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首页> 外文期刊>RSC Advances >Efficiency of biochar and compost (or composting) combined amendments for reducing Cd, Cu, Zn and Pb bioavailability, mobility and ecological risk in wetland soil
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Efficiency of biochar and compost (or composting) combined amendments for reducing Cd, Cu, Zn and Pb bioavailability, mobility and ecological risk in wetland soil

机译:生物炭和堆肥(或堆肥)组合修正案的有效性,旨在减少湿地土壤中Cd,Cu,Zn和Pb的生物利用度,迁移率和生态风险

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摘要

Biochar and compost are two inexpensive and effective in situ remediation materials for heavy metal contaminated soils. The interaction between biochar and compost (or composting material) calls for further studies to maximize the potential benefits of both. In this study, we examined the short-time efficiency of compost (C), biochar (B), a mixture of compost and biochar (B + C), composted biochar (Bced) and biochar-composting material (BCing, biochar and biomass mixed before composting) for reducing bioavailability, mobility and ecological risk of Cd, Cu, Zn and Pb in wetland soil. Adding these amendment materials to the contaminated soil changed the total organic carbon (TOC), waterextractable organic carbon (WEOC) and pH. All the materials decreased the available Cd, Cu, Zn and Pb concentrations in the soil (compost increased the available Cu concentration) and Cd, Cu, Zn and Pb concentrations in pore water. As a whole, soil with Bced and BCing had the biggest decrease in these concentrations. These results indicated that all the materials reduced the bioavailability and mobility of heavy metals (compost improved the bioavailability of Cu), and Bced and BCing had the greatest capacity for that. The materials improved soil microbial biomass and BCing created the biggest improvement, which suggested all the amendment materials reduced the ecological risk of heavy metals and BCing had the greatest capacity for that.
机译:生物炭和堆肥是用于重金属污染土壤的两种廉价且有效的原位修复材料。生物炭和堆肥(或堆肥材料)之间的相互作用需要进一步研究,以使两者的潜在利益最大化。在这项研究中,我们研究了堆肥(C),生物炭(B),堆肥和生物炭的混合物(B + C),堆肥生物炭(Bced)和生物炭堆肥材料(BCing,生物炭和生物质)的短期效率。在堆肥之前混合)以降低湿地土壤中Cd,Cu,Zn和Pb的生物利用度,迁移率和生态风险。将这些改良剂添加到受污染的土壤中,改变了总有机碳(TOC),水可提取有机碳(WEOC)和pH值。所有材料均降低了土壤中的有效Cd,Cu,Zn和Pb浓度(堆肥增加了有效Cu的浓度)以及孔隙水中Cd,Cu,Zn和Pb的浓度。总体而言,含Bced和BCing的土壤中这些浓度的下降幅度最大。这些结果表明,所有材料均降低了重金属的生物利用度和迁移率(堆肥提高了铜的生物利用度),而Bced和BCing具有最大的吸收能力。该材料改善了土壤微生物的生物量,而BCing产生了最大的改善,这表明所有改良材料均降低了重金属的生态风险,而BCing具有最大的能力。

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