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Spatial variability of soil respiration in a larch plantation: estimation of the number of sampling points required

机译:落叶松人工林土壤呼吸的空间变异性:所需采样点数量的估计

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摘要

The objective of this study was to determine the spatial variability of soil respiration and the number of the sampling points required to get a representative value of soil respiration within an ecosystem. In late August 2000, two measurements of soil respiration were conducted at a larch (Larix kaempferi) plantation in Hokkaido, Japan, with the static alkali absorption method (AA method) improved by Kirita [Jpn. J. Ecol. 21 (1971) 119]. The spatial variability of soil respiration rates among 50 sampling points within a 30 m x 30 m plot, was described by the coefficient of variation (CV) of each series of measurements. The average CV was 28%. The average number of sampling points required to estimate soil respiration within 10 and 20% of its actual mean, at the 95% probability level, was estimated to be 30 and 8, respectively. Soil temperature and moisture content did not contribute to the spatial variability of soil respiration in the present site, suggesting that these two factors have a greater influence on the temporal variability of soil respiration than on the spatial variability of soil respiration.
机译:这项研究的目的是确定土壤呼吸作用的空间变异性以及在生态系统中获得代表性土壤呼吸作用所需的采样点数量。 2000年8月下旬,在日本北海道的落叶松(Larix kaempferi)人工林上进行了两次土壤呼吸测量,采用了Kirita改进的静态碱吸收法(AA法)。 J. Ecol。 21(1971)119]。 30 m x 30 m绘图中的50个采样点之间的土壤呼吸速率的空间变异性,通过每组测量的变异系数(CV)来描述。平均简历率为28%。在95%的概率水平下,估计土壤呼吸在其实际平均值的10%和20%之内所需的平均采样点数分别估计为30和8。土壤温度和水分含量对目前土壤呼吸的空间变异性没有贡献,表明这两个因素对土壤呼吸的时间变异性的影响大于对土壤呼吸的空间变异性的影响。

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