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Responses of greenhouse gas emissions to residue returning in China's croplands and influential factors: A meta-analysis

机译:温室气体排放对中国农田及影响因素的残留物的回应:META分析

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摘要

Climate change is a global issue threatening agricultural production and human survival. However, agriculture sector is a major source of global greenhouse gases (GHGs), especially CH_4 and N_2O. Crop residue returning (RR) is an efficient practice to sequestrate soil carbon and increase crop yields. However, the efficiency of RR to mitigate climate change and maintain food security will be affected by the response of GHG emissions at both per area-scale and per yield-scale. Therefore, a national meta-analysis was conducted using 309 comparisons from 44 publications to assess the responses of GHG emissions to RR in China's croplands. The results indicated that little response of GWP to RR was observed with conditions under lower nitrogen fertilizer input rates (0-120 kg ha~(-1)), mulch retention, returning one time in double cropping systems, returning with half residue, weakly acidic soil (pH 5.5-6.5), initial SOC contents >20 g kg~(-1), or mean annual precipitation <1000 mm. In order to mitigate climate change and sustain food security, RR combined with paddy-upland rotation, nitrogen fertilizer input rates of 240-360 kg ha~(-1), and neutral soil (pH 6.5-7.5) could decrease GWP at per unit of crop yield, which ultimately leads to a lower effect on GHGI and a higher crop production efficiency. In-depth studies should be conducted in the future to explore the interactions between various factors influencing GHG emissions under RR conditions. Overall, optimizing the interactions with management and site-specific conditions, potential for regulating GHGs emissions of RR can be enhanced.
机译:气候变化是一个威胁农业生产和人类生存的全球问题。然而,农业部门是全球温室气体(GHG),特别是CH_4和N_2O的主要来源。作物残留物返回(RR)是螯合土壤碳的有效实践,并增加作物产量。然而,RR减轻气候变化和维持粮食安全的效率将受到温室气体排放的反应,每面积规模和每个产量级别的影响会影响。因此,使用来自44个出版物的309个比较进行了国家元分析,以评估中国农作物的温室气体排放对RR的反应。结果表明,在氮肥投入率下的条件下观察到GWP对RR的响应很少(0-120公斤HA〜(-1)),覆盖物保留,在双重种植系统中返回一次,返回半渣,弱酸性土壤(pH 5.5-6.5),初始SOC含量> 20g kg〜(-1),或平均年降水量<1000 mm。为了缓解气候变化和维持粮食安全,RR与稻谷旋转相结合,氮肥输入率为240-360千克(-1),中性土壤(pH6.5-7.5)可以减少全部GWP作物产量最终导致对GHGI的效果和较高的作物生产效率。应在未来进行深入研究,探讨影响RR条件下的温室气体排放的各种因素之间的相互作用。总体而言,优化与管理和现场特定条件的互动,可以提高调节RR的GHG排放的可能性。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|112486.1-112486.7|共7页
  • 作者单位

    College of Agronomy and Biotechnology Key Laboratory of Farming System Ministry of Agriculture and Rural Affairs of China China Agricultural University Beijing 100193 China;

    College of Agronomy and Biotechnology Key Laboratory of Farming System Ministry of Agriculture and Rural Affairs of China China Agricultural University Beijing 100193 China;

    College of Agronomy and Biotechnology Key Laboratory of Farming System Ministry of Agriculture and Rural Affairs of China China Agricultural University Beijing 100193 China;

    College of Agronomy and Biotechnology Key Laboratory of Farming System Ministry of Agriculture and Rural Affairs of China China Agricultural University Beijing 100193 China;

    College of Agronomy and Biotechnology Key Laboratory of Farming System Ministry of Agriculture and Rural Affairs of China China Agricultural University Beijing 100193 China;

    Institute of Crop Cultivation and Tillage Heilongjiang Academy of Agricultural Sciences Harbin 150086 China;

    Liaoning Academy of Agriculture Sciences Shenyang 110161 China;

    College of Agronomy and Biotechnology Key Laboratory of Farming System Ministry of Agriculture and Rural Affairs of China China Agricultural University Beijing 100193 China;

    College of Agronomy and Biotechnology Key Laboratory of Farming System Ministry of Agriculture and Rural Affairs of China China Agricultural University Beijing 100193 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Climate change mitigation; Yield-scale emission; Global warming potential; Greenhouse gases intensity; Meta-analysis;

    机译:气候变化缓解;产量级排放;全球变暖潜力;温室气体强度;荟萃分析;

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