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Published on: February 21, 2017
Mercapto-modified layered double hydroxide: High-efficiency emerging amendment for cadmium immobilization in
Xusheng Gao1, Xilin Chen1, Yifei Shu1
1Key Laboratory of Original Environmental Pollution Control of MARA,Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin 300191, China.
Abstract:
Soil cadmium (Cd) contamination has emerged as a critical environmental challenge in Chinese agricultural systems. The remediation of Cd-contaminated farmland necessitates high-efficiency immobilization amendments. The present study successfully synthesized mercapto-modified MgAl- and ZnAl-layered double hydroxides (MgAl/ZnAl-MP-LDHs) as structurally stable and high-performance amendments via a coprecipitation-condensation method. Batch adsorption experiments revealed superior Cd2 + sorption capacities for MP-LDHs, with the maximum Cd2+ capacities increased by 1.6-1.8 times compared to the unmodified materials. The XPS analysis further elucidated the dual sorption mechanisms involve in Cd2+ absorption by MP-LDHs: complexation via mercapto groups and precipitation mediated by hydroxyl groups. Moreover, soil application of MP-LDHs at 0.025 % dosage (w/w) demonstrated rapid immobilization efficacy, reducing available Cd content by 38.41 %-93.20 % within 24 h in alkaline and acidic soil. Subsequent analysis revealed that MP-LDHs exhibited pH-resilient performance in soil Cd immobilization. Potting experiment further validated practical applicability of MP-LDHs, reducing pakchoi shoot Cd concentration by 53.52 %-95.24 % at 0.025 %-0.1 % dosage. The findings established MP-LDHs as multifunctional amendments with ultralow application dosage requirements, excellent immobilization efficiency, and universal performance across varying soil pH levels, hence positioning MP-LDHs as a scalable solution for safe utilization of Cd-contaminated soil.
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