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Biochar as a tool to reduce environmental impacts of nitrogen loss in water-saving irrigation paddy field

机译:生物炭作为一种减少氮气损失在节水灌溉稻田环境影响的工具

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摘要

Nitrogen (N) loss caused by excessive and incorrect application of N fertilizer in traditional rice-growing agriculture contributed to rural non-point source pollution and greenhouse gas emission, reduced crop N utilization efficiency. The objective of this study is to explore the response of N loss (leaching, NH3 volatilization and N2O emission) to different biochar applications (0,20,40 t/hm(2)) and irrigation patterns (controlled irrigation, flooding irrigation) in paddy fields of the Taihu Lake region (TLR) with the combination of field experiments and laboratory analysis. Based on the long-term observation of rice growth period, the ammonium N (NH4+-N), nitrate N (NO3--N) and total N (TN) leaching of paddy fields applied with water-saving irrigation (WSI) and biochar was measured in the plots of lysimeter. The impact of biochar application on NH3 volatilization, N2O emission in different water-carbon modes were clarified and the effect of water-carbon management modes on rice yield and yield components was analyzed. The results showed that the application of biochar reduced the NO3--N and TN leaching by 29.98% -38.63% and 12.77%-13.36%, increased rice seed setting rate and actual yield by 12.15%-15.28% and 1.67%-5.54%. Biochar addition inhibited NH3 volatilization and N2O emission. Under low-volume biochar (20 t/hm(2)), the main form of N leaching in rice fields was NO3--N, the NO3--N leaching accounted for 33.67% - 50.24% of the TN leaching; under high-volume biochar (40 t/hm(2)), N leaching in rice field was dominated by NH4+-N, the NH4+-N leaching accounted for 16.50% - 47.47% of the TN leaching. Controlled irrigation can not only reduce the water leakage in paddy fields but also reduce the N concentration in water leakage compared with flooding irrigation so that the total leaching of NH4+-N, NO3--N and TN in rice fields can be reduced by 23.44%, 47.89% and 50.69%. This study suggests that to make biochar beneficial for reducing environmental impacts of soil N effluxes and realizing cleaner production in rice cultivation, WSI technique and adapted use of biochar are of great importance. (C) 2021 Elsevier Ltd. All rights reserved.
机译:N肥在传统水稻种植农业中施用过多和不正确施用氮(N)损失导致农村非点源污染和温室气体排放,减少作物N利用效率。本研究的目的是探讨N损失(浸出,NH3挥发和N2O发射)对不同生物炭应用(0,20,40吨/小时(2))和灌溉模式(受控灌溉,洪水灌溉)的响应太湖地区(TLR)的稻田具有现场实验和实验室分析的组合。基于水稻生长期的长期观察,用节水灌溉(WSI)和BioChOR应用水稻生长期的长期N(NH4 + -N),硝酸铵N(NO 3 -N)和稻田的总N(TN)浸出在溶血率的曲线图中测量。阐明了生物炭应用对NH3挥发的影响,分析了不同水 - 碳模式下的N 2 O发射,分析了水 - 碳管理模式对水稻产量和产量组分的影响。结果表明,生物炭的应用将NO3 - N和TN浸出量降低29.98%-38.63%和12.77%-13.36%,水稻种子设定率增加,实际产量增加12.15%-15.28%和1.67%-5.54% 。生物炭加入抑制NH3挥发和N2O排放。在低容量生物炭(20 T / HM(2))下,稻田中N浸出的主要形式为NO 3 - N,NO3 - N浸出占TN浸出的33.67% - 50.24%;在大批量生物炭下(40吨/米(2)),稻田中的N浸出由NH4 + -N浸出,NH4 + -N浸出占TN浸出的16.50% - 47.47%。受控灌溉不仅可以减少稻田中的漏水,还可以减少水泄漏中的N浓度与洪水灌溉相比,稻田中NH4 + -N,NO3 - N和TN的总浸出量可降低23.44% ,47.89%和50.69%。本研究表明,为了使BioChon能够降低土壤中的环境影响,并实现水稻栽培中的清洁生产,WSI技术和Biochar的适应性非常重要。 (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2021年第25期|125811.1-125811.13|共13页
  • 作者单位

    Hohai Univ Coll Agr Sci & Engn Nanjing 210098 Peoples R China;

    Hohai Univ Coll Agr Sci & Engn Nanjing 210098 Peoples R China|Hohai Univ State Key Lab Hydrol Water Resources & Hydraul En Nanjing 210098 Peoples R China|Hohai Univ Cooperat Innovat Ctr Water Safety & Hydro Sci Nanjing 210098 Peoples R China;

    Hohai Univ Coll Agr Sci & Engn Nanjing 210098 Peoples R China;

    Hohai Univ Coll Agr Sci & Engn Nanjing 210098 Peoples R China;

    Hohai Univ Coll Agr Sci & Engn Nanjing 210098 Peoples R China;

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

    Biochar; Water-saving irrigation; N leaching; NH3 volatilization; N2O emission; Paddy field;

    机译:生物炭;节水灌溉;n浸出;NH3挥发;N2O发射;稻田;
  • 入库时间 2022-08-19 01:51:48
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