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生物炭对镉污染土壤固定修复及环境质量的影响。

Effect of biochar on immobilization remediation of Cd⁃contaminated soil and environmental quality.

机构信息

College of Chemical and Environment Science, Shaanxi University of Technology, Hanzhong, Shaanxi, 723001, China; Qinba Mountains of Bio-Resource Collaborative Innovation Center of Southern Shaanxi Province, 723001, Hanzhong, China; Shaanxi Province Key Laboratory of Catalytic Foundation and Application, 723001, Hanzhong, China.

College of Chemical and Environment Science, Shaanxi University of Technology, Hanzhong, Shaanxi, 723001, China.

出版信息

Environ Res. 2022 Mar;204(Pt A):111840. doi: 10.1016/j.envres.2021.111840. Epub 2021 Aug 14.

Abstract

PURPOSE

Field experiments were conducted to explore the remediation effects of ordinary biochar and PEI-modified biochar on the Cd-contaminated yellow brown soil, and the improvement of soil environment quality in southern Shaanxi province, so as to provide theoretical basis and technical support for in-situ remediation of Cd-contaminated soil in southern Shaanxi province.

RESULTS AND DISCUSSION

Biochar applied in soil could increase the soil pH value, EC, ECEC, and SOC, and improve the soil physical and chemical properties to a certain extent. Biochar in soil could change the chemical form of Cd in soil, effectively passivate Cd in soil and reduce its bio-availability. Biochar could enhance the activities of catalase, urease, alkaline phosphatase and sucrase in soil to different degrees, and the four soil enzymes could be used as indicators of passivation effects of soil Cd by biochar. With biochar treatment, soil aggregates MWD and GMD increased to different degrees, so biochar could enhance soil stability. The biochar could decrease the content of Cd in different parts of wheat, the content of Cd in wheat grains had a highly significant positive correlation with the available content of Cd in soil, and highly significant or significant negative correlations with pH, SOC, EC, ECEC, and the activities of phosphatase, urease and sucrase in soil. Compared with ordinary biochar, the passivation effect of PEI-modified biochar on Cd was more significant.

CONLUSIONS

The results of the study indicated that ordinary biochar and PEI-modified biochar could passivate the Cd in soil, and remediate Cd-contaminated soil, and improve the soil environmental quality effectively, compared with ordinary biochar, the PEI-modified biochar produced batter.

摘要

目的

通过田间试验,研究普通生物炭和聚醚酰亚胺(PEI)改性生物炭对陕南黄褐土 Cd 污染的修复效果,以及对土壤环境质量的改善作用,为陕南地区 Cd 污染土壤的原位修复提供理论依据和技术支持。

结果与讨论

生物炭施入土壤后可提高土壤 pH 值、电导率(EC)、阳离子交换量(ECEC)和土壤有机碳(SOC)含量,在一定程度上改善土壤理化性质;生物炭可改变土壤中 Cd 的化学形态,有效钝化土壤中的 Cd,降低其生物有效性;生物炭可不同程度地增强土壤中过氧化氢酶、脲酶、碱性磷酸酶和蔗糖酶的活性,其中这 4 种土壤酶可作为生物炭对土壤 Cd 钝化效果的指示酶;生物炭处理可使土壤团聚体的质量中值直径(MWD)和几何平均直径(GMD)不同程度增大,增强土壤稳定性;生物炭处理可降低小麦各部位 Cd 的含量,小麦籽粒中 Cd 的含量与土壤有效态 Cd 含量呈极显著或显著正相关,与土壤 pH 值、SOC、EC、ECEC 和土壤中磷酸酶、脲酶和蔗糖酶的活性呈极显著或显著负相关;与普通生物炭相比,PEI 改性生物炭对 Cd 的钝化效果更显著。

结论

普通生物炭和 PEI 改性生物炭均可钝化土壤中的 Cd,有效修复 Cd 污染土壤,改善土壤环境质量,且 PEI 改性生物炭的效果优于普通生物炭。

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