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首页> 外文期刊>Rangeland Ecology & Management >Precipitation and Nitrogen Deposition Alter Litter Decomposition Dynamics in Semiarid Temperate Steppe in Inner Mongolia, China
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Precipitation and Nitrogen Deposition Alter Litter Decomposition Dynamics in Semiarid Temperate Steppe in Inner Mongolia, China

机译:沉淀和氮气沉积在中国内蒙古的半干旱温带草原中凋落物分解动力学

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摘要

Plant litter decomposition is one of the most important links connecting plants to the soil through the carbon (C) and nitrogen (N) cycles. Climate change scenarios predict changes in precipitation and N deposition, and previous studies have demonstrated that increases in the availability of water and N affect the litter decomposition rate and nutrient release. We studied the effects of increased N deposition and precipitation on changes in the remaining mass and the C and N contents of shoot litter after decomposition in a typical steppe in Inner Mongolia, China. The treatments included the addition of NH4NO3 at rates equivalent to 0, 25, 50, and 100 kg.N.ha(-2)yr(-1) with and without added water. The addition of water proved to be a more effective practice than amendment with NH4NO3 for improving the litter decomposition rate; the addition of water significantly increased the rate of litter decomposition (P & 0.001), whereas the addition of N alone had no apparent effect on litter mass loss. However, a repeated measures analysis of variance (ANOVA) showed that the interaction of water and N significantly affected both mass loss and litter N content (P & 0.05), and a linear relationship was identified between litter mass loss and litter decomposition time (P & 0.001). No correlation was found between litter mass loss and organic C content, but a significant positive correlation was found between residual litter mass and N content (P & 0.01). Although the study was conducted over a relatively short period, our results indicate that increased precipitation could potentially promote litter decomposition, whereas increased N input has little effect. The effects of time on litter mass loss and residual C and N concentrations indicate the need for long-term trials that measure the complete process of litter decomposition and the peaks of C and N release. (C) 2017 The Society for Range Management. Published by Elsevier Inc. All rights reserved.
机译:植物凋落物分解是通过碳(C)和氮气(N)循环连接植物的最重要的链接之一。气候变化方案预测降水和N沉积的变化,并且先前的研究表明,水的可用性增加,n会影响凋落物分解率和营养释放。我们研究了n沉积和降水量增加了对典型草原在中国内蒙古典型草原中剩余质量和C和N含量的变化的影响。该处理包括在相当于0,25,50和100kg.n.ha(-2)Yr(-1)的速率下添加NH 4 NO 3,其具有和不含水。被证明的水被证明是更有效的做法,而不是NH4NO3改善凋落物分解率的修正;添加水显着提高了凋落物分解速率(P& 0.001),而单独添加N对凋落物质量损失没有明显影响。然而,反复措施的方差分析(ANOVA)显示水和N的相互作用显着影响质量损失和垃圾N含量(P& 0.05),并且在凋落物质量损失和凋落物分解之间鉴定了线性关系时间(p& 0.001)。在凋落物质量损失和有机C含量之间没有发现相关性,但在残留的垃圾质量和N含量(P& 0.01)之间发现了显着的阳性相关性。虽然该研究在相对较短的时间内进行,但我们的结果表明,增加的降水可能会促进凋落物分解,而效果增加几乎没有效果。时间对凋落物质量损失和残留C和N浓度的影响表明需要测量凋落物分解和C和N释放峰的完整过程的长期试验。 (c)2017年范围管理协会。由elsevier Inc.保留所有权利发布。

著录项

  • 来源
    《Rangeland Ecology & Management》 |2018年第2期|共8页
  • 作者单位

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat Beijing 100101 Peoples R China;

    Chinese Acad Sci Inst Geog Sci &

    Nat Resources Res Key Lab Land Surface Pattern &

    Simulat Beijing 100101 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 畜牧、动物医学、狩猎、蚕、蜂;
  • 关键词

    atmospheric nitrogen deposition; increased precipitation; litter decomposition; semiarid temperate grassland;

    机译:大气氮沉积;增加降水;凋落物分解;半干旱温带草地;

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