College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha, 410128, China.
Hunan Engineering Laboratory for Pollution Control and Waste Utilization in Swine Production, Changsha, 410128, People's Republic of China.
Environ Sci Pollut Res Int. 2020 May;27(14):16069-16085. doi: 10.1007/s11356-020-08282-6. Epub 2020 Mar 16.
Accumulation of heavy metals in agricultural soils due to human production activities-mining, fossil fuel combustion, and application of chemical fertilizers/pesticides-results in severe environmental pollution. As the transmission of heavy metals through the food chain and their accumulation pose a serious risk to human health and safety, there has been increasing attention in the investigation of heavy metal pollution and search for effective soil remediation technologies. Here, we summarized and discussed the basic principles, strengths and weaknesses, and limitations of common standalone approaches such as those based on physics, chemistry, and biology, emphasizing their incompatibility with large-scale applications. Moreover, we explained the effects, advantages, and disadvantages of the combinations of common single repair approaches. We highlighted the latest research advances and prospects in phytoremediation-chemical, phytoremediation-microbe, and phytoremediation-genetic engineering combined with remediation approaches by changing metal availability, improving plant tolerance, promoting plant growth, improving phytoextraction and phytostabilization, etc. We then explained the improved safety and applicability of phytoremediation combined with other repair approaches compared to common standalone approaches. Finally, we established a prospective research direction of phytoremediation combined with multi-technology repair strategy.
由于人类生产活动(采矿、化石燃料燃烧和化肥/农药的应用)导致重金属在农业土壤中的积累,造成了严重的环境污染。由于重金属通过食物链的传递及其在体内的积累对人类健康和安全构成严重威胁,因此人们越来越关注重金属污染的调查和寻找有效的土壤修复技术。在这里,我们总结和讨论了基于物理、化学和生物学等常见独立方法的基本原理、优缺点及其局限性,强调了它们与大规模应用的不兼容性。此外,我们解释了常见单一修复方法的组合的效果、优点和缺点。我们强调了通过改变金属的可用性、提高植物的耐受性、促进植物生长、改善植物提取和植物稳定等方法,植物修复-化学、植物修复-微生物和植物修复-遗传工程与修复方法相结合的最新研究进展和前景。然后,我们解释了与常见的单一方法相比,植物修复与其他修复方法相结合在提高安全性和适用性方面的优势。最后,我们建立了一个植物修复与多技术修复策略相结合的前瞻性研究方向。