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A preliminary investigation for Cu distribution in paddy soil and rice plants in contaminated paddy fields

机译:污染稻田水稻土壤和水稻植物Cu分布的初步研究

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The soil sample of a paddy field was found to be contaminated by copper (Cu). The application of wastewater as the nitrogen fertilizer was identified as the cause in this study. The concentration of Cu in soil and rice plants was therefore explored. The paddy soil characteristics indicated a strong anaerobic environment. The Cu concentration in topsoil was 123 +/- 24 mg kg(-1). The Community Bureau of Reference (BCR)'s fractionation of Cu from high to low was residual fraction (62.1%) > organically bounded and sulfide-bounded fractions (24.2%) > iron oxide and manganese oxide fraction (8.8%) > acid-soluble fractions (4.8%). The concentration of Cu in rice organs was the highest in the roots, followed by the straw, grain, and husk. The correlation of Cu in rice straws with every fractionation of Cu in soil was strong. However, the weak correlation between Cu in rice grains and soil was found. The result of Cu mass balance in the soil-rice cultivation system showed that less than 0.1% of Cu was translocated to rice plant. The average Cu intake through rice grain consumption (621 mu g day(-1)) indicated the Cu supply to human body basic need without any potential negative health impacts to consumer. However, this level of Cu may cause toxicity to rice growth and productivity. Soil replacement may be more appropriate than soil treatment in this study. In addition, agricultural practices should be managed to prevent further contamination and promote more aerobic conditions.
机译:发现稻田的土壤样品被铜(Cu)污染。废水作为氮肥的应用被鉴定为本研究的原因。因此探讨了土壤和水稻植物中铜的浓度。水稻土特征表明了强烈的厌氧环境。表土中的Cu浓度为123 +/- 24 mg kg(-1)。社区参考局(BCR)的Cu从高到低的分馏是残留级分(62.1%)>有机界和硫化物有偏移的级分(24.2%)>氧化铁和锰氧化物级分(8.8%)>酸 - 可溶性级分(4.8%)。水稻器官中Cu的浓度在根中最高,其次是吸管,谷物和稻壳。 Cu在土壤中Cu分馏的杜秸秆中Cu的相关性强烈。然而,发现Cu在水稻和土壤中的弱相关性。土壤 - 水稻栽培系统中Cu质量平衡的结果表明,小于0.1%的Cu被迁移到水稻植物中。通过水稻谷物消耗的平均Cu摄入(621μm(-1))表明了对人体基本需要的Cu供应,对消费者没有任何潜在的负面健康影响。然而,这种水平的Cu可能会对水稻生长和生产力引起毒性。土壤替代物可能比本研究中的土壤处理更合适。此外,应设法采用农业实践,以防止进一步污染,促进更具氧化条件。

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