Dr. Udeme Dickson | Environmental Chemistry and Remediation | Excellence in Research Award

Dr. Udeme Dickson | Environmental Chemistry and Remediation | Excellence in Research Award

Doctorate at Independent Researcher | United Kingdom

Dr. Udeme John Dickson is a distinguished Environmental Earth Scientist, Educator, and Consultant, combining academic rigor with practical experience. With expertise in pollution analysis, sustainable remediation, and environmental diagnostics, he is at the forefront of addressing pressing global environmental issues.

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📚 Education & Qualifications

Dr. Udeme John Dickson is a highly accomplished environmental scientist and chemist with a robust academic background. He earned his Ph.D. in Analytical Chemistry and Environmental Science from Nottingham Trent University, United Kingdom, in 2020, where he developed innovative analytical and remediation techniques for managing contaminated soils. Earlier, he completed a Master of Science in Environmental Chemistry at the University of Benin, Nigeria, in 2012, and a Bachelor of Science in Environmental Chemistry from the University of Uyo, Nigeria, in 2006. These academic milestones have laid a strong foundation for his expertise in environmental geoscience and analytical chemistry.

🎓 Professional Memberships

Dr. Dickson is actively involved in several esteemed professional organizations, reflecting his dedication to the advancement of environmental science. He is a member of the Geological Society Academic Accreditation Committee of the Geological Society of London and a Fellow of the Higher Education Academy (FHEA). Additionally, he holds memberships in globally renowned organizations, including the Royal Society of Chemistry, British Society of Soil Science, British Ecological Society, American Chemical Society, and International Soil Science Society.

🧪 Research Interests

Dr. Dickson’s research is broad and multidisciplinary, addressing critical environmental challenges. His expertise spans environmental geochemistry, applied environmental monitoring, and remediation, particularly focusing on land, water, and atmospheric pollutants. He has a keen interest in the analysis and remediation of organic pollutants, including petroleum hydrocarbons, microplastics, dioxins, and persistent organic compounds, as well as trace metals and their speciation studies. He is actively involved in exploring myco- and phytoremediation as sustainable approaches to environmental restoration.
Dr. Dickson’s research also delves into climate change and climate-induced hazards, such as flooding and wildfires. His work on energy balance in ecosystems, including hydrogen and carbon capture in soils, contributes to the development of sustainable energy solutions. Furthermore, he employs environmental diagnostics and forensics for pollutant source apportionment, wildlife crime investigations, and ecosystem assessments.

📊 Employment & Professional Experience

Currently, Dr. Dickson serves as a Lecturer in Environmental Geoscience at University College London (UCL), UK, where he has made significant contributions to curriculum design, module development, and student mentorship. His teaching responsibilities include leading modules such as Introduction to Environmental Geosciences, GIS and Remote Sensing, Environmental Geochemistry, and Geological and Environmental Mapping. He has played a pivotal role in redesigning modules, introducing advanced concepts, and ensuring practical, hands-on learning experiences for students.
Dr. Dickson has also served as an External Examiner at Nanjing University of Information Science & Technology, China (2021–2023), demonstrating his international reputation as a subject matter expert.

🏆 Awards & Accomplishments

Dr. Dickson’s achievements include receiving the Niger Delta Development Commission (NDDC) Foreign Postgraduate Scholarship Award (2015) and the Nottingham Trent University Scholarship Award (2015). His dedication to excellence in teaching has been recognized through positive student feedback and accolades for his contributions to UK universities.

Publications Top Noted📝

Investigating the potential of sunflower species, fermented palm wine, and Pleurotus ostreatus for treatment of petroleum-contaminated soil

Authors: Dickson, U.J., Coffey, M., Mortimer, R.J.G., Ray, N., Di Bonito, M.

Journal: Chemosphere

Year: 2020

Mycoremediation of petroleum-contaminated soils: Progress, prospects, and perspectives

Authors: Dickson, U.J., Coffey, M., Mortimer, R.J.G., Di Bonito, M., Ray, N.

Journal: Environmental Science: Processes and Impacts

Year: 2019

Physicochemical studies of Nigeria’s crude oil blends

Authors: Dickson, U.J., Udoessien, E.I.

Journal: Petroleum and Coal

Year: 2012

Industrial potentials for alcohol obtained from locally produced rice (Oryza sativa) in some communities of Akwa Ibom State, Nigeria

Authors: Dickson, U.J., Udoessien, E.I.

Journal: European Journal of Scientific Research

Year: 2012

A physicochemical study of Nigerian crude oil blends

Authors: Udoessien, E.I., Dickson, U.J.

Journal: European Journal of Scientific Research

Year: 2012

Dr. Ruijuan Qu | Environmental Analytical Chemistry | Best Researcher Award

Dr. Ruijuan Qu | Environmental Analytical Chemistry | Best Researcher Award

Doctorate at Nanjing University | China

Dr. Ruijuan Qu, an Associate Professor at the School of Environment, Nanjing University, has emerged as a leader in environmental analytical chemistry. Her pioneering research on the environmental transformation of organic pollutants and the development of green degradation technologies has earned her recognition as one of the world’s top scientists. With a strong academic background and a robust publication record, Dr. Qu’s innovative contributions have had a significant impact on both environmental chemistry and sustainability.

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🎓Academic and Professional Background 

Ruijuan Qu serves as an Associate Professor at the School of Environment at Nanjing University, China. She earned her PhD in 2015 from the same institution and subsequently held positions as an assistant researcher (2015-2018) and associate researcher (2018-2019) before becoming an Associate Professor in December 2019. Her expertise centers on quantitative structure-activity relationship (QSAR) studies, with a focus on the transformation mechanisms of organic pollutants and the development of green, efficient degradation technologies. Her remarkable impact in environmental science earned her a place on Stanford University’s 2023 World’s Top 2% Scientists List.

🔍 Research Focus

Dr. Qu specializes in quantitative structure-activity relationship (QSAR) for studying the transformation mechanisms of organic pollutants. Her research is dedicated to the environmental transformation of pollutants and the development of green, efficient degradation technologies.

🧪 Key Research Areas

  • Environmental Transformation and Fate of Organic Pollutants
    Dr. Qu investigates how organic pollutants change and decompose in environmental contexts.
  • Chemical Oxidation Processes in Water and Wastewater Treatment
    She develops innovative oxidation technologies for cleaner water treatment.
  • Environmental Computational Chemistry
    Using computational tools, she models pollutant behavior to inform safer, effective treatments.

🌐 Collaborative Research and Breakthroughs

In collaboration with Prof. Virender K. Sharma of Texas A&M University, Dr. Qu explored the Ferrate (Fe(VI)) oxidation treatment of organic pollutants. Their work uncovered the dihydroxylation mechanism of phenols and highlighted the catalytic role of bismuth hydroxide through a Bi(III)-Bi(V) valence cycle.

🚀 Pioneering Innovations in Environmental Chemistry

Dr. Qu has introduced a novel method for pollutant transformation analysis: non-target mass spectrometry – preparative separation-characterization – simplified transition state calculation. This innovative approach enhances intermediate product identification. Key achievements include:

Addressing particle effects on photodegradation of persistent organic pollutants (POPs) in river systems.

Revealing polymerization occurrences in chemical oxidation of phenols and proposing strategies for low-carbon deep oxidation.

Modifying silica materials for enhanced catalytic activity under visible and infrared light, advancing adsorption-photocatalytic degradation of halogenated aromatic hydrocarbons.

Publications Top Noted📝

Degradation of 2-(2H-benzotriazol-2-yl)-4,6-di-tert-pentylphenol (UV328) in soil by FeS activated persulfate: Kinetics, mechanism, and theoretical calculations

Authors: Li, X.; Bu, Y.; Xu, J.; Wang, Z.; Qu, R.

Journal: Environmental Pollution

Year: 2024

Photodegradation of polychlorinated biphenyls (PCBs) on suspended particles from the Yellow River under sunlight irradiation: QSAR model and mechanism analysis

Authors: Xu, J.; Wei, J.; Wei, X.; Wang, Z.; Qu, R.

Journal: Water Research

Year: 2024

Adsorption and migration behaviors of heavy metals (As, Cd, and Cr) in single and binary systems in typical Chinese soils

Authors: Cao, W.; Qin, C.; Zhang, Y.; Xian, Q.; Wang, Z.

Journal: Science of the Total Environment

Year: 2024

Efficient degradation of benzalkonium chloride (BAC) by zero-valent iron activated persulfate: Kinetics, reaction mechanisms, theoretical calculations and toxicity evolution

Authors: Qi, Y.; Cao, W.; Zhang, Y.; Huo, Z.; Zhu, F.

Journal: Environmental Pollution

Year: 2024

Promoted electrochemical degradation of triclosan with persulfate on Fe-Ni oxide modified graphite felt cathode

Authors: Teng, X.; Wang, Z.; Abukhadra, M.R.; Khaled Mahmoud, R.; Qu, R.

Journal: Separation and Purification Technology

Year: 2024