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首页> 外文期刊>European journal of forest research >Biomass functions for the two alien tree species Prunus serotina Ehrh. and Robinia pseudoacacia L. in floodplain forests of Northern Italy
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Biomass functions for the two alien tree species Prunus serotina Ehrh. and Robinia pseudoacacia L. in floodplain forests of Northern Italy

机译:两个外来树种李子李的生物量功能。意大利北部洪泛区森林中的刺槐和刺槐

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摘要

As one cause for biodiversity loss, invasive alien species are a worldwide threat. In forests, however, invasive tree species can also have an enormous biomass potential which can be harvested while taking measures against the species. Allometric equations help estimating the biomass but are often only available for the native range of the species. This lack on information complicates the management of invaded stands, and the equations presented here should help fill this gap. The above-ground biomass for single trees of black cherry (Prunus serotina Ehrh.) and black locust (Robinia pseudoacacia L.) in Ticino/Italy was estimated with differing explanatory variables as total, stem, crown, and leaf biomass. Regression equations of P. serotina were compared with equations from North America. The methods to derive biomass estimates from fresh weight and volumetric measurements in combination with wood densities were critically examined. The biomass could be estimated well by using "diameter" as explanatory variable. The productivity of P. serotina was lower here compared to its range of origin. Biomass estimates from volumetric measurementscombined with the truncated cone formula have lead to systematic overestimations. Also the use of volumetric measurements combined with wood density measurements has overestimated comparable estimates from fresh weight measurements.
机译:作为生物多样性丧失的原因之一,外来入侵物种是全球性的威胁。但是,在森林中,入侵树种也可能具有巨大的生物量潜力,可以在对付该树种的措施下将其收获。异速方程可以帮助估算生物量,但通常仅适用于物种的自然范围。信息的缺乏使被入侵的林分的管理变得复杂,这里提出的方程式应有助于填补这一空白。估计意大利提契诺州的黑樱桃(Prunus serotina Ehrh。)和刺槐(Robinia pseudoacacia L.)的单树的地上生物量具有不同的解释变量,如总生物量,茎,冠和叶生物量。将P. serotina的回归方程与北美的方程进行了比较。严格检查了从鲜重和体积测量值结合木材密度得出生物量估计值的方法。通过使用“直径”作为解释变量可以很好地估计生物量。与原产地范围相比,P。serotina的生产力较低。来自体积测量结果的生物量估计值与截头圆锥公式相结合已导致系统的高估。同样,将体积测量值与木材密度测量值结合使用时,高估了来自鲜重测量值的可比估计值。

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