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首页> 外文期刊>Sugar Tech >Sugarcane Crop Residue Increases N_2O and CO_2 Emissions Under High Soil Moisture Conditions
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Sugarcane Crop Residue Increases N_2O and CO_2 Emissions Under High Soil Moisture Conditions

机译:高土壤湿度条件下甘蔗作物残渣增加N_2O和CO_2的排放

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摘要

Sugarcane crop residues from green cane harvests may affect the greenhouse gas fluxes from the soils. Therefore, it is important to understand how changes in soil moisture covered with cane trash alter the N_2O and CO_2 emission. The aim of this study was to evaluate N_2O and CO_2 emission from repacked soil columns incubated with (16 Mg ha~(-1)) or without crop residues and N fertilizer (0 or 2.1 g N m~(-2)), and as a function of four soil moisture levels (25, 50, 75 and 100 % of water holding capacity). For gas samplings, the columns were closed with a lid and four gas samples were taken in 20 min. The N_2O fluxes increased linearly (p < 0.01) with increasing soil moisture regardless of the residue application on soil. However in the columns with trash the moisture effect, on N_2O emission rates, was two-fold greater. Every 10 % increase in moisture in relation to the holding capacity resulted in losses equivalent to 790 and 1,640 μg N m~(-2) for the 0 and 16 Mg ha~(-1) crop residue rates, respectively. In conditions of low moisture (25 and 50 %), the crop residue did not increase emissions compared to the bare soil. The CO_2 emission also was linearly stimulated with increasing soil moisture, regardless of crop residue application. However, the CO_2 emission rate was higher with the residue. Our study indicates that the effects of crop residue on greenhouse gas emissions are exacerbated in periods with high soil moisture.
机译:来自绿色甘蔗收成的甘蔗作物残留物可能会影响土壤中的温室气体通量。因此,重要的是要了解甘蔗垃圾覆盖的土壤水分的变化如何改变N_2O和CO_2的排放。这项研究的目的是评估在(16 Mg ha〜(-1))或无农残和氮肥(0或2.1 g N m〜(-2))的条件下培养的重装土壤柱中N_2O和CO_2的排放量,以及取决于四个土壤湿度水平(持水量的25%,50%,75%和100%)。对于气体采样,将柱子盖上盖子,并在20分钟内采集四个气体样品。 N_2O通量随土壤湿度的增加而线性增加(p <0.01),而与土壤上残留的肥料无关。但是,在带有垃圾的色谱柱中,水分对N_2O排放速率的影响要大两倍。相对于保持能力,每增加10%的水分,分别导致0和16 Mg ha〜(-1)作物残渣率的损失分别等于790和1,640μgN m〜(-2)。在低湿度(25%和50%)的条件下,与裸露土壤相比,农作物残留物不会增加排放量。不论作物残留如何施用,随着土壤湿度的增加,CO_2的排放也受到线性刺激。但是,残留物的CO_2排放率更高。我们的研究表明,在土壤湿度高的时期,农作物残留物对温室气体排放的影响会加剧。

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  • 来源
    《Sugar Tech 》 |2014年第2期| 174-179| 共6页
  • 作者单位

    Soil and Environmental Resources Department, Agronomic Institute, IAC, Barao de Itapura Av, 1481, PO box 28, Campinas, SP 13013-970, Brazil;

    Soil and Environmental Resources Department, Agronomic Institute, IAC, Barao de Itapura Av, 1481, PO box 28, Campinas, SP 13013-970, Brazil;

    Soil and Environmental Resources Department, Agronomic Institute, IAC, Barao de Itapura Av, 1481, PO box 28, Campinas, SP 13013-970, Brazil;

    Soil and Environmental Resources Department, Agronomic Institute, IAC, Barao de Itapura Av, 1481, PO box 28, Campinas, SP 13013-970, Brazil;

    Environmental Sciences Department, Sao Carlos Federal University, UFSCar, Joao Leme dos Santos Road km 110, Sorocaba 18052-780, Brazil;

    Environment Sciences, Brazilian Agricultural Research Corporation, EMBRAPA, SP 340 Road km 127.5, Jaguariuna 13820-000, Brazil;

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

    Greenhouse gases; Methane; Soil respiration; N application; Soil columns;

    机译:温室气体;甲烷土壤呼吸;N申请;土柱;

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