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首页> 外文期刊>Journal of soil & sediments >Effects of rice straw incorporation and N fertilizer on ryegrass yield, soil quality, and greenhouse gas emissions from paddy soil
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Effects of rice straw incorporation and N fertilizer on ryegrass yield, soil quality, and greenhouse gas emissions from paddy soil

机译:稻草和氮肥对稻田黑麦草产量,土壤质量和温室气体排放的影响

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PurposeRyegrass is usually rotated with rice in southern China. The influences of returning ryegrass residues on rice yield and soil dynamics have been studied extensively, but little is known about the effects of returning rice straw on ryegrass growth and soil variations.Materials and methodsWe investigated the effect of straw incorporation and the N fertilizer rate on the ryegrass yield, soil quality, and CO2 and N2O dynamics from soils planted with ryegrass.Results and discussionIrrespective of the incorporation rate, N fertilizer promoted ryegrass yield. In comparison to moderate incorporation treatments, high incorporation lowered the ryegrass yield in the low N fertilizer treatments, whereas high straw input increased the yield in the high N treatments. When low N fertilizer was applied, the soil phosphatase, -glucosidase, and sucrase of straw incorporation treatments were significantly higher than those of non-straw incorporation treatments. Nevertheless, catalase, phosphatase, and -glucosidase showed no significant differences among straw incorporation treatments in the high N fertilizer groups. In the low N fertilizer treatments, the high incorporation rate increased cumulative CO2 and N2O emissions. However, with low N application, compared with non-straw incorporation treatments, the moderate incorporation had no effect on the cumulative CO2 emissions/ryegrass yield but significantly reduced the cumulative N2O emissions/ryegrass yield.ConclusionsThese results suggested that moderate straw incorporation in combination with low N fertilizer could enhance soil activity and benefit both the mitigation of greenhouse gas emissions and forage yield.
机译:目的在中国南部,黑麦草通常与大米一起旋转。广泛研究了返回黑麦草残渣对水稻产量和土壤动力学的影响,但对返回稻草对黑麦草生长和土壤变化的影响知之甚少。材料和方法我们研究了秸秆掺入和氮肥用量对稻草的影响。黑麦草的产量,土壤质量以及黑麦草种植土壤的CO2和N2O动态。结果与讨论无论掺入率如何,氮肥都能促进黑麦草的产量。与中等掺入处理相比,在低氮施肥处理中,高掺入量降低了黑麦草的产量,而在高氮处理中,高秸秆输入量增加了黑麦草的产量。当施用低氮肥料时,秸秆还田处理的土壤磷酸酶,-葡萄糖苷酶和蔗糖酶显着高于非秸秆还田处理。然而,在高氮肥组中,过氧化氢酶,磷酸酶和-葡萄糖苷酶在秸秆掺入处理之间没有显着差异。在低氮肥料处理中,高掺入率增加了累积的CO2和N2O排放量。但是,在低氮施用下,与非秸秆混入处理相比,适度掺入对累积CO2排放/黑麦产量没有影响,但显着降低了累积N2O排放/黑麦产量。低氮肥料可以增强土壤活性,并有利于减少温室气体排放和牧草产量。

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