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Updated: Jan 8, 2026

An Anaerobic Biosensor Assay for the Detection of Mercury and Cadmium
Published on: December 17, 2018
Dissolved organic matter induces selenium and cadmium immobilization in natural selenium-cadmium-rich paddy soils
Xingchen He1, Mengling Nong2, Jiangyan Lv3
1Agricultural Resource and Environment Research Institute, Guangxi Academy of Agricultural Sciences, Nanning, Guangxi 530007, China; National Demonstration Center for Experimental Plant Science Education, Agricultural College, Guangxi University, Nanning, Guangxi 530004, China; Department of Health and Environmental Sciences, School of Science, Xi'an Jiaotong-Liverpool University, Suzhou, Jiangsu 215123, China.
Abstract:
Cadmium (Cd) commonly coexists with selenium (Se) in the natural Se-rich soils of China, severely limiting their agricultural utilization. Dissolved organic matter (DOM) extracted from agricultural residues is considered a potential soil amendment capable of mobilizing Se and immobilizing Cd. This study investigates the mechanism by which DOM from different agricultural residues affects Se and Cd dynamics in natural Se-Cd-rich soils. Two-season pot experiments were performed to examine Se/Cd transformation and bioavailability under different residue-derived DOM treatments: chicken, ox, and earthworm manures, rice straw, and straw-manure mixtures. Our findings revealed that DOM application increased soil pH (+4.85 %), organic matter content (+33.47 %), and cation exchange capacity (+61.97 %). The 2 % chicken manure-derived DOM treatment achieved optimal results, increasing grain-Se content by 46.14 % while reducing the grain-Cd levels by 47.22 %. Structural equation modeling indicated that the increased soluble Se fraction (+54.81 %) and decreased oxidizable Cd fraction (-20.97 %) primarily influenced these results. We conclude that DOM mobilizes Se and immobilizes Cd in natural Se-Cd-rich paddy soils, with chicken manure-derived DOM demonstrating superior efficacy.
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