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Spatial-temporal variabilit of soil moisture, nitriogen availability indices and other chemical properties in hoop pine (Araucaria cunninghamii) plantations of subtropical Australia

机译:亚热带澳大利亚环松(Araucaria cunninghamii)人工林的土壤水分,氮素有效性指数和其他化学性质的时空变化

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摘要

The spatial variability of soil moisture. nitrogen (N) availability indices (total N, NO_3~- N, NH_4~+-N, potential mineralizable N PMN), and other chemical properties (organic C (OC), available P, pH, CEC, exchangeable K, Ca, Mg, Mn, Na) was investigated in two plots (1.36 ha each) fo eight-year -old hoop pine (Araucaria cunninghamii Ait. ex D. Don) progeny tests located in south-east Queensand, Australia, for dry and wet seasons, Following a nested sampling pattern, soil samples of 0-10 cm depth stratified at three different sampling scales (378, 42 and 2.6m~2) were taken. The hierarchical model of analysis of variance was used to analyse the spatial structure of these soil properties. The objectives of this study were to: (1) evaluate the spatial-temporal variability of soil properties in the two plots, and (2) develop an effective sampling strategy for similar test plots. At the wet season in the study plot 1, it wwas shown that for soil total N, CEC, pH, exchangeable Ca, Mg, and Na there were significant differences between means of 42m~2 plots within 378 m~2 plots and between those fo 378 m~2 plots within the 1.36 ha plot, For available P, PMN, mineral N, OC, and exchangeable Mn only differences between means of 42 m~2 plots within 378 m~2 plots were significant, For soil moisture, NH_4~+-N and exchangeable K there were significant differences between means of 378 m~2 plots within the 1.36 ha plot. For all of these properties there were no significant differences between means of 2.6 m~2 plots within 42 m~2 plots. mainly due to substantial variation (30-70% of total variance) of the soil properties within 42 m~2 plots. NO spatial structure was found for soil NO_3~--N. For the dry season in the study plot 1, the patterns of the spatial variability only for soil tatal N, mineral N and available P remained the same as for those of the wet season. For study plot 2 at the wet season. the patterns of spatial variability for such soil properties were less pronounced. The sampling strategy for evaluating tree productivity potential of the plots and for monitoring the soil properties was highly dependent on set of the properties chosen, and on expected changes in means of soil properties from date to date. The findings are discussed in relation to the issues concerning asssessment of tree growth performance in forest plantations.
机译:土壤水分的空间变异性。氮(N)可用性指数(总N,NO_3〜-N,NH_4〜+ -N,潜在矿化N PMN)和其他化学性质(有机C(OC),可用P,pH,CEC,可交换K,Ca, Mg,Mn,Na)在澳大利亚昆士兰州东南部的两个八岁环抱松子树(Araucaria cunninghamii Ait。ex D.Don)后代试验中进行了两个样地(每个样地1.36公顷)的调查,按照嵌套采样模式,以三种不同的采样比例(378、42和2.6m〜2)对0-10厘米深度的土壤样品进行分层。使用方差分析的层次模型来分析这些土壤属性的空间结构。这项研究的目的是:(1)在两个样地中评估土壤特性的时空变化,以及(2)为类似的试验样地制定有效的采样策略。结果表明,在研究区1的湿季,土壤总氮,CEC,pH,可交换的钙,镁和钠含量在378 m〜2区之间的42m〜2区之间的平均值之间存在显着差异。在1.36公顷土地上的378 m〜2地块中,对于有效的P,PMN,矿质N,OC和可交换的Mn,只有378 m〜2地块内42 m〜2地块之间的均值之间存在显着差异,对于土壤水分而言,NH_4 〜+ -N和可交换K在1.36公顷样地中378 m〜2个样地的均值之间存在显着差异。对于所有这些属性,在42 m〜2地块中2.6 m〜2地块的均值之间没有显着差异。主要是由于42 m〜2地块内土壤性质发生较大变化(占总变化的30-70%)。土壤NO_3〜--N未发现空间结构。对于研究区1的干旱季节,仅土壤总氮,矿质氮和有效磷的空间变异性模式与潮湿季节相同。对于研究2在雨季。这种土壤特性的空间变异性模式不太明显。用于评估样地树木生产力潜力和监测土壤特性的采样策略高度依赖于所选特性的集合以及迄今为止土壤特性手段的预期变化。讨论结果与评估人工林树木生长性能有关的问题有关。

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