Regional and global hotspots of arsenic contamination of topsoil identified by deep learning

  • Wu, Mengting; 
  • Qi, Chongchong; 
  • Derrible, Sybil; 
  • Choi, Yosoon; 
  • Fourie, Andy; 
  • ... Ok, Yong Sik
Citations

WEB OF SCIENCE

46
Citations

SCOPUS

52

초록

Topsoil arsenic (As) contamination threatens the ecological environment and human health. However, traditional methods for As identification rely on on-site sampling and chemical analysis, which are cumbersome, time-consuming, and costly. Here we developed a method combining visible near infrared spectra and deep learning to predict topsoil As content. We showed that the optimum fully connected neural network model had high robustness and generalization (R-Square values of 0.688 and 0.692 on the validation and testing sets). Using the model, the relative As content at regional and global scales were estimated and the human populations that might potentially be affected were determined. We found that China, Brazil, and California are topsoil As-contamination hotspots. Other areas, e.g., Gabon, although also at great risk, are rarely documented, making them potential hotspots. Our results provided guidance for regions that require more detailed detection or timely soil remediation and can assist in alleviating global topsoil-As contamination. China, Brazil, and California (USA) are the top three global hotspots of topsoil arsenic contamination, according to a deep machine learning technique that can quickly identify regional and global hotspots of topsoil arsenic contamination.

키워드

SOIL ORGANIC-CARBON; REFLECTANCE SPECTROSCOPY; HEAVY-METALS; AGRICULTURAL SOILS; RISK-ASSESSMENT; EUROPEAN-UNION; LUCAS SOIL; PREDICTION; SPECIATION; AREAS
제목
Regional and global hotspots of arsenic contamination of topsoil identified by deep learning
저자
Wu, Mengting; Qi, Chongchong; Derrible, Sybil; Choi, Yosoon; Fourie, Andy; Ok, Yong Sik
DOI
10.1038/s43247-023-01177-7
발행일
2024-01-03
유형
Article
저널명
Communications Earth & Environment
권
5
호
1