Crystallization-based upcycling of iron oxyhydroxide for efficient arsenic capture in contaminated soils

Citations

WEB OF SCIENCE

6
Citations

SCOPUS

8

초록

Arsenic (As)-contaminated soil inevitably exists in nature and has become a global challenge for a sustainable future. Current processes for As capture using natural and structurally engineered nanomaterials are neither scientifically nor economically viable. Here, we established a feasible strategy to enhance As-capture efficiency and ecosystem health by structurally reorganizing iron oxyhydroxide, a natural As stabilizer. We propose crystallization to reorganize FeOOH-acetate nanoplatelets (r-FAN), which is universal for either scalable chemical synthesis or reproduction from natural iron oxyhydroxide phases. The r-FAN with wide interlayer spacing immobilizes As species through a synergistic mechanism of electrostatic intercalation and surface chemisorption. The r-FAN rehabilitates the ecological fitness of As-contaminated artificial and mine soils, as manifested by the integrated bioassay results of collembolan and plants. Our findings will serve as a cornerstone for crystallization-based material engineering for sustainable environmental applications and for understanding the interactions between soil, nanoparticles, and contaminants.

키워드

Iron oxyhydroxide; Nanomaterial; Sustainable Crystallization; Arsenic capture; Soil amendments; COLLEMBOLA
제목
Crystallization-based upcycling of iron oxyhydroxide for efficient arsenic capture in contaminated soils
저자
Lee, Yun-Sik; Park, Bum Chul; Lee, Dae Beom; Min, Hyun-Gi; Kim, Min-Suk; Kim, Sung-Chul; Won, Sung Ok; Wee, June; Chae, Eunji; Sim, Cheolho; Kim, Youngeun; Kim, Jeong-Gyu; Kim, Young Keun; Cho, Kijong
DOI
10.1016/j.envint.2023.107963
발행일
2023-05
유형
Article
저널명
Environment International
권
175