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重金属污染土壤修复的过去、现在及未来趋势——实际土壤污染事件中应用的修复技术

Past, present and future trends in the remediation of heavy-metal contaminated soil - Remediation techniques applied in real soil-contamination events.

作者信息

Sánchez-Castro Iván, Molina Lázaro, Prieto-Fernández María-Ángeles, Segura Ana

机构信息

Estación Experimental Del Zaidín (CSIC), Profesor Albareda 1, 18008, Granada, Spain.

Misión Biolóxica de Galicia (CSIC), Sede Santiago de Compostela, Avda de Vigo S/n. Campus Vida, 15706, Santiago de Compostela, Spain.

出版信息

Heliyon. 2023 May 27;9(6):e16692. doi: 10.1016/j.heliyon.2023.e16692. eCollection 2023 Jun.

Abstract

Most worldwide policy frameworks, including the United Nations Sustainable Development Goals, highlight soil as a key non-renewable natural resource which should be rigorously preserved to achieve long-term global sustainability. Although some soil is naturally enriched with heavy metals (HMs), a series of anthropogenic activities are known to contribute to their redistribution, which may entail potentially harmful environmental and/or human health effects if certain concentrations are exceeded. If this occurs, the implementation of rehabilitation strategies is highly recommended. Although there are many publications dealing with the elimination of HMs using different methodologies, most of those works have been done in laboratories and there are not many comprehensive reviews about the results obtained under field conditions. Throughout this review, we examine the different methodologies that have been used in real scenarios and, based on representative case studies, we present the evolution and outcomes of the remediation strategies applied in real soil-contamination events where legacies of past metal mining activities or mine spills have posed a serious threat for soil conservation. So far, the best efficiencies at field-scale have been reported when using combined strategies such as physical containment and assisted-phytoremediation. We have also introduced the emerging problem of the heavy metal contamination of agricultural soils and the different strategies implemented to tackle this problem. Although remediation techniques used in real scenarios have not changed much in the last decades, there are also encouraging facts for the advances in this field. Thus, a growing number of mining companies publicise in their webpages their soil remediation strategies and efforts; moreover, the number of scientific publications about innovative highly-efficient and environmental-friendly methods is also increasing. In any case, better cooperation between scientists and other soil-related stakeholders is still required to improve remediation performance.

摘要

大多数全球政策框架,包括联合国可持续发展目标,都强调土壤是一种关键的不可再生自然资源,应严格加以保护以实现全球长期可持续发展。虽然有些土壤天然富含重金属,但已知一系列人为活动会导致其重新分布,如果超过一定浓度,可能会对环境和/或人类健康产生潜在有害影响。如果发生这种情况,强烈建议实施修复策略。虽然有许多出版物介绍了使用不同方法去除重金属的情况,但这些工作大多是在实验室进行的,对于在实地条件下获得的结果,全面的综述并不多。在本综述中,我们研究了在实际场景中使用的不同方法,并基于代表性案例研究,介绍了在过去金属采矿活动遗留问题或矿场泄漏对土壤保护构成严重威胁的实际土壤污染事件中应用的修复策略的演变和成果。到目前为止,在实地规模上,使用物理隔离和辅助植物修复等联合策略时报告了最佳效率。我们还介绍了农业土壤重金属污染这一新兴问题以及为解决该问题而实施的不同策略。尽管在过去几十年中,实际场景中使用的修复技术变化不大,但该领域的进展也有令人鼓舞的事实。因此,越来越多的矿业公司在其网页上公布他们的土壤修复策略和努力;此外,关于创新的高效且环保方法的科学出版物数量也在增加。无论如何,科学家与其他与土壤相关的利益相关者之间仍需要更好地合作,以提高修复效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b75/10360604/473a9c1424fa/gr1.jpg

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