[低分子量有机酸在重金属污染土壤植物修复中的作用及机制]。

Zhi-Guo Fang, Jun-Ting Xie, Qing Yang, Ye-Zhen Lu, Hai Huang, Yun-Xian Zhu, Si-Min Yin, Xin-Tao Wu, Shao-Ting Du
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引用次数: 1

摘要

植物修复是利用植物的物理和化学作用去除污染土壤中重金属的一种环境友好技术。这可以有效减少二次污染物的产生,在经济上是可行的。低分子量有机酸(LMWOAs)具有生物可降解和环境友好性,在重金属污染土壤的植物修复中具有很强的应用潜力。本文阐述了低分子woas在植物修复中的作用和机制,旨在:①调节根、茎、叶的发育;增加植物生物量;加强植物对重金属的富集;②改善光合作用,增强植物抗性,促进对重金属的耐受性;③改变根际土壤性质,提高根际微生物活性,促进重金属的吸收;④改变重金属形态,降低重金属毒性,提高运输效率。此外,本研究还探讨了低分子woas在加强重金属污染土壤植物修复中的优势、劣势及应用。最后,提出了LMWOAs在重金属污染土壤植物修复中的研究方向,对LMWOAs在未来植物修复中的研究和应用具有现实的科学意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Role and Mechanism of Low Molecular-Weight-Organic Acids in Enhanced Phytoremediation of Heavy Metal Contaminated Soil].

Phytoremediation is an environmentally friendly technology to remove heavy metals from polluted soil by using the physical and chemical roles of plants. This can effectively reduce the production of secondary pollutants and is economically feasible. Low molecular-weight-organic acids (LMWOAs) are biodegradable and environmentally friendly and have strong application potential in the phytoremediation of heavy metal-contaminated soils. The role and mechanism of LMWOAs in phytoremediation was elaborated on in this study with the aim to:① regulate the development of roots, stems, and leaves; increase plant biomass; and enhance plant enrichment of heavy metals; ② improve photosynthesis, enhance plant resistance, and promote tolerance to heavy metals; ③ change the properties of rhizosphere soil, improve rhizosphere microbial activity, and promote the absorption of heavy metals; and ④ change the form of heavy metals, reduce the toxicity of heavy metals, and improve transport efficiency. Moreover, the advantages, disadvantages, and application of LMWOAs in enhanced phytoremediation of heavy metal-contaminated soil were explored in this study. Finally, the research direction of LMWOAs in the phytoremediation of heavy metal-contaminated soils was proposed, which will have practical scientific significance for the research and application of LMWOAs in future phytoremediation.

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