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Effects of winter selective tree harvest on soil microclimate and surface CO flux of a northern hardwood forest

机译:冬季选择性树木采伐对北方硬木森林土壤小气候和表面CO通量的影响

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Soil surface CO flux (S flux) is the second largest terrestrial ecosystem carbon flux, and may be affected by forest harvest. The effects of clearcutting on S flux have been studied, but little is known about the effect of alternative harvesting methods such as selective tree harvest on S flux. We measured S flux before and after (i) the creation of forest canopy gaps (simulating group tree selection harvests) and (ii) mechanized winter harvest but no tree removal (simulating ground disturbance associated with logging). The experiment was carried out in a sugar maple dominated forest in the Flambeau River State Forest, Wisconsin. Pre-treatment measurements of soil moisture, temperature and S flux were measured throughout the growing season of 2006. In January-February 2007, a harvester created the canopy gaps (200-380mpo). The mechanization treatment consisted of the harvester traveling through the plots for a similar amount of time as the gap plots, but no trees were cut. Soil moisture and temperature and S flux were measured throughout the growing season for 1 year prior to harvest and for 2 years after harvest. Soil moisture and temperature were significantly greater in the gap than mechanized and control treatments. Instantaneous S flux was positively correlated to soil moisture and soil temperature at 2 and 10cm, but temperature at 10cm was the single best predictor. Annual S flux was not significantly different among treatments prior to winter 2007 harvest, and was not significantly different among treatments after harvest. Annual (+1 std. err.) S flux averaged 967+72, 1011+72, and 1012+72gCmpo yearp# in the control, mechanized and gap treatments, respectively, for the 2-year post-treatment period. The results from this study suggest selective group tree harvest significantly increases soil moisture and temperature but does not significantly influence S flux.
机译:土壤表面CO通量(S通量)是陆地生态系统中第二大碳通量,可能会受到森林采伐的影响。已经研究了砍伐对硫通量的影响,但对于诸如选择性树木采伐对硫通量的替代采伐方法的影响知之甚少。我们在(i)建立森林冠层间隙(模拟成群的树木采伐)和(ii)机械化的冬季采伐但没有砍伐树木(模拟与伐木相关的地面干扰)之前和之后测量S通量。该实验是在威斯康星州弗朗博河州立森林的一个以枫糖为主的森林中进行的。在2006年整个生长季节对土壤湿度,温度和S通量进行了预处理测量。在2007年1月至2月,一个收割机造成了树冠间隙(200-380mpo)。机械化处理包括收割机穿过地块的时间与间隙地块相似的时间,但是没有砍伐树木。在收获前一年和收获后两年的整个生长期测量土壤湿度和温度以及S通量。缝隙中的土壤水分和温度明显高于机械处理和对照处理。瞬时S通量与土壤水分和2cm和10cm处的温度呈正相关,但10cm处的温度是唯一的最佳预测因子。在2007年冬季收获之前,不同处理之间的年S通量没有显着差异,收获后之间的处理之间也无显着差异。在治疗后的两年中,对照,机械和间隙处理的年(+1标准差)S通量分别平均为967 + 72、1011 + 72和1012 + 72gCmpo年p#。这项研究的结果表明,选择性的集体采伐树木可以显着提高土壤湿度和温度,但不会显着影响硫通量。

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