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Organic soil additives for the remediation of cadmium contaminated soils and their impact on the soil-plant system: A review

机译:修复镉污染土壤的有机土壤添加剂及其对土壤植物系统的影响:综述

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摘要

Immobilization is among the most-suitable strategies to remediate cadmium (Cd) contaminated sites. Organic additives (OAs) have emerged as highly efficient and environment-friendly immobilizers to eradicate Cd contamination in a wide range of environments. This review article is intended to critically illustrate the role of different OAs in Cd immobilization and to highlight the key findings in this context. Owing to the unique structural features (high surface area, cation exchange capacity (CEC), presence of many functional groups), OAs have shown strong capability to remediate Cd polluted soils by adsorption, electrostatic interaction, complexation and precipitation. Research data is compiled about the efficiency of different OAs (bio-waste, biochar, activated carbon, composts, manure, and plant residues) applied alone or in combination with other amendments in stabilization and renovation of contaminated sites. In addition to their role in remediation, OAs are widely advocated for being classical sources of essential plant nutrients and as agents to improve the soil health and quality which has also been focused in this review. OAs may contain considerable amounts of metals and therefore it becomes essential to assess their final contribution. Elimination of Cd contamination is essential to attenuate the contaminant effect and to produce the safe food. Therefore, deployment of environment-friendly remediation strategies (alone or in combination with other suitable technologies) should be adopted especially at early stages of contamination.
机译:固定化是补救镉(Cd)污染场所的最合适策略之一。有机添加剂(OAs)已成为一种高效且环保的固定剂,可在多种环境中消除Cd污染。这篇综述文章旨在批判性地说明不同OA在Cd固定化中的作用,并强调在此背景下的关键发现。由于其独特的结构特征(高表面积,阳离子交换能力(CEC),存在许多官能团),OAs具有通过吸附,静电相互作用,络合和沉淀来修复Cd污染土壤的强大能力。研究数据汇总了单独使用或与其他修正案结合使用以稳定和修复受污染场地的不同OA(生物废物,生物炭,活性炭,堆肥,肥料和植物残渣)的效率。除了在修复中的作用外,OA还被广泛认为是植物必需养分的经典来源,并且是改善土壤健康和质量的媒介,这也是本文的重点。 OA中可能包含大量金属,因此评估其最终贡献至关重要。消除Cd污染对于减轻污染影响和生产安全食品至关重要。因此,应采用环境友好型补救策略(单独或与其他合适技术结合使用),尤其是在污染初期。

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