Dr. Peng Lyu, Chinese Academy of Agricultural Sciences Institute of Environment and Sustainable Development in Agriculture, China: Environmental Chemistry
Bio Summary:
Dr. Peng Lyu is a distinguished researcher and scholar specializing in environmental chemistry and materials chemistry. With a focus on the development, characterization, and identification of environmentally functional materials, Dr. Lyu’s work extends to understanding the molecular-level migration, transport, and repatriation of pollutants in diverse environmental systems, including soil, water, and plants. His interdisciplinary approach bridges the realms of environmental and materials chemistry, providing insights into the intricate interplay between materials and the environment.
Dr. Lyu has made significant contributions to the field, particularly in the design of innovative materials for environmental applications. His research encompasses not only the theoretical aspects but also practical applications, with a keen interest in the sustainable remediation of contaminated soil and water. Serving as a reviewer for Environmental Science and actively participating in national-level scientific initiatives, Dr. Lyu exemplifies a commitment to advancing the understanding of environmental processes and developing solutions for a cleaner, healthier planet.
Research Focus:
Dr. Peng Lyu’s research focuses on the following specialties:
Development, Characterization, and Identification of Environmentally Functional Materials: This includes the study and creation of materials that serve specific environmental functions, with a likely emphasis on sustainability and ecological impact.
Molecular Level-Based Migration, Transport, and Repatriation of Pollutants: Dr. Lyu is likely involved in understanding the movement and behavior of pollutants at the molecular level in various environmental systems such as soil, water, and plants. This involves studying the pathways and processes through which pollutants migrate, are transported, and may be removed or remediated.
Interdisciplinary Environmental Chemistry and Materials Chemistry: Dr. Lyu’s interdisciplinary approach involves integrating principles from both environmental chemistry and materials chemistry. This holistic perspective likely enables a comprehensive understanding of how materials interact with the environment and how environmental processes can be influenced or modified by specific materials.
In addition to these specialties, Dr. Peng Lyu has also participated in writing for the National Natural Science Foundation of China, indicating involvement in grant proposals or research projects, and serves as a reviewer for Environmental Science, showcasing a commitment to contributing to the academic and research community through peer review activities.
Author Metrics:
Author metrics provide quantitative measures of an author’s impact and productivity in the academic and research community. Here are some key metrics for Dr. Peng Lyu:
Citations: Dr. Peng Lyu’s research has been cited 142 times across 124 documents. This metric reflects the influence and visibility of his work within the academic community.
h-index: The h-index is a measure of both the productivity and impact of an author’s scholarly output. Dr. Lyu has an h-index of 6, indicating that he has published 6 papers that have each been cited at least 6 times.
Documents: Dr. Lyu has authored 7 documents. This metric provides a count of the total number of scholarly works he has published.
These metrics offer insights into the reach and significance of Dr. Peng Lyu’s contributions to the academic field, particularly in the areas of environmental chemistry and materials chemistry.
Research Timeline:
Dr. Peng Lyu based on the information provided:
2023: Dr. Peng Lyu published several research papers, including “Ternary Ca–Mg–Al layered double-hydroxides for synergistic remediation of As, Cd, and Pb,” “Enhancing sorption of layered double hydroxide-based magnetic biochar for arsenic and cadmium,” and “Pre-magnetic bamboo biochar cross-linked CaMgAl layered double hydroxide composite.”
2022: Notable publications include “Phosphorus-modified biochar cross-linked Mg-Al layered doublehydroxide composite for immobilizing uranium in mining contaminated soil” and “Effect of three aging processes on physicochemical and As(V) adsorption properties of Ce/Mn-modified biochar.”
2021: Published “Adsorption and interaction mechanism of uranium (VI) from aqueous solutions on phosphate-impregnation biochar cross-linked Mg–Al layered double-hydroxide composite.”
2020: Published “The anonymous online self: Toward an understanding of the tension between discipline and online anonymity” in the Information Systems Journal.
2019: Taught “ACC/ACF2400 Accounting Information Systems” at Monash University, Australia.
2018: Awarded the Department of Accounting Graduate Fellowship at the University of Texas at Arlington.
2017: Became a AAA/Deloitte/ Doctoral Consortium Fellow.
2016: Received the Reuben and Mary Taniguchi Graduate Fellowship in Accounting at the University of Texas at Arlington.
2014: Started Graduate Scholarship/Assistantship at the University of Texas at Arlington.
This timeline highlights key milestones in Dr. Peng Lyu’s research and academic journey, showcasing a prolific publication record and academic recognition.
Publications Top Noted:
“Ternary Ca–Mg–Al layered double-hydroxides for synergistic remediation of As, Cd, and Pb from both contaminated soil and groundwater.”
- (Journal of Hazardous Materials, 2023)
“Enhancing sorption of layered double hydroxide-based magnetic biochar for arsenic and cadmium through optimized preparation protocols.”
- (Bioresource Technology, 2023)
“Pre-magnetic bamboo biochar cross-linked CaMgAl layered double hydroxide composite: High-efficiency removal of As(III) and Cd(II) from aqueous solutions and insight into the mechanism of simultaneous purification.”
- (Science of the Total Environment, 2022)
“Magnetic biochar-supported layered double hydroxide for simultaneous remediation of As and Cd in soil: Effectiveness, retention durability, and immobilization mechanism.”
- (Journal of Cleaner Production, 2022)
“Phosphorus-modified biochar cross-linked Mg-Al layered double-hydroxide composite for immobilizing uranium in mining contaminated soil.”
- (Chemosphere, 2021)
“Adsorption and interaction mechanism of uranium (VI) from aqueous solutions on phosphate-impregnation biochar cross-linked Mg–Al layered double-hydroxide composite.”
- (Applied Clay Science, 2021)
“Effect of three aging processes on physicochemical and As(V) adsorption properties of Ce/Mn-modified biochar.”
- (Environmental Research, 2022)
“Phosphorus-modified biochar cross-linked Mg-Al layered double-hydroxide stabilizer reduced U and Pb uptake by Indian mustard (Brassica juncea L.) in uranium contaminated soil.”
- (Ecotoxicology and Environmental Safety, 2022)