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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Composition and functional soil properties of arenosols and acrisols: Effects on eucalyptus growth and productivity
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Composition and functional soil properties of arenosols and acrisols: Effects on eucalyptus growth and productivity

机译:氨基糖醇和丙糖醇的组成和功能土壤性质:对桉树生长和生产率的影响

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Linking edaphic properties to forest productivity provides significant gains in classification of site production potential. This study evaluated soil functional and composition properties that affect eucalyptus productivity in Acrisols and Arenosols, which represent two contrasting edaphic conditions and site productive potential capacity. Eucalypt stand growth, volumetric and biomass production data were related to the soil properties determined in undisturbed samples collected in 12 sampling points from seven soil layers, from the soil surface down to 1.20-m depth. Our results showed a volumetric wood production for 89-months-old stands of 422.3 m(3) ha(-1) (195.4 Mg ha(-1); wood biomass) in Acrisols sites, and 288 m(3) ha(-1) (134.6 Mg ha(-1); wood biomass) in Arenosols sites. Soil properties in Arenosols such as macroporosity and total porosity and soil bulk density (0.00-0.10 m layer) has positive and negative correlations, respectively, with eucalypt increment rates. In Acrisols, soil macroporosity, air permeability and saturated hydraulic conductivity in soil layers down to 0.60 m depth had positive correlation (p < 0.05) with forest productivity. Soil bulk density and air permeability in Acrisols affected more than 55% of variability in total height and biomass increment rates. Our results showed that forest productivity in soils with high water storage capacity is conditioned more by functional soil properties, particularly soil permeability to water and air, while in highly drainable soils forest productive capacity is conditioned by composition properties, such as soil porosity and soil bulk density.
机译:将辅助性能与森林生产力联系起来,在现场生产潜力的分类中提供了显着的收益。该研究评估了影响亚丙烯酸和氨基酚桉树生产率的土壤功能和组合物性能,其代表了两个对比的副价条件和位点生产潜在能力。桉树效果增长,体积和生物质生产数据与在从七个土壤层中收集的未受干扰的样品中测定的土壤性质,从土壤面积降至1.20米深度。我们的结果表明,89个月历史的422.3米(3)公顷(-1)(195.4 mg ha(-1);木材生物量),288米(3)公顷( - 1)(134.6 mg ha(-1);木材生物量)在胰岛素源。氨基溶胶等土壤性质如大孔,总孔隙度和土壤堆积密度(0.00-0.10米层)分别具有阳性和负相关性,具有桉树增量率。在丙酰酰基,土壤层中的透气性,透气性和饱和液压导电率下降至0.60米深度,森林生产率具有阳性相关性(P <0.05)。酰亚醇的土壤堆积密度和透气性影响了总高度和生物质增量率的55%以上。我们的研究结果表明,具有高储水能力的土壤中的森林生产力通过功能性土壤性质,特别是水和空气的土壤渗透性,而在高度排水的土壤中,森林生产能力由组合物性能,如土壤孔隙率和土壤散装密度。

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