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放射性元素的植物修复:可能性与挑战——特别关注农业方面

Phytoremediation of radioactive elements, possibilities and challenges: special focus on agricultural aspects.

作者信息

Singh Gursharan, Bhadange Surabhi, Bhawna Fnu, Shewale Pratiksha, Dahiya Rahul, Aggarwal Ashish, Manju Fnu, Arya Shailendra Kumar

机构信息

Department of Medical Laboratory Sciences, Lovely Professional University, Phagwara, India.

UPES. Energy Acres Building, Bidholi, India.

出版信息

Int J Phytoremediation. 2023;25(1):1-8. doi: 10.1080/15226514.2022.2043239. Epub 2022 Mar 4.

Abstract

The radioactive contamination has been reported frequently from agricultural lands and ground water. The main reason behind the radioactive pollution is unprotected mining of radioactive elements, unsafe discard of nuclear industrial waste, military applications, dumping of medically used radioisotopes, globally situated (>400) nuclear power plants and use of phosphate fertilizers in farming. Radionuclides are well known potent carcinogens that may cause the various types of cancers to human and animals due to the long exposure to radioactive contaminated sites. To get rid of from the radioactive pollution there is a need of practically successful and cost effective bioremediation technologies that should able to decontaminate the effected lands and water to benefit the mankind. Microbial and phytoremediation are well studied methods for decreasing or gradually eliminating the radioactive contaminants. In this review, we discussed the different strategies of microbial and phytoremediation of radionuclides and recent advancements, that can play the major role in bioremediation of soil and water.

摘要

农业用地和地下水频繁出现放射性污染的报道。放射性污染背后的主要原因是放射性元素的无防护开采、核工业废料的不安全丢弃、军事应用、医用放射性同位素的倾倒、全球各地(超过400座)的核电站以及农业中磷肥的使用。放射性核素是众所周知的强效致癌物,由于长期暴露于放射性污染场地,可能会导致人类和动物患上各种癌症。为了消除放射性污染,需要切实可行且具有成本效益的生物修复技术,这些技术应能够净化受影响的土地和水,造福人类。微生物修复和植物修复是减少或逐步消除放射性污染物的经过充分研究的方法。在本综述中,我们讨论了放射性核素微生物修复和植物修复的不同策略以及最新进展,这些进展在土壤和水的生物修复中可发挥重要作用。

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