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白羽扇豆(Lupinus albus L.)与金属积累型作物轮作:一种提高土壤植物修复效益的策略。

The rotation of white lupin (Lupinus albus L.) with metal-accumulating plant crops: a strategy to increase the benefits of soil phytoremediation.

作者信息

Fumagalli Pietro, Comolli Roberto, Ferrè Chiara, Ghiani Alessandra, Gentili Rodolfo, Citterio Sandra

机构信息

Department of Earth and Environmental Sciences, University of Milano-Bicocca, Piazza della Scienza n. 1, 20126 Milan, Italy.

出版信息

J Environ Manage. 2014 Dec 1;145:35-42. doi: 10.1016/j.jenvman.2014.06.001. Epub 2014 Jul 1.

Abstract

Most of the plants employed to remove metals from contaminated soils are annuals and have a seed-to-seed life cycle of a few months, usually over spring and summer. Consequently, for most of the year, fields are not actively cleaned but are completely bare and subject to erosion by water and wind. The objective of this study was to evaluate the benefits of using Lupinus albus as a winter crop in a rotation sequence with a summer crop ideally selected for phytoextraction, such as industrial hemp. Lupin plants were grown in two alkaline soil plots (heavy metal-contaminated and uncontaminated) of approximately 400 m(2) each after the cultivation and harvest of industrial hemp. A smaller-scale parallel pot experiment was also performed to better understand the lupin behavior in increasing concentrations of Cd, Cu, Ni and Zn. White lupin grew well in alkaline conditions, covering the soil during the winter season. In few months plants were approximately 40-50 cm high in both control and contaminated plots. In fields where the bioavailable fraction of metals was low (less than 12%), plants showed a high tolerance to these contaminants. However, their growth was affected in some pot treatments in which the concentrations of assimilable Cu, Zn and Ni were higher, ranging from approximately 40-70% of the total concentrations. The lupin's ability to absorb heavy metals and translocate them to shoots was negligible with respect to the magnitude of contamination, suggesting that this plant is not suitable for extending the period of phytoextraction. However, it is entirely exploitable as green manure, avoiding the application of chemical amendments during phytoremediation. In addition, in polluted fields, white lupin cultivation increased the soil concentration of live bacteria and the bioavailable percentage of metals. On average live bacteria counts per gram of soil were 65×10(6)±18×10(6) and 99×10(6)±22*10(6) before and after cultivation, respectively. The percentages of bioavailable Cu, Pb, Ni, Zn and Cr, which were 5.7±0.7, 5.3±1.7, 1.2±0.1, 12±1.5 and 0.1±0.02%, respectively, before lupin growth, increased to 9.6±1.6, 7±2, 2±0.3, 14±1.5 and 0.1±0.02% after lupin harvest. On the whole, our results indicate that the winter cultivation of white lupin in sequence with a metal-accumulator summer crop can improve the recovery of soil quality during the phytoextraction period. It improves the safety of the area, limiting additional ecological and human health problems, and enhances soil health by avoiding the use of chemical amendments and by increasing the levels of viable microorganisms.

摘要

大多数用于从受污染土壤中去除金属的植物都是一年生植物,从种子到种子的生命周期为几个月,通常在春季和夏季。因此,一年中的大部分时间里,田地并没有得到积极的清理,而是完全裸露,容易受到水蚀和风蚀。本研究的目的是评估在轮作序列中使用白羽扇豆作为冬季作物的益处,夏季作物理想地选择用于植物提取,如工业大麻。在工业大麻种植和收获后,羽扇豆植株种植在两个碱性土壤地块(重金属污染地块和未污染地块)中,每个地块面积约400平方米。还进行了一个小规模的平行盆栽实验,以更好地了解羽扇豆在镉、铜、镍和锌浓度增加时的行为。白羽扇豆在碱性条件下生长良好,在冬季覆盖土壤。几个月内,对照地块和污染地块的植株高度约为40-50厘米。在金属生物可利用部分较低(低于12%)的田地中,植株对这些污染物表现出较高的耐受性。然而,在一些盆栽处理中,当可同化的铜、锌和镍浓度较高时,其生长受到影响,这些浓度约占总浓度的40-70%。就污染程度而言,羽扇豆吸收重金属并将其转运到地上部分的能力微不足道,这表明这种植物不适合延长植物提取期。然而,它完全可作为绿肥利用,避免在植物修复过程中施用化学改良剂。此外,在污染田地中,种植白羽扇豆增加了土壤中活细菌的浓度以及金属的生物可利用百分比。平均而言,每克土壤中的活细菌数量在种植前和种植后分别为65×10⁶±18×10⁶和99×10⁶±22×10⁶。在羽扇豆生长前,生物可利用的铜、铅、镍、锌和铬的百分比分别为5.7±0.7、5.3±1.7、1.2±0.1、12±1.5和0.1±0.02%,在羽扇豆收获后分别增加到9.6±1.6、7±2、2±0.3、14±1.5和0.1±0.02%。总体而言,我们的结果表明,与金属积累型夏季作物轮作种植白羽扇豆可以在植物提取期间改善土壤质量的恢复。它提高了该区域的安全性,减少了额外的生态和人类健康问题,并通过避免使用化学改良剂和增加活微生物水平来增强土壤健康。

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