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老化对添加堆肥和生物炭土壤中重金属有效性的影响:土壤及改良剂性质变化评估

Effect of ageing on the availability of heavy metals in soils amended with compost and biochar: evaluation of changes in soil and amendment properties.

作者信息

Venegas A, Rigol A, Vidal M

机构信息

Departament de Química Analítica, Universitat de Barcelona, Martí i Franquès 1-11, 08028, Barcelona, Spain.

出版信息

Environ Sci Pollut Res Int. 2016 Oct;23(20):20619-20627. doi: 10.1007/s11356-016-7250-8. Epub 2016 Jul 28.

Abstract

Remediation strategies using soil amendments should consider the time dependence of metal availability to identify amendments that can sustainably reduce available pollutant concentrations over time. Drying-wetting cycles were applied on amendments, soils and soil + amendment mixtures, to mimic ageing at field level and investigate its effect on extractable Cd, Cu, Ni, Pb and Zn concentrations from three contaminated soils. The amendments investigated were municipal waste organic compost and biochars. The amendments, soils and mixtures were characterised by their physicochemical properties at different ageing times. The amendments were also characterised in terms of sorption capacity for Cd and Cu. The sorption capacity and the physicochemical properties of the amendments remained constant over the period examined. When mixed with the soils, amendments, especially the compost, immediately reduced the extractable metals in the soils with low pH and acid neutralisation capacity, due to the increase in pH and buffering capacity of the mixtures. The amendments had a relatively minor impact on the metal availability concentrations for the soil with substantially high acid neutralisation capacity. The most important changes in extractable metal concentrations were observed at the beginning of the experiments, ageing having a minor effect on metal concentrations when compared with the initial effect of amendments.

摘要

使用土壤改良剂的修复策略应考虑金属有效性的时间依赖性,以确定能够随着时间的推移可持续降低有效污染物浓度的改良剂。对改良剂、土壤以及土壤与改良剂的混合物进行干湿循环处理,以模拟田间老化过程,并研究其对三种污染土壤中可提取镉、铜、镍、铅和锌浓度的影响。所研究的改良剂为城市有机垃圾堆肥和生物炭。在不同老化时间对改良剂、土壤和混合物的物理化学性质进行了表征。还对改良剂对镉和铜的吸附能力进行了表征。在所研究的时间段内,改良剂的吸附能力和物理化学性质保持不变。当与土壤混合时,改良剂,尤其是堆肥,会立即降低低pH值和酸中和能力土壤中的可提取金属含量,这是由于混合物的pH值和缓冲能力增加所致。对于酸中和能力相当高的土壤,改良剂对金属有效浓度的影响相对较小。可提取金属浓度的最重要变化发生在实验开始时,与改良剂的初始影响相比,老化对金属浓度的影响较小。

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