A review of research progress on prevention and control technologies for arsenic and cadmium composite pollution in paddy soil†

IF 3.5 Q3 ENGINEERING, ENVIRONMENTAL
Hao Cui, Bingbing Chen, Fan Yang, Tao Han, Rui Zeng, Lidan Lei and Songqing Liu
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引用次数: 0

Abstract

Arsenic (As) and cadmium (Cd) are among the most common potentially toxic elements (PTEs) found in paddy soil, where they can easily transfer from soil to rice grains. The widespread contamination of paddy soil with As and Cd, either individually or in combination, poses a significant threat to food security and human health in China. As and Cd exhibit different behaviours in soil, making the simultaneous management of As–Cd composite pollution a major technical challenge for safe rice production. This review summarizes several practical techniques for synchronously controlling uptake and translocation of As and Cd in rice plants, including water management, soil passivation, leaching technology, electrokinetic remediation, phytoremediation, selection of low-accumulation rice varieties, and application of foliar inhibitors. The treatment effects, mechanisms, and constraints of each technique are analyzed, and the development directions of the main control technologies are proposed. It emphasizes the importance of developing regionally adaptive, comprehensive technology models to manage paddy soil co-contaminated with Cd and As and ensure the safe production of rice.

Abstract Image

稻田土壤砷镉复合污染防控技术研究进展综述†。
砷(As)和镉(Cd)是水稻土中最常见的潜在有毒元素(pte),它们很容易从土壤转移到稻谷中。砷和镉在中国水稻土中的普遍污染,无论是单独污染还是复合污染,都对中国的粮食安全和人类健康构成了重大威胁。砷和镉在土壤中表现出不同的行为,使得砷和镉复合污染的同时管理成为水稻安全生产的主要技术挑战。本文综述了同步控制水稻As和Cd吸收和转运的几种实用技术,包括水分管理、土壤钝化、淋溶技术、电动修复、植物修复、低积累水稻品种选择和叶面抑制剂的应用。分析了各种技术的治理效果、机理和制约因素,提出了主要治理技术的发展方向。强调开发具有区域适应性的综合治理镉砷共污染水稻土的技术模式,确保水稻安全生产的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.90
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