Amal Zaher | Environmental Science | Best Researcher Award

Amal Zaher | Environmental Science | Best Researcher Award

Assoc. Prof. Dr Amal Zaher, Beni-suef University, Egypt

Assoc. Prof. Dr. Amal Zaher Shehata is an accomplished academic and researcher in Environmental and Chemical Engineering, affiliated with the Faculty of Postgraduate Studies for Advanced Sciences (PSAS), Beni-Suef University, Egypt. With a strong foundation in chemical engineering, she has led transformative research on wastewater treatment, nanomaterials, and environmental sustainability. Dr. Zaher has authored numerous impactful publications in high-ranking journals, particularly focusing on advanced oxidation processes, layered double hydroxides, and photocatalysis. She has supervised 16 postgraduate theses (14 M.Sc. and 2 Ph.D.), contributed to funded national and international research projects, and actively participates in quality assurance and curriculum development. In addition to her academic duties, she serves as Director of the Training Committee at PSAS and is a reviewer for respected journals such as RSC and Fuel. Her research contributions and dedication to environmental advancement make her a distinguished candidate for the Best Researcher Award.

Publication Profile

Scopus

Education

Dr. Amal Zaher holds a B.Sc. Honors (2000), M.Sc. (2006), and Ph.D. (2012) in Chemical Engineering from the Faculty of Engineering, Minia University, Egypt. Her master’s thesis focused on “A New Technology for Treatment of Oil-Polluted Wastewater,” while her doctoral research, titled “Advanced Process for Oily Water Treatment: Statistical Optimization,” advanced the field of environmental process engineering through data-driven techniques. Her academic journey reflects deep expertise in water and wastewater treatment, catalysis, and nanotechnology. She has since expanded her specialization to include interdisciplinary applications in environmental science, particularly within industrial and sustainable development contexts. Her strong academic background underpins her effective teaching, supervision, and pioneering research efforts at Beni-Suef University.

Experience

Dr. Zaher began her career as a freelance engineer (2000–2002) and later served as a safety and occupational health specialist (2002–2016) at the Ministry of Manpower and Immigration, Minia, Egypt. In academia, she served as Assistant Professor (2013–2022) and was promoted to Associate Professor in 2022 at the Environmental Science and Industrial Development Department, PSAS Faculty, Beni-Suef University. She also directed the faculty’s Training Unit (2016–2018) and currently leads the Training Committee. Dr. Zaher has taught various undergraduate and postgraduate courses, including Biogas Technology, Environmental Management Systems, Green Chemistry, and Clean Water Technology. Her leadership extends to academic program development, quality assurance, and supervision of graduate students. With over two decades of diverse professional experience, she effectively bridges the gap between engineering practice and academic innovation.

Awards and Honors

Dr. Amal Zaher has received recognition as a dedicated researcher and academic leader. Her H-index of 10 and 355+ citations (as of May 2025, Scopus ID: 8922238500) reflect her research influence in environmental nanotechnology and water treatment. She is a peer reviewer for internationally acclaimed journals, including RSC and Fuel, and has contributed to global conferences and symposia, both as an attendee and organizer. Notably, she has coordinated institutional programs on occupational safety and environmental sustainability, reinforcing her impact in academic development. She is also an active member of the Arab Federation for Specialized Women and the Institute for Engineering Research and Publication. Her participation in funded research projects, including international collaborations with institutions in the USA, highlights her global research footprint and scholarly contributions deserving of the Best Researcher Award.

Research Focus

Dr. Zaher’s research centers on sustainable environmental technologies, with a focus on advanced water and wastewater treatment methods. Her core expertise includes photocatalysis, electrocatalysis, nanomaterials (e.g., LDH, MOFs), and adsorption techniques for removing pharmaceuticals, dyes, and heavy metals. She applies experimental and computational techniques to optimize processes for treating oily wastewater and enhancing solar desalination systems. Dr. Zaher also explores the reuse and recycling of nanomaterials in water purification, with attention to green synthesis approaches. Her interdisciplinary work integrates chemical engineering, environmental science, and material chemistry to create scalable, eco-friendly solutions to water pollution. Ongoing collaborations and publications on nanostructures and electrochemical sensing technologies further underscore her commitment to environmental innovation and sustainable development.

Publication Top Notes

  1. 2006Using Advanced Oxidation Process for Oily Water Clean-Up, National Conference, Las Vegas, USA.

  2. 2012Optimization of a Simulated Photo-Fenton Process, 9th International Conference on Modeling Simulation and Visualization Methods.

  3. Influences of tungsten incorporation… toward urea elimination, International Journal of Hydrogen Energy, 45(15), 8082-8093.

  4. Zn/Fe LDH as a clay-like adsorbent for oxytetracycline removal, Environmental Science and Pollution Research, 27(11), 12256-12269.

  5. Photocatalytic Degradation of Phenol Wastewater, Egyptian Journal of Chemistry, 63(11), 4439-4445.

  6. Tungsten incorporation in nickel doped carbon nanofibers…, Fuel, 280, 118654.

  7. La-doped Zn-Fe LDH for tetracycline adsorption, Journal of Molecular Liquids, 322, 114546.

  8. LDH Nanocubes Synthesized with Zeolite Templates, Nanomaterials, 11(12), 3315.

  9. Zn–Fe LDH nanostructures for dye removal, Scientific Reports, 11(1).

  10. Photocatalytic degradation with ZnO nanoparticles, Journal of International Society for Science and Engineering.

  11. Recycling of Zn–Al LDH after levofloxacin adsorption, RSC Advances, 10(46), 27633-27651.

  12. Enhanced Solar Desalination Units, Conference Proceedings.

  13. Book Chapter (2024)Nanomaterials for Electrochemical Sensing of Heavy Metals, Springer.

  14. Book Chapter (2025)Nanofibres for Medical Applications, Elsevier.

Conclusion

Assoc. Prof. Dr. Amal Zaher exemplifies excellence in environmental engineering research and education. Her substantial contributions to water treatment technologies, advanced nanomaterials, and green chemistry underscore her standing as a thought leader and innovator. With a proven track record of impactful publications, active supervision, and international collaboration, she is an outstanding nominee for the Best Researcher Award. Her work not only addresses pressing environmental challenges but also promotes sustainable solutions that benefit both science and society.

Muhamad Safuan Shamshol Bahri | Environmental Hypotheses | Research Hypothesis Excellence Award

Muhamad Safuan Shamshol Bahri | Environmental Hypotheses | Research Hypothesis Excellence Award

Mr Muhamad Safuan Shamshol Bahri, Malaysia Institute of Transport, MITRANS, Universiti Teknologi MARA, Shah Alam, Malaysia

Dr. Muhamad Safuan Shamshol Bahri is a distinguished researcher in transport and logistics, specializing in sustainable port operations 🌿⚓. Currently pursuing his PhD at Universiti Teknologi MARA (UiTM), he has made significant contributions to environmental sustainability in maritime logistics. His expertise lies in performance measurement, green port policies, and decision-making frameworks 📊🌍. A lecturer and former quality engineer, he has received multiple gold awards for his research on intelligent decision-making in ports 🥇🔬. As an active member of TAM and MSORSM, Dr. Bahri continues to shape the future of sustainable maritime operations through impactful research, innovation, and industry collaboration 🚢💡.

Publication Profile

Google Scholar

Education

Mr. Muhamad Safuan Shamshol Bahri is a dedicated researcher pursuing a Doctor of Philosophy (PhD) in Transport and Logistics at Universiti Teknologi MARA, Shah Alam (2022 – Present) 📚⚙️. He previously earned a Master of Science (MSc) in Logistics and Transportation from the same university (2021 – 2022) 🎓✅, graduating on time. His academic journey began with a Bachelor of Naval Architecture and Offshore Engineering (Hons.) from Universiti Teknologi Malaysia, Skudai (2015 – 2019) ⛵, where he achieved a commendable CGPA of 3.42/4.00. His expertise lies in maritime engineering, logistics, and transportation, contributing to advancements in these fields. 🚢📦

Experience

Mr. Muhamad Safuan Shamshol Bahri is an experienced educator and engineer with a strong background in maritime business, logistics, and quality management. As a Lecturer at Peninsula College (Northern) in Georgetown (2021-2022) 📖, he taught maritime business and logistics management 🚢, designed curricula, and guided student projects 📚. Previously, he worked as a Quality Engineer at JTEKT Automotive Malaysia Sdn Bhd (2019-2021) 🏭, ensuring product compliance with customer specifications 📋. His role involved conducting root cause failure analysis ⚙️, implementing preventive measures, and managing inspection reports and quality documentation ✅. His expertise bridges both academia and industry, contributing to innovation and excellence.

Awards & Honors

Mr. Muhamad Safuan Shamshol Bahri has demonstrated excellence in maritime logistics and sustainable port innovation through multiple prestigious awards. He earned the Gold Award for An Ingenious Priority Determination for Sustainable Port (AI_DSP) at IBMVIC 2024 🏅 and the Bronze Medal for the same project at IIDEX 2024 🥉. His expertise was further recognized with two Gold Awards 🥇 for An Intelligent MCDM Performance Measurement for Maritime Logistics (IMPerMAL) at VMIIE 2022 and the 4th Virtual International Breakthrough IID Exhibition 2022. His contributions continue to enhance decision-making and performance measurement in the maritime industry. 🚢⚓

Research Interest

Muhamad Safuan Shamshol Bahri is a dedicated researcher specializing in Management Science and Operations Research, with a focus on performance measurement and Data Envelopment Analysis (DEA) 📊📈. His expertise extends to Multicriteria Decision Making (MCDM), where he applies advanced analytical methods to optimize decision-making processes 🤖⚙️. With a strong academic and research background, he contributes to the development of innovative frameworks that enhance efficiency and effectiveness in various industries 🏢💡. His work plays a crucial role in improving decision support systems, ensuring that organizations can achieve optimal performance through data-driven strategies 📉✅.

Research Focus

Dr. Muhamad Safuan Shamshol Bahri’s research focuses on environmental sustainability in port operations ⚓🌱. He specializes in green port performance measurement, developing MCDM-based decision-making models, and integrating sustainable practices in logistics 📊🔍. His work also explores regulatory frameworks and governance for eco-friendly port operations, utilizing methodologies like Data Envelopment Analysis (DEA) and Intuitionistic Fuzzy AHP 🌍📈. Through his studies, he contributes to optimizing operational efficiency while minimizing environmental impact, advancing sustainability in maritime logistics 🌊💡.

Publication Top Notes

A tri-level AHP approach for port logistics personnel performance evaluation

Comparative analysis on decision criteria for port personnel using hybrid Analytical Hierarchy Process (H-AHP)

Evaluating cost-efficient queue priorities for berth allocation via simulation

Comparative Analysis On Port Personnel Selection Using Hybrid Analytical Hierarchy Process (h-AHP)

Use of Monte Carlo simulation for hybrid multicriteria decision making approaches

Sustainable port operations and environmental initiatives in Malaysia: A focus on environmental sustainability

Evaluating Priorities of Environmentally Sustainable Port Performance Using an Intuitionistic Fuzzy Analytical Hierarchy Process Approach

A Hybrid Multicriteria Decision-Making Model for Environmentally Sustainable Port