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在汞污染土壤的诱导植物提取过程中,将绿色废弃物堆肥作为改良剂。

Green waste compost as an amendment during induced phytoextraction of mercury-contaminated soil.

作者信息

Smolinska Beata

机构信息

Institute of General Food Chemistry, Department of Biotechnology and Food Sciences, Lodz University of Technology, 4/10 Stefanowskiego Street, 90-924, Lodz, Poland,

出版信息

Environ Sci Pollut Res Int. 2015 Mar;22(5):3528-37. doi: 10.1007/s11356-014-3601-5. Epub 2014 Sep 24.

Abstract

Phytoextraction of mercury-contaminated soils is a new strategy that consists of using the higher plants to make the soil contaminant nontoxic. The main problem that occurs during the process is the low solubility and bioavailability of mercury in soil. Therefore, some soil amendments can be used to increase the efficiency of the Hg phytoextraction process. The aim of the investigation was to use the commercial compost from municipal green wastes to increase the efficiency of phytoextraction of mercury-contaminated soil by Lepidium sativum L. plants and determine the leaching of Hg after compost amendment. The result of the study showed that Hg can be accumulated by L. sativum L. The application of compost increased both the accumulation by whole plant and translocation of Hg to shoots. Compost did not affect the plant biomass and its biometric parameters. Application of compost to the soil decreased the leaching of mercury in both acidic and neutral solutions regardless of growing medium composition and time of analysis. Due to Hg accumulation and translocation as well as its potential leaching in acidic and neutral solution, compost can be recommended as a soil amendment during the phytoextraction of mercury-contaminated soil.

摘要

汞污染土壤的植物提取是一种新策略,该策略利用高等植物使土壤污染物无毒化。在此过程中出现的主要问题是土壤中汞的低溶解度和生物有效性。因此,可使用一些土壤改良剂来提高汞植物提取过程的效率。本研究的目的是利用城市绿色废弃物制成的商业堆肥来提高受汞污染土壤中蒜芥茄对汞的植物提取效率,并测定堆肥改良后汞的淋溶情况。研究结果表明,蒜芥茄能够积累汞。堆肥的施用增加了整株植物对汞的积累以及汞向地上部的转运。堆肥不影响植物生物量及其生物计量参数。无论生长介质组成和分析时间如何,向土壤中施用堆肥均能降低酸性和中性溶液中汞的淋溶。由于汞的积累、转运以及其在酸性和中性溶液中的潜在淋溶,在汞污染土壤的植物提取过程中,堆肥可作为一种土壤改良剂推荐使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f426/4334079/b088a8fc58a6/11356_2014_3601_Fig1_HTML.jpg

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