喀斯特石漠化过程中的土壤物理组分有机碳氮研究
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贵州大学博士基金(X065010);中国科学院知识创新工程重要方向项目(kzcx2-yw-306);国家重点基础研究发展计划项目(2006CB403200);国家基金委创新研究群体科学基金项目(40721002)项目联合资助


Soil Organic Carbon and Total Nitrogen of Soil Physical Fraction in the Process of Karst Rocky Desertification
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    摘要:

    以贵州省花江峡谷区典型喀斯特石漠化小流域为研究区域, 对潜在、轻度、中度、强度石漠化等级样地代表性土壤物理组分有机碳氮进行了研究。结果表明, 石漠化过程中土壤轻组和颗粒组分有机碳和全氮含量都高于矿质组分, 轻组和颗粒组分的C/N值都高于全土; 轻组、颗粒和矿质组分的有机碳氮含量随石漠化程度的增加而降低, 与石漠化过程有一致性, 颗粒组分数量和有机碳氮分配比例还与石漠化等级有同步性, 而轻组组分数量和有机碳氮分配比例与石漠化等级没有同步性; 轻组和颗粒组分中有机碳和氮的富集系数和分配比例不一致, 在石漠化过程中轻组和颗粒组分SOC的下降明显快于氮; 樵采石漠化的颗粒组分主要是有机质与黏粉粒结合成的有机无机复合体, 其中的有机质易被保护; 开垦石漠化中的颗粒组分大部分都是有机质与砂粒的结合, 其中有机质腐殖化程度低, 易被分解。

    Abstract:

    The research area is a typical karst catchment subject to rocky desert ification in Huajiang Gorge, Guizhou Province. One representative soil sample was collected in each plot of strong, medium, light, or latent desertification grade. The research focused on soil organic carbon (SOC) and total nitrogen (TN) of physical fraction in the processes of rocky desertification. Results elucidated that the par ticulate organic carbon and nitrogen ( POC and PON) and light fraction organic carbon and nitrogen( LFOC and LFON) were higher than the mineral fraction in the process of rocky desertification. The C/ N values of part iculate fr action and light fraction were higher than those of total soil. The content sof POC, PON, LFOC, and LFON decreased with the increase of rocky desertification grade. The content of part iculate fraction and distribution ratio acted in accord with rocky desert if ication grade, while the above index of light fraction did not act in accord with rocky desert if ication grade. The enrichment and distribution ratios of POC and PON, as well as LFOC and LFON, were not the same. The decrease of POC and LFOC was faster than that of PON and LFON in the process of rocky desert if ication. Most POC in wood chopping sequence integrated with silt-clay particle to form organic-inorganic complex, with the integration way POC was protected and was diff icult to decompo se by microbe, while most POC in reclamation sequence integ rated with sand particle, with this kind of integr ation way SOC tended to be in a low humic degree and to be decomposed by microbe easily.

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卢红梅,王世杰.喀斯特石漠化过程中的土壤物理组分有机碳氮研究[J].水土保持通报,2009,(5):50-55

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  • 收稿日期:2008-07-09
  • 最后修改日期:2009-02-03
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  • 在线发布日期: 2014-11-26
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