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首页> 外文期刊>Environmental Science and Pollution Research >Inhibiting effects of flue gas desulfurization gypsum on soil phosphorus loss in Chongming Dongtan, southeastern China
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Inhibiting effects of flue gas desulfurization gypsum on soil phosphorus loss in Chongming Dongtan, southeastern China

机译:抑制烟气脱硫石膏对中国东南崇明东南土壤磷损失的影响

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摘要

To explore the possibility of using flue gas desulfurization gypsum (FGDG) for inhibiting phosphorus (P) loss due to agricultural runoff, a 3-year study was performed in the farmlands of Chongming Dongtan between 2012 and 2015. Five different quantities of FGDG were used to treat the soil, and the effects of different treatments on the characteristics of soil P and crop growth were investigated. The results showed that 2years after application of FGDG, the soil density at a depth of 0-10cm decreased by 4.35-7.97%, the porosity increased by 1.77-11.0%, and the topsoil permeability increased by 0.87-3.81 times. Although the use of FGDG did not change the total P concentration in the soil, it decreased the concentration of sodium bicarbonate extractable P in the soil. Compared to the control, the average extractable P concentration at depths of 0-10cm, 10-20cm, and 20-30cm decreased by 22.0-46.1%, 26.9-40.5%, and 22.8-34.8%, respectively. The inorganic P in the soil increased as the amount of FGDG increased, and the increase was mainly as Ca-P in the forms Ca-2-P and Ca-10-P. The decrease in bicarbonate extractable P and increase in inorganic P in the soil did not affect the growth of the crops, and the biomass and output of the crops increased compared to the control. Therefore, FGDG can enhance soil P immobilization, thus reducing soluble P runoff from farm fields, and improving water quality in receiving lakes and rivers while maintaining P nutrition to the crops.
机译:探索使用烟道气脱硫石膏(FGDG)用于抑制磷(P)造成的损失农业径流的可能性,3年的研究在崇明东滩的农田2012和2015年之间执行使用了五个不同量的FGDG治疗土壤中,对土壤P和作物生长的特性不同治疗方法的影响。结果表明,2年FGDG的应用后,在0-10cm的深度土壤密度下降4.35-7.97%,孔隙率增加1.77-11.0%,并且表土渗透性增加0.87-3.81倍。虽然使用FGDG的没有改变在土壤中的全磷浓度,它在土壤中的碳酸氢钠提取磷的浓度降低。与对照相比,平均提取磷浓度在0-10cm,10-20厘米的深度,和20-30厘米分别降低22.0-46.1%,26.9-40.5%,和22.8-34.8%。在土壤中的无机磷随着FGDG的量增加,并且增加主要是如在形式的Ca-2-P和Ca-10-P的Ca-P。在碳酸氢盐提取P和在土壤中的无机磷的增加的减少没有影响农作物的生长,并且该生物质和作物的产量增加与对照相比。因此,FGDG可以增强土壤磷固定化,从而减少了从农田可溶性P径流,和改善水质在接收湖泊和河流,同时保持磷营养至作物。

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