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Potential environmental benefits of substituting nitrogen and phosphorus fertilizer with usable crop straw in China during 2000-2017

机译:2000 - 2017年中国用可用作物秸秆替代氮气肥料的潜在环境益处

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摘要

In order to meet growing food demand for the increasing population in China, chemical fertilizer has played a crucial role in increasing crop productivity in recent decades. However, the production of chemical fertilizer causes greenhouse gas (GHG) and atmospheric pollutant emissions, not to mention the effects of increased crop productivity, which creates a large mass of straw to be either burned or abandoned, leading to waste of resources, as well as GHG and atmospheric pollutant emissions. While many studies recognize the importance of substituting chemical fertilizer with straw as an organic alternative, little is known about the potential and spatiotemporal patterns in mitigating GHG and atmospheric pollutant through substituting chemical fertilizer with crop straw during the fertilizer production stage. We examine the potential impact of substituting straw for chemical fertilizer on the spatiotemporal pattern, and also examine the variation of both GHG and atmospheric pollutant emissions through using straw nutrient contents, emission factors, in combination with crop statistical data. Results show that, theoretically, accumulative nitrogen and phosphorus amounts from straw are estimated to be 55440.2 Gg and 16173.3 Gg, respectively, corresponding to 13.5% of total chemical nitrogen fertilizer and 11.5% of chemical phosphorus fertilizer. The substitution of chemical fertilizer with crop straw can mitigate 7088.8 Gg of GHG emissions, 19.9 Gg of NH3 emissions, 43.6 Gg of NOx emissions and 2.9 Gg of PM2.5 emissions annually. At the provincial level, Henan, Shandong, Sichuan, Hebei, Heilongjiang, Guangxi, Jiangsu and Anhui have the largest mitigation potential of GHG, NH3, NOx and PM2.5. High crop cultivation areas and yields in these provinces are the main cause of large emission mitigation. On the whole, the substitution of crop straw for chemical fertilizer is an effective measure to achieve crop waste utilization and to mitigate GHG, NH3, NOx and PM2.5 emissions. Finally, we propose three measures: innovation technologies for comprehensive straw utilization; multiple-channel financial support; and enhancing the awareness of resource recycling and environmental protection of farmers; as methods to promote straw-return, and thus achieve theoretical mitigation potential of GHG, NH3, NOx and PM2.5 emissions. (C) 2020 Elsevier Ltd. All rights reserved.
机译:为了满足日益增长的中国人口越来越多的粮食需求,近几十年来,化肥在增加作物生产力方面发挥了至关重要的作用。然而,化肥的生产导致温室气体(GHG)和大气污染物排放,更不用说作物生产力增加的影响,这造成了大量的稻草,要么被烧毁或被遗弃,也导致资源浪费,也是如此作为温室气体和大气污染物排放。虽然许多研究认识到用秸秆用秸秆替代化肥作为有机替代方案的重要性,但通过在肥料生产阶段替代化肥通过用作物秸秆取代化肥来达到潜在和时空模式的潜在和时空模式。我们研究了替代秸秆对化肥对时空图案的潜在影响,并通过使用秸秆营养物质,排放因子与作物统计数据相结合来研究GHG和大气污染物排放的变化。结果表明,从理论上,从稻草的理论上,累积氮和磷量分别为55440.2gg和16173.3gg,相当于总化学氮肥的13.5%和11.5%的化学磷肥。用作物秸秆替代化肥可以减轻7088.8 GG的温室气体排放量,19.9Gg的NH3排放量,43.6Gg的NOX排放量为2.9千克PM2.5排放量。在省级,河南,山东,四川,河北,黑龙江,广西,江苏和安徽具有最大的缓解潜力,NH3,NOX和PM2.5。这些省份的高作物培养区域和产量是大排放减缓的主要原因。总的来说,为化学肥料替代作物秸秆是实现作物废物利用的有效措施,并减轻温室气体,NH3,NOx和PM2.5排放。最后,我们提出了三项措施:综合秸秆利用的创新技术;多渠道财政支持;并提高农民资源回收和环境保护的认识;作为促进草后返回的方法,因此实现了GHG,NH3,NOx和PM2.5排放的理论缓解潜力。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2020年第10期|122125.1-122125.9|共9页
  • 作者单位

    China Agr Univ Natl Acad Agr Green Dev Key Lab Plant Soil Interact MOE Coll Resources & Environm Sci Beijing Peoples R China;

    Chinese Acad Macroecon Res Beijing 100038 Peoples R China;

    Univ Int Business & Econ Business Sch Beijing 100029 Peoples R China;

    Tsinghua Univ Sch Environm Beijing 100084 Peoples R China|Tsinghua Univ State Key Joint Lab Environm Simulat & Pollut Con Beijing 100084 Peoples R China;

    Tsinghua Univ Sch Environm Beijing 100084 Peoples R China|Tsinghua Univ State Key Joint Lab Environm Simulat & Pollut Con Beijing 100084 Peoples R China;

    Southwestern Univ Finance & Econ Populat Res Inst Chengdu Sichuan Peoples R China;

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

    Straw return; Chemical fertilizer; Greenhouse gas; Atmospheric pollutant; Mitigation potential;

    机译:秸秆返回;化肥;温室气体;大气污染物;缓解潜力;

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