欧洲杂交杨树无性系生物量生产力的气候变化模型

IF 1.5 4区 农林科学 Q2 FORESTRY
S. Bianchi, Daesung Lee, S. Bergante, G. Facciotto, J. Hynynen, G. Nervo, A. Cutini
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引用次数: 0

摘要

可再生生物能源具有为能源部门作出可持续贡献的潜力。在欧洲,林业是生物质能源的主要来源,杨树(属Populus)被广泛用于短轮伐灌木林(SRC)。许多研究已经评估了杨树无性系的生产力,但缺乏区域研究以及与气候的联系。对20个杨树杂交无性系的生物量生产力进行了研究。在欧洲9个国家的16个地点种植了克隆,尽管并非所有克隆都在所有地方复制。在每个地点,将无性系种植在三个重复的地块上。所有地块在4年后收获,并估算地上干生物量。我们拟合了地块水平上地上总干生物量的无性系线性混合模型作为气候变量的函数。对于许多无性系(8个),只有年热湿亏缺对生产力产生负影响,在少数情况下(3个),还有二次项对生产力的影响更为平滑。在其他一些无性系(5个)中,只有夏季平均降水量对产量有正线性影响。平均而言,这些模型中由固定效应解释的方差为56%。其余的无性系(7个)没有显著的气候变量影响。我们的研究明确地调查了水分有效性与杨树SRC生产力之间的定量联系,这是最重要的已知因素之一,但通常不使用建模方法进行研究。此外,我们在干燥条件下展示了最高产的无性系。我们还强调需要进行更大规模的区域实验,以产生可用于气候变化情景的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Climate-wise models of biomass productivity for hybrid poplar clones in Europe
Renewable bioenergy has the potential to contribute sustainably to the energy sector. Forestry is the main source of biomass for energy in Europe, and poplar (genus Populus ) is widely used for short rotation coppice (SRC). Many studies have assessed poplar clones’ productivity but there is a lack of regional studies and links with the climate. We investigated the biomass productivity of twenty hybrid poplar clones for SRC. Clones were planted in sixteen locations across nine countries in Europe, although not all clones were replicated in all locations. In each location, clones were planted in three replicated plots. All plots were harvested after four years, and the aboveground dry biomass estimated. We fitted clone-specific linear mixed models of total aboveground dry biomass production at plot level as function of climatic variables. For many clones (eight) only annual heat moisture deficit negatively affected productivity, in few cases (3) together with a quadratic term for a smoother relationship. In some other clones (five) only the mean summer precipitation positively and linearly affected productivity. On average, the variance explained by the fixed effects in those models was 56%. For the remaining clones (seven), no climate variables resulted significant. Our study explicitly investigated the quantitative link between water availability and poplar SRC productivity, one of the most important known factors but not often studied with a modelling approach. Further, we show the most productive clones in dried conditions. We also highlight the need to larger scale regional experiments to produce models that can be used in climate change scenarios.
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来源期刊
CiteScore
3.30
自引率
0.00%
发文量
54
审稿时长
6 months
期刊介绍: The journal encompasses a broad range of research aspects concerning forest science: forest ecology, biodiversity/genetics and ecophysiology, silviculture, forest inventory and planning, forest protection and monitoring, forest harvesting, landscape ecology, forest history, wood technology.
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