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Black carbon yields highest nutrient and lowest arsenic release when using rice residuals in paddy soils

机译:在稻田土壤中使用水稻残渣时黑碳产生最高的养分和最低的砷释放

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摘要

Rice straw increasingly remains on the fields for nutrient supply to the next generation of crop plants. It can be applied either fresh or after burning to black carbon or ash. A central concern during rice cultivation is accumulation of carcinogenic arsenic and the question arises how much rice straw application contributes to nutrient versus arsenic supply in paddy fields. Laboratory incubation experiments were performed to assess the effect of rice straw, black carbon and ash on element mobilization. Our experiments showed initially higher silicon and phosphorus release from black carbon compared to fresh straw amendments. However, more re-sorption to soil lead to finally slightly lower pore water concentrations for black carbon versus fresh straw amendments. Highest arsenic, iron, manganese and dissolved organic carbon concentrations were observed after fresh rice straw application. Black carbon and ash application lead to only minor increases of arsenic compared to controls without amendments. Overall, for silicon and phosphorus the soil acts as sink while for iron and arsenic it was the main source. In summary, burning of rice straw to black carbon prior to application seems to yield a high increase in desired nutrient and a decrease in undesired arsenic mobilization in paddy soils.
机译:稻草越来越多地留在田地上,为下一代农作物提供营养。它可以新鲜使用,也可以燃烧成黑炭或灰烬后使用。稻米种植过程中的一个主要问题是致癌性砷的积累,而问题是稻田中稻秸秆的施用对养分供应与砷供应的关系。进行了实验室培养实验,以评估稻草,黑碳和灰分对元素动员的影响。我们的实验表明,与新鲜的秸秆改良剂相比,黑碳中的硅和磷释放量更高。但是,与新鲜的秸秆改良剂相比,更多的对土壤的重吸收最终导致黑碳的孔隙水浓度稍低。施用新鲜稻草后观察到最高的砷,铁,锰和溶解的有机碳浓度。与未进行修正的对照相比,黑碳和灰烬的施用仅导致砷的少量增加。总体而言,土壤中的硅和磷是汇,而铁和砷则是土壤的主要来源。总而言之,在稻田中将稻草燃烧成黑碳似乎会导致所需养分的大量增加,并减少稻田土壤中不希望的砷迁移。

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