Rabia Benaddi | Environmental Science | Outstanding Contributions in Academia Award

Dr. Rabia Benaddi | Environmental Science | Outstanding Contributions in Academia Award

Agence Du Bassin Hydraulique De Tensift | Morocco

Dr. Rabia Benaddi is a Moroccan researcher specializing in environmental chemistry, water quality management, and material sciences. His research focuses on the synthesis and characterization of phosphate-based materials and their application in the adsorption and removal of phenolic and organic pollutants from wastewater, contributing significantly to sustainable water treatment technologies. He has co-authored multiple peer-reviewed publications in international journals such as the Journal of Hydrology: Regional Studies, Journal of African Earth Sciences, and Ecological Engineering & Environmental Technology. His work also encompasses the assessment of wastewater treatment systems, natural lagoon performance, groundwater contamination, and the environmental impacts of industrial effluents in arid and semi-arid regions. Professionally, he has extensive experience in water quality monitoring, environmental impact assessment, and management of wastewater reuse projects. He has actively contributed to research collaborations, student supervision, and capacity-building initiatives in water resource management, climate change adaptation, and environmental sustainability. Through numerous conference presentations and international training programs, he has demonstrated a strong commitment to advancing scientific understanding and practical solutions for sustainable water and environmental systems.

Proifles: Scopus | Orcid

Featured Publications

Benaddi, R., Osmane, A., Zidan, K., El Harfi, K., & Ouazzani, N. (2023). A review on processes for olive mill wastewater treatment. Ecological Engineering & Environmental Technology, 24(7).

Benaddi, R., Osmane, A., Zidan, K., El Harfi, K., & Ouazzani, N. (2023). A review on the adsorption of phenol derivatives from wastewater. Ecological Engineering & Environmental Technology, 24(6).

Benaddi, R., Aziz, F., El Harfi, K., & Ouazzani, N. (2022). Column adsorption studies of phenolic compounds on nanoparticles synthesized from Moroccan phosphate rock. In Advances in Science, Technology and Innovation (pp. 181–192). Springer.

Benaddi, R., Ferkan, Y., Bouriqi, A., & Ouazzani, N. (2022). Impact of landfill leachate on groundwater quality – A comparison between three different landfills in Morocco. Journal of Ecological Engineering, 23(5), 213–223.

Benaddi, R., Aziz, F., El Harfi, K., & Ouazzani, N. (2021). Adsorption and desorption studies of phenolic compounds on hydroxyapatite–sodium alginate composite. Desalination and Water Treatment, 227, 1–11.

Guiying You | Environmental Science | Best Researcher Award

Dr. Guiying You | Environmental Science | Best Researcher Award

postdoctor | Peking University | China

Guiying You is an environmental scientist specializing in air pollution and control with extensive research on volatile organic compounds, greenhouse gases, and atmospheric chemistry. She has actively contributed to multiple national, provincial, and municipal projects focusing on emission characterization, pollution prevention, and control strategies. Her research integrates large-scale data analysis, field experiments, and numerical modeling to understand pollutant behavior and mitigation approaches. She has authored multiple peer-reviewed publications in leading journals, serving as both first author and co-author, and her work has advanced knowledge in VOCs source profiling, emission factors, and pollution control technologies across various industries such as petroleum refining, automobile manufacturing, packaging, and printing. Her academic journey reflects strong dedication to environmental science and engineering, contributing to both theoretical frameworks and practical solutions for improving air quality. With strong analytical expertise and technical experience, she continues to drive impactful research that bridges science and environmental policy.

Profile

Scopus

Education

Guiying You pursued her academic career in environmental science and engineering with a focus on air pollution control, beginning with a strong foundation in conservation of water and soil at undergraduate level, where she gained knowledge of environmental systems and resource management. She deepened her expertise through a master’s degree in environmental science, concentrating on global greenhouse gas emissions and gaining skills in analyzing climate-related environmental data. She further advanced her specialization through doctoral research in environmental engineering, focusing on volatile organic compound emissions from key industries such as petroleum refining, chemical processing, industrial coating, and printing. Her doctoral study established methodologies for emission factor determination, pollution source identification, and source profile establishment, contributing to comprehensive VOCs management frameworks. Across her academic journey, she consistently achieved strong academic performance while building a solid background in laboratory instrumentation, field measurement techniques, statistical modeling, and interdisciplinary approaches linking environmental science with sustainable solutions.

Professional Experience

Guiying You has participated in several large-scale funded research projects addressing air pollution, climate change, and emission reduction strategies. Her work on soil respiration and greenhouse gas sensitivity contributed to global-scale understanding of temperature effects on ecosystem functions. She has been actively involved in projects tackling atmospheric pollution in urban-industrial regions, conducting field observations, equipment operation, data processing, and project reporting. Her research on anthropogenic VOC emissions has led to detailed source profiling, emission factor estimation, and control strategy formulation for industries such as refining, automobile manufacturing, and packaging. She has also contributed to collaborative studies on multi-medium air pollution, integrating spatiotemporal emission patterns, inventory development, and advanced pollution control technologies. In addition, her role in city-level air quality projects has involved identifying key pollutants, analyzing ozone formation mechanisms, and proposing coordinated policies for PM2.5 and ozone control. These experiences highlight her versatility in both academic and applied research.

Awards and Honors

Throughout her academic and research career, Guiying You has been recognized with multiple awards and honors that reflect her academic excellence, research achievements, and contributions to student and institutional development. She has been awarded the National Inspirational Scholarship multiple times, placing among the top percentile of her peers, and recognized as an Outstanding Graduate for her consistent performance. She has also received distinctions as a Meritorious Student and Study Activist, demonstrating both academic commitment and proactive engagement in research and learning. Beyond academics, she has been active in cultural and artistic pursuits, earning awards including first prize, second prize, and runner-up positions in university-level competitions, showcasing a balanced profile of intellectual and extracurricular excellence. These recognitions underscore her dedication, discipline, and broad skillset, positioning her as a high-achieving researcher who combines technical expertise with leadership qualities, creativity, and continuous pursuit of excellence in both scientific and personal development.

Research Focus

The research focus of Guiying You lies in air pollution and control, with specialization in the emission characteristics of volatile organic compounds and their environmental and health impacts. Her work emphasizes developing comprehensive methodologies for pollution source identification, emission factor estimation, source profile establishment, and full-process measurement of VOCs across major industries including petroleum refining, automobile manufacturing, industrial coating, and printing. She integrates field measurements, laboratory experiments, and advanced modeling techniques to build accurate emission inventories and evaluate reduction potentials. Her studies also address greenhouse gas sensitivities, ecosystem respiration, and mechanisms of ozone formation, linking atmospheric science with climate change and human health risks. She employs advanced analytical instruments and statistical tools to process complex environmental data, contributing to evidence-based solutions for coordinated control of PM2.5 and ozone. Her research ultimately aims to provide scientific support for air quality management, sustainable industrial development, and effective environmental policies at multiple scales.

Publication

Emission Factors and Source Profiles of Volatile Organic Compounds in the Petroleum Refining Industry through On-Site Measurement from Multiple Refineries
Year: 2024

Characterizing VOCs emissions of five packaging and printing enterprises in China and the emission reduction potential of this industry
Year: 2023

Emission factors and source profiles of volatile organic compounds in container manufacturing industry
Year: 2024

Emission factors and source profiles of volatile organic compounds from the automobile manufacturing industry
Year: 2024

High performance of coal dust suppression with waste activated sludge using microbially induced calcite precipitation technology
Year: 2022

Conclusion

Guiying You is a highly capable and promising researcher whose contributions to the study of VOCs emissions, greenhouse gases, and air pollution control position her as a strong candidate for recognition. Her strengths in rigorous experimentation, detailed emission profiling, and comprehensive control strategy development highlight her potential to address critical environmental challenges. With continued international engagement and expanded interdisciplinary impact, she is well-suited to achieve further distinction and make lasting contributions to both science and policy in environmental sustainability.