Lanfeng Li | Industrial Wastewater Treatment | Best Researcher Award

Dr. lanfeng Li | Industrial Wastewater Treatment | Best Researcher Award

PhD student, School of Environment Studies, China University of Geosciences (Wuhan), China

Li Lanfeng, born in October 1994, is a doctoral candidate specializing in industrial wastewater treatment and resource recovery technologies. His research focuses on the degradation of dissolved organic matter, recovery of valuable components in industrial wastewater, and the resource utilization of municipal sludge. Li has been involved in significant research projects, such as the recovery and purification of hazardous waste liquids in the integrated circuit industry and the sustainable use of lithium-rich ores. He has published over 20 papers, including 16 SCI papers, and holds more than 10 patents. His work has contributed to the application of critical technologies in industries like photovoltaic and agriculture. Li’s academic background includes a PhD in Environmental Science and Engineering from China University of Geosciences (Wuhan). He has received numerous awards and honors, further solidifying his impact in the environmental engineering field.

Profile

Scopus

Education

Li Lanfeng completed his undergraduate studies in Hydrology and Water Resources Engineering at Changjiang University in 2017. He pursued a Master’s degree in Environmental Engineering at China University of Geosciences (Wuhan) from 2017 to 2020. During his master’s, Li focused on water pollution control and resource recovery. He is currently a PhD candidate in Environmental Science and Engineering at the same university, where his research primarily concentrates on industrial wastewater treatment, organic matter degradation mechanisms, and resource recovery technologies. His academic journey reflects his deep commitment to advancing environmental sustainability, with a particular focus on addressing complex industrial wastewater challenges. His education, combined with practical experience in large-scale engineering projects, has equipped him with the skills necessary to drive innovation and contribute significantly to global environmental solutions.

Experience

Li Lanfeng has gained extensive research experience through his involvement in numerous significant projects. He actively contributes to the National Key R&D Program focusing on hazardous waste liquid recovery and purification technologies in the integrated circuit industry. Additionally, he participates in the Chinese Academy of Sciences’ strategic technology initiatives, such as the resource utilization of lithium ores. His expertise extends to key areas, including the recovery of fluoride from industrial wastewater and sludge dewatering for municipal waste management. Notably, Li’s contributions to the development and application of fluoride wastewater recovery technologies have successfully been implemented in Zhejiang’s photovoltaic industry, leading to the completion of two 10,000-ton projects. He is also part of collaborative efforts to improve agricultural sustainability through low-carbon livestock farming and integrated agricultural ecosystems in the middle Yangtze River region. His contributions to both research and practical application continue to shape the future of environmental engineering.

Awards and Honors

Li Lanfeng’s academic excellence and innovation have been recognized with numerous prestigious awards. In 2023, he was awarded the Hubei Provincial Science and Technology Progress Award (Second Prize) as a key contributor to his research. He was also honored with the China Education Ministry’s National Graduate Scholarship in 2019, recognizing his outstanding achievements during his graduate studies. In addition, he received the “Outstanding Master’s Thesis” award from the China University of Geosciences (Wuhan) in 2020. Li’s dedication to his academic work is further demonstrated by his receipt of the university’s prestigious Doctoral Academic First-Class Scholarship for the 2022-2024 period. These awards highlight Li’s commitment to advancing environmental science and engineering, particularly in the areas of wastewater treatment, resource recovery, and sustainability.

Research Focus

Li Lanfeng’s research primarily focuses on industrial wastewater treatment, resource recovery, and sludge utilization. His work delves into the mechanisms of organic matter degradation during wastewater treatment processes, with an emphasis on industrial wastewater containing valuable components. One of his key areas of research is the recovery of fluoride from wastewater in industries such as photovoltaic manufacturing, where he has successfully developed and applied resource recovery technologies. Li is also dedicated to the utilization of municipal sludge, focusing on its dewatering, conditioning, and conversion into valuable by-products. His research extends to sustainable agricultural development, particularly in low-carbon farming practices in the middle Yangtze River region. Through his multidisciplinary approach, Li seeks to advance environmental sustainability while developing practical solutions to the pressing challenges of industrial pollution and resource management.

Publication Top Notes

  1. Lanfeng Li, Niannian Sun, Siwei Peng, et al. (2024). Molecular insights into the degradation of organic matter from secondary swine wastewater effluent: A comparative study of advanced oxidation processes. Chemical Engineering Journal, 500: 156761.
  2. Lanfeng Li, Jing Ai, Hang He, et al. (2024). Molecular-level insights into the transformation and degradation pathways of dissolved organic matter during full-scale swine wastewater treatment. Science of the Total Environment, 909, 168604.
  3. Lanfeng Li, Jing Ai, Weijun Zhang, et al. (2020). Relationship between the physicochemical properties of sludge-based carbons and the adsorption capacity of dissolved organic matter in advanced wastewater treatment: effects of chemical conditioning. Chemosphere, 243, 125333.
  4. Lanfeng Li, XingminFu, Jing Ai, et al. (2019). Process parameters study and organic evolution of old landfill leachate treatment using photo-Fenton-like systems: Cu2+ vs Fe2+ as catalysts. Separation and Purification Technology, 211, 972-982.
  5. Peng Su, Lanfeng Li*, Hao Zhou, et al. (2024). Environmental and economic sustainability of the novel photovoltaic industrial wastewater treatment systems from life cycle perspective. Environmental Research, in revision.

 

 

 

Aaliya Qureashi – Wastewater treatment – Women Researcher Award

Aaliya Qureashi - Wastewater treatment - Women Researcher Award

Kashmir University - India

AUTHOR PROFILE

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EARLY ACADEMIC PURSUITS

Aaliya Qureashi embarked on her academic journey by obtaining a Bachelor of Science degree from Govt. College for Women, M. A. Road, Srinagar, in 2012. She then pursued her Master of Science degree in Chemistry from the University of Kashmir in 2014. Building upon her foundational education, she began her Ph.D. journey in the Department of Chemistry at the University of Kashmir in January 2019, where she is currently pursuing her doctoral research.

PROFESSIONAL ENDEAVORS

Aaliya Qureashi's professional endeavors reflect her dedication to advancing knowledge in the field of chemistry, particularly in the domain of wastewater treatment. She serves as a Principal Investigator as a Women Scientist (WOS-A) at the University of Kashmir, Department of Chemistry, starting from 2022. Additionally, she actively engages in peer-review activities for esteemed journals like the Journal of Global Ecology and Environment.

CONTRIBUTIONS AND RESEARCH FOCUS

Aaliya Qureashi's research focuses on wastewater treatment, with a particular emphasis on designing and synthesizing novel magnetic composites for the detection and removal of contaminants from wastewater. Her work involves the modification of magnetic composites using various methods such as ultrasonication, co-precipitation, and hydrothermal techniques. She aims to deepen the understanding of removal processes, adsorption phenomena, and electrochemical behavior at electrode-electrolyte interfaces, employing state-of-the-art techniques both in aqueous and non-aqueous media.

IMPACT AND INFLUENCE

Through her research endeavors, Aaliya Qureashi has made significant contributions to the field of wastewater treatment. Her publications in reputable journals and her involvement in research projects funded by the Department of Science and Technology highlight her impactful research. By addressing critical issues related to water pollution and contamination, her work has the potential to positively impact environmental sustainability and public health.

ACADEMIC CITES

Aaliya Qureashi's research findings have been cited in numerous publications, indicating the relevance and significance of her contributions to the scientific community. Her work serves as a valuable resource for researchers and scholars interested in advancing knowledge in the field of wastewater treatment and environmental chemistry.

LEGACY AND FUTURE CONTRIBUTIONS

Aaliya Qureashi's dedication to researching wastewater treatment techniques positions her as a leader in the field. Her continued efforts to innovate and develop sustainable solutions for wastewater treatment will contribute to addressing pressing environmental challenges. Through her ongoing research, she aims to leave a lasting legacy of impactful contributions to the field of environmental science and chemistry.

NOTABLE PUBLICATION

Overview of printable nanoparticles through inkjet process: Their application towards medical use 2022 (6)