Thaqal M. Alhuzaymi | Radioactive Waste | Research Excellence Award

Dr. Thaqal M. Alhuzaymi | Radioactive Waste | Research Excellence Award

Expert Researcher at King Abdulaziz City for Science and Technology | Saudi Arabia

Dr. Thaqal M. Alhuzaymi is an emerging nuclear engineering researcher recognized for his impactful contributions to radiation safety, reactor analysis, and radioactive waste management. His work emphasizes innovative approaches combining experimental techniques and computational modeling to enhance nuclear system performance and safety. With 19 publications, 119 citations across 112 documents, and an h-index of 5 in the Scopus database, his research demonstrates steady academic influence and growing visibility. His studies on small modular reactors, radiation shielding materials, and waste treatment solutions address critical global challenges in nuclear sustainability. The practical relevance and scientific rigor of his work position him as a promising candidate for the Research Excellence Award.

Citation Metrics (Scopus)

140

100

60

20

0

Citations
119

Documents
19

h-index
5

Featured Publications

Bing Song | Mineral Solid Waste | Best Researcher Award

Bing Song | Mineral Solid Waste | Best Researcher Award

Anhui University of Technology |  China

Dr. Bing Song is a distinguished Associate Professor in the School of Energy and Environment at Anhui University of Technology, specializing in environmental engineering and pollution control research. He obtained his Ph.D. in Environmental Science and Engineering from Southeast University, following a Master’s degree and Bachelor’s degree in Chemical Engineering from Henan Polytechnic University. He has served as a specially-appointed associate professor in the Department of Environmental Engineering, focusing his academic and research efforts on the mitigation of hazardous emissions and the development of advanced functional materials for environmental applications. His research has significantly contributed to the understanding and control of arsenic emissions during coal combustion, including work on Fe2O3 microspheres, CeO2/Fe2O3 nanosheets, CaO, and CaSiO3 materials for high-temperature arsenic capture. His findings have been published in leading international journals such as Environmental Science & Technology, Science of The Total Environment, Fuel, Fuel Processing Technology, and Chemosphere. In addition, his work has provided mechanistic insights into the environmental safety of arsenic in by-products such as fly ash-derived ceramsite. Through his publications and contributions, Bing Song has established himself as a rising researcher in the field of energy and environment, advancing sustainable approaches to pollutant control and environmental remediation while building international recognition for his innovative methods in managing arsenic emissions and related environmental challenges.

Pofile: Scopus

Featured Publication

Meng, F., & Song, B. (2025). In-situ synthesis of resin carbon-supported CoFexOy catalyst with enhanced catalytic performance for dye degradation in wastewater. Water, Air, & Soil Pollution, 236(10), Article 666.

Cao, Z., Li, Q., Meng, F., Shen, G., & et al. (2024). The reaction mechanism and application of advanced oxidation of peracetic acid: A review. Journal of Environmental Chemical Engineering.