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首页> 外文期刊>Canadian Journal of Forest Research >Mechanical site preparation impacts on soil properties and vegetation communities in the Northwest Territories
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Mechanical site preparation impacts on soil properties and vegetation communities in the Northwest Territories

机译:机械场地准备工作对西北地区的土壤特性和植被群落的影响

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摘要

Greater utilization of hardwood species and societal concerns over maintenance of ecological integrity have provided impetus for forest managers to. consider alternative silvicultural practices in boreal mixedwood forests. The objective of this study was to quantify, the effects of five mechanical site preparation (MSP) treatments on soil properties and understory vegetation of mixedwood stands in the Northwest Territories (NWT). Soil and understory vegetation conditions in treatments (3 years post-MSP treatment) and adjacent uncut forest controls were sampled. Significant Shearblade - Grizz R-ex and Shearblade treatment soil property effects were consistently found. Increases in bulk density (307%) and decreases for total organic carbon (92%); total nitrogen (86%); cation exchange capacity (74%); and exchangeable calcium (72%), magnesium (67%), and potassium (75%) in the soil surface (0-12.8 cm) were observed. Increases in mineral soil pH (1.0 units), total organic carbon (94%), cation exchange capacity (20%), and exchangeable calcium (35%) and magnesium (56%) were also found. Dissimilarity of the understory community with that of the uncut forest increased as follows: uncut forest < harvested only < Meri-Crusher = Grizz R-ex < Shearblade - Meri-Crusher < Shearblade - Grizz R-ex < Shearblade. This research suggests that winter shearblading should be utilized only where it is necessary to achieve specific management objectives.
机译:阔叶树种的更多利用以及社会对维护生态完整性的关注为森林经营者提供了动力。考虑在北方混木林中进行其他营林措施。这项研究的目的是量化西北地区(NWT)的五种机械场地准备(MSP)处理对混合林林分土壤特性和林下植被的影响。对处理(MSP处理后3年)和邻近未砍伐森林对照的土壤和林下植被状况进行了采样。始终发现了显着的Shearblade-Grizz R-ex和Shearblade处理土壤特性。堆积密度增加(307%),总有机碳减少(92%);总氮(86%);阳离子交换量(74%);在土壤表面(0-12.8厘米)内观察到可交换的钙(72%),镁(67%)和钾(75%)。还发现增加了矿质土壤的pH(1.0单位),总有机碳(94%),阳离子交换能力(20%)以及可交换的钙(35%)和镁(56%)。林下群落与未砍伐森林的差异增加如下:未砍伐森林<仅采伐

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