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土壤有机、半有机和无机改良剂的细颗粒对矿区土壤重金属(类)淋溶和生物有效性的缓解作用。

Effects of fine fractions of soil organic, semi-organic, and inorganic amendments on the mitigation of heavy metal(loid)s leaching and bioavailability in a post-mining area.

机构信息

Department of Energy Resources and Geosystem Engineering, College of Engineering, Sejong University, Seoul, 05006, South Korea.

Department of Environment and Energy, Sejong University, Seoul, 05006, South Korea.

出版信息

Chemosphere. 2021 May;271:129538. doi: 10.1016/j.chemosphere.2021.129538. Epub 2021 Jan 5.

Abstract

This study investigated the effects of soil amendments including biomasses (rice husk, RRH and maple leaf, RML), biochar (rice husk biochar, RHB and maple leaf biochar, MLB), and industrial by-products (red mud, RM and steel slag, SS), at two application rates (0, 1, and 2% w/w) on leaching and bioavailability of heavy metal(loid)s (HMs) (As, Cd, Cu, Pb, and Zn) in the presence of an Asteraceae (i.e., lettuce). Physicochemical properties of the soil (i.e., pH, EC, CEC, and HMs leaching) and plants were examined before and after amending. The addition of amendments significantly (p < 0.05) increased soil EC (from 100 to 180 μScm) and CEC (from 7.6 to 15 meq100 g). Soil pH from 6.7 ± 0.05 increased about 2 units with increasing in the application rate of MLB, RM, and SS, while it decreased about 0.8 units in RML amended soil. Soil amendments reduced the easily leachable fractions (exchangeable and carbonate) of HMs in the order of MLB > SS > RM > RHB. The average concentration of Cd, Cu, Pb, and Zn in plant roots and shoots decreased >30 wt% in biochars and industrial by-products amended soils, while biomasses mitigated As uptake in lettuce. Results demonstrated that adding maple-derived biochar combined with revegetation effectively immobilized HMs in a post-mining area beside an induce in plant growth parameters.

摘要

本研究调查了土壤改良剂(生物质[稻壳、RRH 和枫叶、RML]、生物炭[稻壳生物炭、RHB 和枫叶生物炭、MLB]和工业副产品[赤泥、RM 和钢渣、SS])在两个施用量(0、1 和 2%w/w)下对存在菊科植物(即生菜)时重金属(类)(As、Cd、Cu、Pb 和 Zn)浸出和生物有效性的影响。在添加改良剂前后,检查了土壤(即 pH、EC、CEC 和 HMs 浸出)和植物的理化性质。改良剂的添加显著(p < 0.05)增加了土壤 EC(从 100 增加到 180 μScm)和 CEC(从 7.6 增加到 15 meq100 g)。土壤 pH 从 6.7 ± 0.05 增加了约 2 个单位,随着 MLB、RM 和 SS 应用率的增加,而在 RML 改良土壤中,土壤 pH 降低了约 0.8 个单位。土壤改良剂降低了 HM 的易浸出分数(可交换和碳酸盐),顺序为 MLB > SS > RM > RHB。生物炭和工业副产品添加土壤中,植物根系和地上部分的 Cd、Cu、Pb 和 Zn 的平均浓度降低了>30wt%,而生物质减轻了生菜对 As 的吸收。结果表明,在采矿场旁添加枫叶衍生生物炭并进行植被恢复,有效地固定了 HMs,同时也促进了植物生长参数的提高。

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