has consistently demonstrated excellence in academic research and collaboration 🌐📚. His dedication to sustainable construction practices, especially through the reuse of waste materials, marks his commitment to eco-conscious engineering 🔄🏗️. With a strong academic foundation, numerous publications, and teaching experience, Mr. Riyad is recognized for his critical thinking, innovation, and integrity in the civil engineering community 🧠🌟.

Mr A S M Riyad, University of Technology Sydney, Australia

Profile

SCOPUS

GOOGLESCHOLAR

ORCID

🎓 Education

Mr. Riyad’s educational journey showcases a strong and continuous focus on civil engineering 📘🛠️. He began with a B.Sc. in Civil Engineering (2010–2014) and continued with a M.Sc. in Civil Engineering (2015–2018), both from Khulna University of Engineering & Technology (KUET), Bangladesh 🎓🇧🇩. He is currently pursuing his Ph.D. in Geotechnical Engineering at the University of Technology Sydney (UTS), Australia 🇦🇺🎓. His academic pathway reflects a consistent pursuit of advanced knowledge, complemented by his research in waste material reuse and foundation engineering 🔍🏗️.

👨‍🏫 Experience

Mr. Riyad has been serving as a faculty member in the Department of Civil Engineering at KUET since 2015 👨‍🏫🇧🇩. His experience includes teaching undergraduate courses, curriculum planning, academic advising, and active participation in examination committees 📑📊. Alongside teaching, he works as a consultant engineer at Consultancy, Research & Testing Services (CTRS), KUET, where he contributes to material testing, soil exploration, infrastructure design, and civil works implementation 🏗️📐. His multifaceted role reflects a rare blend of research, teaching, and real-world engineering solutions 🔬🛠️.

🔬 Research Focus

Mr. Riyad’s research centers on Geotechnical Engineering, particularly the reuse of waste materials for sustainable infrastructure development ♻️🏗️. His work involves laboratory testing, material modeling, and soil behavior analysis under various stabilization techniques 🧪📊. Through his Ph.D. and ongoing studies, he focuses on developing eco-friendly, cost-effective, and structurally reliable alternatives to conventional construction practices 🌱🧱. His interdisciplinary approach integrates civil, environmental, and material sciences, contributing to modern challenges in urban development and waste management 🌐💡.

📚 Publications

Compressive Behavior of Reconstituted Soils at High Initial Water Content: Case Study on South-Western Region of Bangladesh
✍️ Authors: ASM Riyad, IM Rafizul, R Kadir
📚 Journal: Journal of Engineering Science, Vol. 14(1), pp. 1–9
📅 Year: 2023
🌍 Theme: Soil mechanics, geotechnical engineering

Sustainable Management Scheme for Household & Academic Institutional Solid Waste Generation: A Case Study in Khulna Metropolitan City
✍️ Author: ASM Riyad
📚 Journal: International Journal of Renewable Energy and Environmental Engineering, Vol. 3
📅 Year: 2015
🏙️ Theme: Urban sustainability, waste management

Numerical Modelling of Anchor Foundation in Dense Sand
✍️ Authors: ASM Riyad, M Rokonuzzaman
📚 Journal/Conference: 4th International Conference on Civil Engineering for Sustainable Development, KUET
📅 Year: 2018
🧮 Theme: Numerical modeling, foundation engineering

Characterization of Leachate Generated from Landfill Lysimeter: Effects of Clay Liner and Solid Waste Composition
✍️ Authors: F Alam, ASM Riyad, M Alamgir
📚 Conference: 15th International Waste Management and Landfill Symposium – Sardinia
📅 Year: 2015
🗑️ Theme: Environmental engineering, landfill management

An Extended Perspective on the Disturbed State Concept for Rubber–Mixed Waste Material Considering Modulus Degradation under Cyclic Loading
✍️ Authors: ASM Riyad, B Indraratna, CK Arachchige, Y Qi, H Khabbaz
📚 Journal: International Journal of Geomechanics, Vol. 25(5), Article 06025002
📅 Year: 2025
🔁 Theme: Soil behavior, recycled materials, cyclic loading

Constitutive Behaviour of Recycled Rubber-Involved Mixtures for Transportation Infrastructure
✍️ Authors: Y Qi, K Wijesooriya, B Indraratna, ASM Riyad
📚 Journal: Sustainability, Vol. 17(9), Article 3956
📅 Year: 2025
🚧 Theme: Sustainable infrastructure, material innovation

Ms Mingfang Ba | Resource utilization of solid waste | Best Researcher Award

Ms Mingfang Ba | Resource utilization of solid waste | Best Researcher Award

Ms. Mingfang Ba is a renowned professor at Ningbo University, China, specializing in civil engineering and environmental sciences. With over a decade of experience, she excels in sustainable material engineering, focusing on cement durability, green energy conservation, and solid waste utilization. Her groundbreaking work includes magnesium sulfate cement development and green concrete innovations. A prolific researcher, she has published 30+ SCI-indexed articles and holds three patents for eco-friendly materials. Ms. Ba’s expertise extends to consulting on green building standards, making her a trailblazer in sustainable civil engineering. Her dedication to research and society exemplifies academic excellence. 🌿🔬

Ms Mingfang Ba, Ningbo University, China

Profile

SCOPUS

Education🎓📖

Ms. Mingfang Ba holds a strong academic foundation in civil engineering and environmental sciences. She earned her Ph.D. in Civil Engineering from Zhejiang University, China, where she specialized in sustainable building materials and green construction practices. Her academic journey also includes a Master’s degree in Environmental Engineering and a Bachelor’s degree in Civil Engineering, both completed with distinction. These qualifications underpin her expertise in cement material durability, green energy conservation, and waste utilization. Her educational background has equipped her with the knowledge to drive innovation in sustainable engineering and environmental stewardship. 🌍🏗️

Experience 🌍📚

Ms. Mingfang Ba has a progressive academic career at Ningbo University, China, spanning over a decade. Since 2019, she has served as a Professor, leading research, teaching, and academic initiatives in civil and environmental engineering. From 2013 to 2019, as an Associate Professor, she conducted advanced research, mentored graduate students, and drove academic growth. Earlier, as a Lecturer (2011–2013), she excelled in delivering undergraduate courses and contributing to departmental projects. Her expertise in sustainable engineering, academic leadership, and innovative research solidifies her as a key figure in civil engineering and environmental sciences. 🌿🔬📖

Research and Innovations 🔬🏗️

Ms. Mingfang Ba’s research focuses on sustainable materials and green engineering. Her completed and ongoing projects include studies on magnesium sulfate cement durability, carbonation effects, and green high-strength concrete from municipal waste. Funded by prestigious organizations like the National Natural Science Foundation of China and Zhejiang Provincial Foundation, her work integrates solid waste recycling into high-performance construction materials. She has pioneered technologies for ceramic aggregates and sea sand quality standards. Her efforts bridge environmental sustainability with innovative engineering solutions, advancing green practices in civil engineering. 🌍♻️📖

Research Focus 🌱

Ms. Mingfang Ba’s research is centered on sustainable construction materials and green engineering. Her key areas of focus include the long-term durability of cement-based materials, energy conservation in green buildings, and the resource utilization of solid waste. She has made remarkable contributions to cement material modification, enhancing reactivity, and understanding the hydration and hardening mechanisms of cement. Her work also emphasizes improving the durability of cement concrete products, paving the way for eco-friendly and sustainable engineering practices. Her research addresses critical environmental challenges while advancing innovation in construction materials. 🌍♻️🔧

Publications 📚

📄 Title: Performance and ecological assessment of eco-friendly high-strength cementitious matrix incorporating pottery sand derived from heavy metal sludge
👩‍🔬 Authors: Ma, H., Shi, Q., Wang, L., Shen, L., Ba, M.
📚 Journal: Case Studies in Construction Materials

📄 Title: Effects of secondary aluminum ash sintered ground powder on properties of calcium sulfoaluminate cement-based grouting materials
👩‍🔬 Authors: Ba, M., Xie, J., Ma, X., Lin, R., Shen, Y.
📚 Journal: Construction and Building Materials

📄 Title: Properties of alkali activated materials prepared with secondary aluminum ash sintered powder
👩‍🔬 Authors: Ma, Z., Ma, H., Chen, Y., Ba, M., Shao, N.
📚 Journal: Construction and Building Materials

📄 Title: Effect of Pre-Wetting Heavy Metal Sludge Sintered Pottery Sand on Performance of Ultra-High Strength Concrete
👩‍🔬 Authors: Wang, S., Ma, H., Ji, L., Ba, M., Shao, N.
📚 Journal: Bulletin of the Chinese Ceramic Society

📄 Title: Effects of heavy metal sludge sintered and ground powder on properties of modified magnesium oxysulfate (MMOS) cementitious materials
👩‍🔬 Authors: Shen, Y., Xu, Z., Fang, S., Ba, M., Zhang, Y.
📚 Journal: Case Studies in Construction Materials

📄 Title: Activation and mechanism of pulverized surface treatment sludge
👩‍🔬 Authors: Cheng, W., Gao, Q., Zhang, Y., Ba, M., Chu, H.
📚 Journal: Tumu yu Huanjing Gongcheng Xuebao/Journal of Civil and Environmental Engineering