Soil Organic Carbon and Total Nitrogen of Soil Physical Fraction in the Process of Karst Rocky Desertification
|更新时间:2025-03-12
|
Soil Organic Carbon and Total Nitrogen of Soil Physical Fraction in the Process of Karst Rocky Desertification
Bulletin of Soiland Water ConservationVol. 28, Issue 5, Pages: 50-55(2009)
作者机构:
1. 贵州省发酵工程与生物制药重点实验室,贵州,贵阳,550002
2. 中国科学院地球化学研究所环境地球化学国家重点实验室,贵州,贵阳,550002
作者简介:
基金信息:
DOI:
CLC:
Published:2009
稿件说明:
移动端阅览
LU Hong-mei, WANG Shi-jie. Soil Organic Carbon and Total Nitrogen of Soil Physical Fraction in the Process of Karst Rocky Desertification[J]. Bulletin of Soiland Water Conservation, 2009, 28(5): 50-55.
DOI:
LU Hong-mei, WANG Shi-jie. Soil Organic Carbon and Total Nitrogen of Soil Physical Fraction in the Process of Karst Rocky Desertification[J]. Bulletin of Soiland Water Conservation, 2009, 28(5): 50-55.DOI:
Soil Organic Carbon and Total Nitrogen of Soil Physical Fraction in the Process of Karst Rocky Desertification
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.
Spatial Correlation Analysis of Karst Rocky Desertification and Soil Type Based on RS & GIS ——A Case Study at Du'an Yao Autonomous County of Guangxi Province
Construction of Spectral Prediction Model of Karst Rocky Desertification Under Different Conditions and Analysis of Its Spatial Distribution
Allocation of Soil Organic Carbon in Physical Fractions as Affected by Plantation in Mobile Sand Dune
Impact of Precipitation Factor on Rocky Desertification in Karst Areas
Correlation of Karst Rock Desertification and Land Use Patterns in Different Geomorphologic Environment
Related Author
WU Zhang-mei
JIANG Shu-fang
YAN Zhi-qiang
LIAO Chi-mei
HUANG Qiu-yan
HU Bao-qing
YAN Li-hui
ZHOU Zhong-fa
Related Institution
National Laboratory of Environmental Geochemistry, Geochemistry Institute of Chinese Academy of Sciences
Faculty of Resources and Environmental Science, Guangxi Teachers Education University, Nanning 530001, Guangix Zhuang Autonomous Region
Institute of South China Karst,Guizhou Normal University