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Impacts of Forest Harvesting Related Soil Disturbance on End-of-Rotation Wood Quality and Quantity in a New Zealand Radiata Pine Forest

机译:森林采伐相关土壤扰动对新西兰辐射松林轮终木材质量和数量的影响

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The long-term effect of soil disturbance (litter removal, topsoil removal and compaction) from forest harvesting on wood quality and quantity of second-rotation Pinus radiata growing oil a clay loam soil, was assessed at the end the rotation, 26 years after planting. Relative to Control plots, average tree and stand total volume at rotation end was not significantly affected by litter removal and nil or light compaction, but was significantly reduced by 28% by litter and topsoil removal and moderate subsoil compaction, and further reduced by 39% by heavy compaction. Wood density at breast height in the inner rings of trees in the most disturbed treatments was elevated by Lip to 30 kg m(-3). This occurred because these treatments were more N deficient as reflected by foliar N levels during the first I I years of growth relative to the Control. However, no treatment differences in wood density were evident in outer rings, and by rotation age overall mean density did not differ significantly between treatments. Neither acoustic velocity of standing trees, nor acoustic velocity of logs, was significantly affected by soil disturbance, indicating that stiffness of number cut from trees in the trial was likely to be similar for all treatments. Economic impacts of soil disturbance and compaction oil this soil type will therefore result largely from the considerable negative impacts on final tree size, with little or no compensation from improved wood properties.
机译:种植结束26年后,在旋转结束时评估了森林采伐对土壤的长期干扰(清除森林,去除表层土壤和压实)对粘土质壤土的第二次旋转辐射松生长油的木材质量和数量的长期影响。 。相对于对照样地,轮伐末的平均树木和林分总体积不受清除凋落物和零夯实或轻压实的影响,但由于清除凋落物和表土和中等程度的土壤压实而显着减少了28%,进一步降低了39%通过重压实。在最受干扰的处理中,树木内环的胸高处的木材密度通过Lip升高到30 kg m(-3)。发生这种情况的原因是,相对于对照而言,在生长的第一个I年中,这些处理方式的N含量更高,如叶N含量所反映。然而,在外圈,木材密度没有明显的处理差异,并且通过旋转年龄,各处理之间的总体平均密度没有显着差异。立木的声速和原木的声速均不受土壤扰动的显着影响,这表明在该试验中,从树木上砍下的树木数量的硬度对于所有处理均可能相似。因此,这种土壤类型的土壤扰动和压实油的经济影响将主要来自对最终树木大小的相当大的负面影响,而木材性能的改善则几乎没有或没有补偿。

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