Title of article :
Rapidly Eroding Pi?on–Juniper Woodlands in New Mexico: Response to Slash Treatment
Author/Authors :
Hastings، Brian K. نويسنده , , Smith، Freeman M. نويسنده , , Jacobs، Brian F. نويسنده ,
Issue Information :
دوماهنامه با شماره پیاپی سال 2003
Pages :
-128
From page :
129
To page :
0
Abstract :
The pi?on (Pinus edulis Engelm.)–juniper [Juniperus monosperma (Engelm.) Sarg.] woodlands of Bandelier National Monument are experiencing accelerated erosion. Earlier studies suggest that causes of these rapidly eroding woodlands are related to an unprecedented rapid transition of ponderosa pine (Pinus ponderosa C. Lawson) savanna to pi?on–juniper woodlands as a result of cumulative historical effects of overgrazing, fire suppression, and severe drought. To study the effectiveness of slash treatment in reducing accelerated erosion, we used sediment check dams to quantify sediment yield from twelve paired microwatersheds (300–1100 m2) within an existing paired watershed study. Six of the twelve microwatersheds were located in a 41-ha (treatment) watershed with scattered slash treatment, whereas six microwatersheds were located in an adjacent 35-ha untreated (control) watershed. The primary purpose of our research was to quantify the rates of sediment yield between the treated and control microwatersheds. Sediment yield was measured from 15 individual storms during the months of June–September (2000 and 2001). In response to slash treatment, mean seasonal sediment yield for 2000 equaled 2.99 Mg/ha in the control vs. 0.03 Mg/ha in the treatment and 2.07 Mg/ha in the control vs. 0.07 Mg/ha in the treatment in 2001. The practice of slash treatment demonstrates efficacy in reducing erosion in degraded pi?on–juniper woodlands by encouraging herbaceous recovery. Our data show that slash treatment increases total ground cover (slash and herbaceous growth) beyond a potential erosion threshold. Restored pi?on–juniper woodlands, as the result of slash treatment, provide a forest structure similar to pre-grazing and pre-fire suppression conditions and decrease catastrophic fire hazard.
Keywords :
Heat treatment , evaporation , hydroxymethylfurfural (HMF) , patulin , Apple juice
Journal title :
Journal of Environmental Quality(JEQ)
Serial Year :
2003
Journal title :
Journal of Environmental Quality(JEQ)
Record number :
82707
Link To Document :
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