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首页> 外文期刊>Environmental Science and Pollution Research >Cd, Pb, and Zn mobility and (bio)availability in contaminated soils from a former smelting site amended with biochar
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Cd, Pb, and Zn mobility and (bio)availability in contaminated soils from a former smelting site amended with biochar

机译:CD,Pb和Zn Mobility和(Bio)污染的土壤中的可用性来自一位前冶炼场的污染土壤修正了Biochar

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摘要

Biochar is a potential candidate for the remediation of metal(loid)-contaminated soils. However, the mechanisms of contaminant-biochar retention and release depend on the amount of soil contaminants and physicochemical characteristics, as well as the durability of the biochar contaminant complex, which may be related to the pyrolysis process parameters. The objective of the present study was to evaluate, in a former contaminated smelting site, the impact of two doses of wood biochar (2 and 5% w/w) on metal immobilization and/or phytoavailability and their effectiveness in promoting plant growth in mesocosm experiments. Different soil mixtures were investigated. The main physicochemical parameters and the Cd, Pb, and Zn contents were determined in soil and in soil pore water. Additionally, the growth, dry weight, and metal concentrations were analyzed in the different dwarf bean plant (Phaseolus vulgaris L.) organs tested. Results showed that the addition of biochar at two doses (2 and 5%) improved soil conditions by increasing soil pH, electrical conductivity, and water holding capacity. Furthermore, the application of biochar (5%) to metal-contaminated soil reduced Cd, Pb, and Zn mobility and availability, and hence their accumulation in the different P. vulgaris L. organs. In conclusion, the data clearly demonstrated that biochar application can be effectively used for Cd, Pb, and Zn immobilization, thereby reducing their bioavailability and phytotoxicity.
机译:生物炭是一种潜在的候选物,用于修复金属(懒惰)土壤。然而,污染物 - 生物炭腐蚀和释放的机制取决于土壤污染物和物理化学特性的量,以及生物炭污染物复合物的耐久性,其可能与热解过程参数有关。本研究的目的是在前一种污染的冶炼部位评估两种剂量的木质生物炭(2和5%w / w)对金属固定化和/或植物的影响及其在促进植物生长的植物生长方面的影响实验。研究了不同的土壤混合物。在土壤和土壤孔隙水中测定主要物理化学参数和Cd,Pb和Zn含量。另外,在不同的矮化豆植物中分析生长,干重和金属浓度(Phopololus vulgaris L.)器官。结果表明,通过增加土壤pH,导电性和水持能力,在两剂(2和5%)的生物炭加入改善土壤条件。此外,将生物炭(5%)应用于金属污染的土壤降低CD,Pb和Zn流动性和可用性,因此它们在不同的P.Vulgaris L.器官中的积累。总之,数据清楚地证明了生物炭施用可以有效地用于Cd,Pb和Zn固定,从而降低它们的生物利用度和植物毒性。

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