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生物炭在低分子量有机酸存在下固定土壤中砷,但不固定阳离子金属。

Biochar immobilizes soil-borne arsenic but not cationic metals in the presence of low-molecular-weight organic acids.

机构信息

School of Environment and Life Science, University of Salford, Greater Manchester M5 4WT, United Kingdom.

School of Environment and Life Science, University of Salford, Greater Manchester M5 4WT, United Kingdom.

出版信息

Sci Total Environ. 2018 Jul 15;630:1188-1194. doi: 10.1016/j.scitotenv.2018.02.319. Epub 2018 Mar 7.

Abstract

A batch experiment was conducted to examine the effects of biochar on the behaviour of soil-borne arsenic and metals that were mobilized by three low-molecular-weight organic acids. In the presence of citric acid, oxalic acid and malic acid at a molar concentration of 0.01M, the surface of biochar was protonated, which disfavours adsorption of the cationic metals released from the soil by organic acid-driven mobilization. In contrast, the oxyanionic As species were re-immobilized by the protonated biochar effectively. Biochar could also immobilize oxyanionic Cr species but not cationic Cr species. The addition of biochar increased the level of metals in the solution due to the release of the biochar-borne metals under attack by LMWOAs via cation exchange. Biochar could also have the potential to enhance reductive dissolution of iron and manganese oxides in the soil, leading to enhanced release of trace elements bound to these oxides. The findings obtained from this study have implications for evaluating the role of biochar in immobilizing trace elements in rhizosphere. Adsorption of cationic heavy metals on biochar in the presence of LMWOAs is unlikely to be a mechanism responsible for the impeded uptake of heavy metals by plants growing in heavy metal-contaminated soils.

摘要

进行了一批实验,以研究生物炭对三种低分子量有机酸(柠檬酸、草酸和苹果酸)所引起的土壤中砷和金属活性的影响。在摩尔浓度为 0.01M 的有机酸存在下,生物炭表面质子化,不利于从土壤中释放的被有机酸驱动移动的阳离子金属的吸附。相比之下,质子化的生物炭能有效地重新固定砷的含氧阴离子物种。生物炭还可以固定含氧阴离子铬物种,但不能固定阳离子铬物种。生物炭的添加增加了溶液中金属的水平,因为 LMWOAs 通过阳离子交换对生物炭所携带的金属的攻击,导致金属的释放。生物炭还有可能增强土壤中铁和锰氧化物的还原溶解,导致与这些氧化物结合的微量元素释放增强。本研究的结果对评估生物炭在根际固定痕量元素中的作用具有重要意义。在低分子量有机酸存在下,阳离子重金属在生物炭上的吸附不太可能是重金属污染土壤中植物吸收重金属受阻的原因。

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