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首页> 外文期刊>Archives of Agronomy and Soil Science >A field study of biochar application impact on adsorption and accumulation of Cd in paddy soil and rice
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A field study of biochar application impact on adsorption and accumulation of Cd in paddy soil and rice

机译:施用生物炭对水稻土壤中Cd吸附和积累影响的田间研究

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摘要

Biochar application to soil contaminated with potentially toxic elements has been paid particular attention as an effective amendment. This study was carried out to investigate the effect of wheat straw biochar on adsorption and accumulation of Cd2+ in paddy soil and rice. Biochar was applied once in four treatments of 10, 20, 30, and 40 t ha(-1) and a control check (CK) was set up in Changsha County, China. The results showed that under biochar addition the Cd2+ adsorption process was dominated by inhomogeneous multi-surface adsorption. Biochar significantly increased adsorption capacity for Cd2+ and the maximum of sorption at A40 was 2713 mg kg(-1). The available Cd concentration was also decreased by transforming S1 (decreased by 25, acid soluble Cd) to S2 (increased by 40, oxidizable Cd) and S3 (increased by 24, reducible Cd). Also, biochar application resulted in significant reduction in Cd concentration in rice by inhibiting migration from soil to rice. The study demonstrated that the biochar of 40 t ha(-1) reduced rice grain Cd concentration to 0.18 mg kg(-1), which was within the Chinese safety limit. Therefore, the dose of 40 t ha(-1) would be proper for reducing risk due to Cd contamination in agricultural production.
机译:作为有效的修正剂,将生物炭应用于被潜在有毒元素污染的土壤已受到特别关注。本研究旨在探究小麦秸秆生物炭对水稻土壤和水稻中Cd2+的吸附和积累的影响。在长沙县10、20、30和40 t ha(-1)的4个处理中施用生物炭1次,并设置对照检查(CK)。结果表明:生物炭添加下,Cd2+吸附过程以不均匀的多表面吸附为主;生物炭显著提高了Cd2+的吸附能力,在A40处的最大吸附量为2713 mg kg(-1)。将S1(降低25%,酸溶性Cd)转化为S2(增加40%,可氧化Cd)和S3(增加24%,可还原Cd)也降低了有效Cd浓度。此外,生物炭的施用通过抑制从土壤到水稻的迁移,导致水稻中Cd浓度的显着降低。研究表明,40 t ha(-1)的生物炭可将稻粒Cd浓度降低至0.18 mg kg(-1),均在中国安全限度范围内。因此,40 t ha(-1)的剂量对于降低农业生产中由于Cd污染而产生的风险是适当的。

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