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首页> 外文期刊>Biology and Fertility of Soils >Evaluation of press mud cake as a source of nitrogen and phosphorus for rice–wheat cropping system in the Indo-Gangetic plains of India
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Evaluation of press mud cake as a source of nitrogen and phosphorus for rice–wheat cropping system in the Indo-Gangetic plains of India

机译:印度印格底平原稻麦种植系统中压榨泥饼作为氮和磷源的评估

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摘要

Press mud cake (PMC) is an important organic source available for land application in India. Adequate information regarding availability of nitrogen and phosphorous contained in PMC to rice–wheat (RW) cropping system is lacking. In field experiments conducted for 4 years to study the effect of PMC application to rice as N and P source in RW system, application of 60 kg N ha−1 along with PMC (5 t ha−1) produced grain yield of rice similar to that obtained with the 120 kg N ha−1 in unamended plots. In the following wheat, the residual effects of PMC applied to preceding rice were equal to 40 kg N and 13 kg P ha−1. Immobilization of soil and fertilizer N immediately after the application of PMC was observed in laboratory incubation. The net amount of N mineralized from the PMC ranged from 16% at 30 days to 43% at 60 days after incubation. Available P content in the soil amended with PMC increased by about 60% over the unamended control within 10 days of its application. The P balance for the no-PMC treatment receiving recommended dose of 26 kg P ha−1 year−1 was −13.5 kg P ha−1 year−1. The P balance was positive (+42.3 to 53.5 kg P ha−1 year−1) when PMC was applied to rice. Application of PMC increased total N, organic carbon, and available P contents in the soil.
机译:印泥饼(PMC)是印度土地上可利用的重要有机资源。缺乏关于稻麦系统中PMC中所含氮和磷的有效性的充分信息。在为期4年的田间试验中,研究了PMC应用于水稻作为RW系统中的N和P源的效果,将60 kg N ha -1 与PMC(5 t ha -1 )产生的水稻籽粒产量与未经修正的120 kg N ha -1 相似。在随后的小麦中,PMC对前次稻米的残留效应等于40 kg N和13 kg P ha -1 。在实验室培养中观察到在施用PMC后立即固定了土壤和肥料N。孵育后,从PMC矿化的N的净含量从30天的16%到60天的43%不等。在施用PMC后的10天内,用PMC改良的土壤中的有效P含量比未修正的对照增加了约60%。接受推荐剂量26 kg P ha -1 年 -1 的无PMC处理的P平衡为-13.5 kg P ha -1 year −1 。当PMC施用于水稻时,磷平衡为正(+42.3至53.5 kg P ha -1 年 -1 )。施用PMC可以增加土壤中的总氮,有机碳和有效磷含量。

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