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Distribution and Accumulation of Copper and Cadmium in Soil–Rice System as Affected by Soil Amendments

机译:土壤改良剂对铜-镉在土壤-水稻系统中的分布与累积的影响

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摘要

The effects of seven amendments on the distribution and accumulation of copper and cadmium in a soil–rice system were investigated using a pot experiment. Results showed that application of limestone, calcium magnesium phosphate (Ca–Mg–P fertilizer), calcium silicate (silicon fertilizer), Chinese milk vetch, pig manure, and peat significantly decreased the concentrations of Cu and Cd in rice roots by 24.8–75.3% and 9.7–49.9%, respectively. However, no significant difference was observed between zinc sulfate (zinc fertilizer) and the control treatment. The concentrations of Cu and Cd in different parts of rice followed the order: root > straw > grain, and all amendments restrained the transfer of Cu and Cd from rice root to stem. Copper and Cd concentrations in rice stems at the tillering stage were the highest, and then decreased from the tillering stage to the heading stage. However, they increased again at the ripening stage. The results also showed that application of amendments changed Cu and Cd solubility in soil and decreased their bioavailability, which resulted in the reduction of Cu and Cd uptake by rice. Significant correlations between the concentrations of Cu and Cd in soil solutions and in rice stems were found. The result demonstrated that limestone has the best efficiency among all the amendments used in reducing Cu and Cd contamination to rice production.
机译:使用盆栽试验研究了七个修正对土壤-水稻系统中铜和镉的分布和累积的影响。结果表明,石灰石,磷酸钙镁(Ca–Mg–P肥料),硅酸钙(硅肥),紫云英,猪粪和泥炭的施用显着降低了稻米根中Cu和Cd的含量24.8–75.3 %和9.7-49.9%。然而,在硫酸锌(锌肥)和对照处理之间没有观察到显着差异。水稻不同部位的铜和镉的含量顺序为:根>稻草>谷物,所有的限制都抑制了铜和镉从稻根到茎的转移。分rice期水稻茎中的铜和镉浓度最高,然后从分till期到抽穗期下降。但是,它们在成熟阶段又增加了。结果还表明,施用改良剂改变了土壤中铜和镉的溶解度并降低了它们的生物利用度,从而减少了水稻对铜和镉的吸收。发现土壤溶液和水稻茎中的铜和镉的含量之间存在显着的相关性。结果表明,在减少水稻生产中铜和镉污染的所有改良剂中,石灰石的效率最高。

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