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Effect of applying calcium peroxide on the accumulation of arsenic in rice plants grown in arsenic-elevated paddy soils

机译:应用钙过氧化物磷酸钙对砷水稻土壤中砷砷积聚的影响

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Water management such as drainage for creating aerobic conditions is considered to be an adequate method for reducing the accumulation of arsenic (As) in rice grains; however, it is difficult to conduct drainage operations in some areas that experience a lengthy rainy season as well as in soils with poor drainage. In this regard, application of oxygen-releasing compounds (ORCs) may be an alternative method for maintaining aerobic conditions even under flooding in paddy soils. Therefore, a pot experiment was conducted to investigate the effects of application of an ORC, calcium peroxide (CaO2), on the growth and accumulation of As in rice plants grown in As-contaminated paddy soils. The rice plants were grown in two soils with different characteristics and As levels, and all of the tested soils were treated with 0, 5, 10, and 20 g CaO2 kg(-1). Results revealed that the concentration of As and the distribution of arsenite in the pore water of all tested soils was reduced by CaO2 application. In addition, the grain yields increased and the concentration of inorganic As in brown rice decreased by 25-45% upon CaO2 treatment of low-As-level soils (16 mg kg(-1)). However, the effect of CaO2 application on the accumulation of inorganic As in brown rice in As-enriched soils (78 mg kg(-1)) could not found in this study, due to the rice plant suffered from serious As phytotoxicity. It suggests that CaO2 amendment may be suitable for reducing the As concentration of rice grains grown in low-As-level paddy soils, but for As-enriched soils, the proposed CaO2 application method is not feasible. (C) 2020 Elsevier Ltd. All rights reserved.
机译:诸如制造有氧疾病的排水等水管理被认为是减少稻粒中砷(AS)积聚的充分方法;然而,很难在经历冗长的雨季以及排水差的土壤中进行排水操作。在这方面,释放氧气化合物(ORC)的施用可以是甚至在水稻土中的洪水下维持有氧疾病的替代方法。因此,进行了罐实验以研究兽人,过氧化钙(CaO2)的应用对污染水稻土壤中生长的水稻植物的生长和积累的影响。水稻植物在两种具有不同特性的土壤中生长,以及水平,并用0,5,10和20g CaO2 kg(-1)处理所有测试的土壤。结果表明,CAO2施用减少了所有测试土壤的孔隙水中砷酸盐浓度和分布的浓度。此外,谷物产量增加,糙米中无机浓度在低于液体土壤(<16mg kg(-1))时减少了25-45%。然而,CaO2应用对富含富含土壤中的糙米中无机的积聚(> 78mg kg(-1))的作用,由于水稻植物患有严重的植物毒性。它表明CaO2修正案可能适用于减少低于低水平水稻土壤中生长的水稻粒度的浓度,但对于富含富集的土壤,所提出的CaO2应用方法是不可行的。 (c)2020 elestvier有限公司保留所有权利。

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