Title of article
Soil quality degradation processes along a deforestation chronosequence in the Ziwuling area, China
Author/Authors
An، نويسنده , , Shaoshan and Zheng، نويسنده , , Fenli and Zhang، نويسنده , , Feng and Van Pelt، نويسنده , , Scott and Hamer، نويسنده , , Ute and Makeschin، نويسنده , , Franz، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2008
Pages
9
From page
248
To page
256
Abstract
Accelerated erosion caused by deforestation and soil degradation has become the primary factor limiting sustainable utilization of soil resources on the Loess Plateau of Northwestern China. We studied the physical, chemical, and microbiological processes of soil degradation along a chronosequence of deforestation in the Ziwuling area of northwestern Shaanxi province. The results indicated that soil wet aggregate stability, mean aggregate diameter decreased with years following deforestation. Accelerated erosion resulted in soil nutrient loss, and a decrease in soil enzyme activities including notable losses of total soil N, organic C, alkaline phosphatase activity, and invertase activity. During the early time period, the rates of total soil N, organic C, alkaline phosphatase activity, and invertase activity decreasing were rapid and gradually decreased with deforestation years. Increased use of nitrogen fertilizers made determination of soil quality based on measured NO3–N and NH4–N inconclusive. The differences in measured parameters between the topsoil and subsoil horizons decreased with time since deforestation, and we concluded that soil erosion was the primary process responsible for the degradation of measured soil physical, chemical, and microbiological properties.
Keywords
Accelerated soil erosion , Soil quality , Deforestation , Loess Plateau , Wet aggregate stability , Soil Enzyme Activities
Journal title
CATENA
Serial Year
2008
Journal title
CATENA
Record number
2253253
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