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生物炭对水稻幼苗中铁膜形成及锑积累的影响

Impact of Biochars on the Iron Plaque Formation and the Antimony Accumulation in Rice Seedings.

作者信息

Zhang Zihan, Jia Chuanxing, Gan Yandong, Wang Shiliang

机构信息

School of Life Sciences, Qufu Normal University, Qufu, 273165, China.

Second Geological Brigade of Shandong Geological Exploration Bureau, Shandong Lunan Geological Engineering Survey Institute, Yanzhou, 272100, China.

出版信息

Bull Environ Contam Toxicol. 2022 Dec;109(6):1088-1094. doi: 10.1007/s00128-022-03596-2. Epub 2022 Aug 27.

Abstract

Biochar was a kind of restoration material for soil pollution. Investigation about biochar amendment on the Sb transformation in rice plants is scarce. The pot experiment was conducted to evaluate the impact of biochar on the iron plaque formation in Sb-contaminated soil, and the translocation and accumulation of Sb in rice seedings. After the straw and husk biochar amendments (5% by weight), the levels increased on average by 20.0% and 16.0% for exchangeable Sb in soil, and by 233.3% and 74.8% for soluble Sb in pore water, respectively; but the residual fractions of Sb decreased by 18.5% and 15.1%. The iron plaque formation on rice root surface was enhanced, but its sequestration capacity for Sb decreased due to increasing competition for binding sites led by the elevated phosphorus and silicon levels in pore water after biochar application. The shoot Sb content sharply increased by 215.8% upon straw biochar application.

摘要

生物炭是一种土壤污染修复材料。关于生物炭对水稻植株中锑转化影响的研究较少。进行盆栽试验以评估生物炭对锑污染土壤中铁膜形成以及水稻幼苗中锑的转运和积累的影响。在添加秸秆生物炭和稻壳生物炭(重量比5%)后,土壤中交换性锑含量平均分别增加了20.0%和16.0%,孔隙水中可溶性锑含量分别增加了233.3%和74.8%;但锑的残留比例分别下降了18.5%和15.1%。水稻根表面铁膜的形成有所增强,但由于施用生物炭后孔隙水中磷和硅含量升高导致对结合位点的竞争增加,其对锑的固存能力下降。施用秸秆生物炭后地上部锑含量急剧增加了215.8%。

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