首页> 外文期刊>Journal of the Indian Society of Soil Science >Conservation Agriculture in a Rice-Wheat Cropping System on an Alluvial Soil of North-Western Indo-Gangetic Plains: Effect on SoilCarbon and Nitrogen Pools
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Conservation Agriculture in a Rice-Wheat Cropping System on an Alluvial Soil of North-Western Indo-Gangetic Plains: Effect on SoilCarbon and Nitrogen Pools

机译:西北西北地区冲积土壤 - 小麦种植系统的保护农业:对土壤碳和氮池的影响

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摘要

Improving soil organic carbon (SOC) and nitrogen (N) in arable soils is one of the important strategies to enhance soil quality for sustainable crop production and to mitigate climate change. Hence, we investigated the changes in SOC and N under conservation agriculture (CA) in an alluvial soil of the north-western Indo-Gangetic Plains (IGP) after two years of rice (Oryza sativa L.)-wheat (Triticum aestivum L.) rotation. The treatments were: Puddled transplanted rice followed by conventional-till wheat (TPR-CTW), TPR followed by zero-till wheat (TPR-ZTW), Direct-seeded rice followed by ZTW (DSR-ZTW), DSR-ZTW with rice residue retention in ZTW (DSR-ZTW+RR), DSR-ZTW with Sesbania brown manuring (DSR+BM-ZTW), DSR+BM-ZTW+RR, DSR-ZTW with ZT summer mungbean (greengram) (Vigna radiata) as a relay crop and mungbean residues retained on rice fields as in-situ green manuring (MBR+DSR-ZTW-ZTMB) and MBR+DSR-ZTW+RR-ZTMB. Results indicated that plots under CA (MBR+DSR-ZTW+RR-ZTMB) had significantly higher Walkley-Black C, KMn04-C and very labile SOC compared with TPR-CTW in surface (0-15 cm) soil. Interestingly, addition of residues with mixed C:N ratios (legume and rice residues) failed to register improvement in soil mineral N, owing possibly to greater portioning of N towards soil microbial biomass (SMB) and particulate organic matter (POM) associated pools. Fascinating results could be expected in the present experiment with the passage of time.
机译:改善耕地土壤有机碳(SOC)和氮气(N)是增强可持续作物生产土壤质量的重要策略之一,并减轻气候变化。因此,在两年的米饭(Oryza Sativa L.) - 小麦(Triticum Aestivum L. ) 回转。该治疗方法是:豆荚移植的水稻,然后进行常规 - 直至小麦(TPR-CTW),TPR,然后是零滴小麦(TPR-ZTW),直接碎片,然后是ZTW(DSR-ZTW),DSR-ZTW用米饭ZTW(DSR-ZTW + RR)中的残留保留,DSR-ZTW与Sesbania棕色皱纹(DSR + BM-ZTW),DSR + BM-ZTW + RR,DSR-ZTW与ZT Summer Mungbean(Greengram)(Vigna Radiata)如作为原位绿色凸(MBR + DSR-ZTW-ZTMB)和MBR + DSR-ZTW + RR-ZTMB,在稻田中保留的继电器作物和床头渣。结果表明,与地表(0-15厘米)土壤中的TPR-CTW相比,CA(MBR + DSR-ZTW + RR-ZTMB)的图具有显着更高的携带黑色C,KMN04-C和非常不稳定的SOC。有趣的是,用混合C:n比(豆类和水稻残留物)的残留物加入残留物未能在土壤矿物质中注册改善,可能朝着土壤微生物量(SMB)和颗粒状有机物(POM)相关池中的N型n偏移。随着时间的推移,目前的实验可以预期迷人的结果。

著录项

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  • 作者单位

    Division of Soil Science and Agricultural Chemistry ICAR-Indian Agricultural Research Institute New Delhi 110 012;

    Division of Soil Science and Agricultural Chemistry ICAR-Indian Agricultural Research Institute New Delhi 110 012;

    Division of Soil Science and Agricultural Chemistry ICAR-Indian Agricultural Research Institute New Delhi 110 012;

    Division of Soil Science and Agricultural Chemistry ICAR-Indian Agricultural Research Institute New Delhi 110 012;

    Division of Soil Science and Agricultural Chemistry ICAR-Indian Agricultural Research Institute New Delhi 110 012;

    Division of Soil Science and Agricultural Chemistry ICAR-Indian Agricultural Research Institute New Delhi 110 012;

    Division of Soil Science and Agricultural Chemistry ICAR-Indian Agricultural Research Institute New Delhi 110 012;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤学;
  • 关键词

    Conservation agriculture; soil organic carbon; nitrogen; green manuring; brown manuring; tillage; rice-wheat;

    机译:保护农业;土壤有机碳;氮气;绿色皱纹;褐色皱纹;耕作;米小麦;

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