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首页> 外文期刊>Soil Biology & Biochemistry >Straw amendment with nitrate-N decreased N2O/(N2O + N-2) ratio but increased soil N2O emission: A case study of direct soil-born N-2 measurements
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Straw amendment with nitrate-N decreased N2O/(N2O + N-2) ratio but increased soil N2O emission: A case study of direct soil-born N-2 measurements

机译:硝酸盐-N的秸秆修正下降N2O /(N 2 O + N-2)比例,但土壤N2O排放量增加:一种案例研究直接土壤出生的N-2测量

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摘要

Straw application in combination with synthetic N fertilizer could increase crop yield and improve soil fertility, however, contradictory observations have been reported on the effects of straw addition on soil N2O emission. Straw application can affect both denitrification rate and its product stoichiometry (N2O/(N2O + N-2) ratio), whereas the latter remains rather unclear since the ratio is strongly regulated by other soil parameters, e.g. nitrate and oxygen concentrations at denitrifying micro-sites. In this context, we conducted an incubation experiment with a robotized continuous flow incubation system using a He/O-2 atmosphere and measured N2O and direct N-2 fluxes over 22 days. Soil amended with and without rice straw (2.5 g kg(-1) soil) in conjunction with nitrate fertilizer (10 mM KNO3) and non-amended control soil were incubated under 85% water-filled pore space. To simulate a short soil anoxic period, three different O-2 partial pressures phases were set (20%, 5% and 10%). Additionally, N2O site preference signatures of soil-emitted N2O were analyzed to identify the processes contributing to N2O fluxes. Addition of nitrate increased cumulative N2O fluxes and decreased cumulative N-2 fluxes compared with non-fertilized control, while rice straw amendment increased both N2O and N-2 emissions drastically compared with the nitrate only treatment. The N2O SP values ranged from 0.4 to 2.7%o among all treatments, indicating denitrification/nitrifier denitrification was the dominating source. The results suggest that straw amendment can trigger high denitrification rate, whereas the effect of straw amendment on the amount of emitted N2O and the N2O/(N2O + N-2) product ratio strongly depends on soil NO3- concentration. As a conclusion, the present study suggests that straw amendment in conjunction with nitrate-N can increase soil N2O emissions under conditions favoring denitrification, even though it may decrease the overall N2O/(N2O + N-2) product ratio.
机译:秸秆施用与合成氮化肥组合可以提高作物产量,提高土壤肥力,然而,据报道矛盾观察对土壤N2O排放的影响。秸秆应用可以影响脱硝率及其产物化学计量(N2O /(N 2 O + N-2)比率),而后者仍然不清楚,因为该比例由其他土壤参数强烈调节,例如,例如该比例。在反硝化微位点下的硝酸盐和氧气浓度。在这种情况下,我们使用HE / O-2气氛进行了一种具有机器化连续流动孵育系统的孵育实验,并在22天内测量N2O并直接N-2助焊剂。在85%充水孔隙空间下培养,用硝酸盐肥(10mm KnO3)和未修正的对照土壤配有稻草(2.5g kg(-1)土壤)和未修正的对照土壤。为了模拟缩小土壤缺氧期,设定了三个不同的O-2分压阶段(20%,5%和10%)。另外,分析了土壤发射N2O的N2O位点偏好签名以确定有助于N2O助熔剂的过程。与无施肥控制相比,硝酸盐添加累积增加的累积N2O助熔剂和累积的N-2助熔剂减少,而稻草修正案与硝酸盐仅治疗大幅增加了N2O和N-2排放。所有治疗中的N2O SP值范围为0.4至2.7%,表示脱氮/硝化亚硝化是主要的源。结果表明,秸秆修正案可以引发高脱氮率,而秸秆修正对发射的N2O和N2O /(N 2 O + N-2)产品比的影响强烈取决于土壤NO3浓度。作为结论,本研究表明,与硝酸盐-N结合的秸秆修正可以在有利于反硝化的条件下增加土壤N2O排放,即使它可能降低总体N2O /(N2O + N-2)产物比率。

著录项

  • 来源
    《Soil Biology & Biochemistry》 |2018年第2018期|共4页
  • 作者单位

    Forschungszentrum Julich Inst Bio &

    Geosci Agrosphere IBG 3 D-52425 Julich Germany;

    Chinese Acad Sci Inst Soil Sci Nanjing 210008 Jiangsu Peoples R China;

    Fed Res Inst Rural Areas Forestry &

    Fisheries Thunen Inst Climate Smart Agr Bundesallee 50 D-38116 Braunschweig Germany;

    Chinese Acad Sci Inst Soil Sci Nanjing 210008 Jiangsu Peoples R China;

    Chinese Acad Sci Inst Soil Sci Nanjing 210008 Jiangsu Peoples R China;

    Forschungszentrum Julich Inst Bio &

    Geosci Agrosphere IBG 3 D-52425 Julich Germany;

    Fed Res Inst Rural Areas Forestry &

    Fisheries Thunen Inst Climate Smart Agr Bundesallee 50 D-38116 Braunschweig Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业基础科学;
  • 关键词

    Straw amendment; Denitrification product ratio; N2O; Site preference;

    机译:秸秆修正;反硝化产品比例;N2O;网站偏好;

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