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Evaluating ecosystem processes in willow short rotation coppice bioenergy plantations

机译:评估柳树短轮伐期生物能源种植园的生态系统过程

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摘要

espite a growing body of research linking bioenergy cultivation to changing patterns of biodiversity, there has been remarkably little interest in how bioenergy plantations affect key ecosystem processes underpinning important ecosystem services. In this study, we compare how the processes of predation by ground arthropods and litter decomposition varied between Short Rotation Coppice (SRC) willow bioenergy plantations and alternative land-uses: arable and set-aside (agricultural land taken out of production). We deployed litter bags to measure variation in decomposition, and a prey removal assay coupled with pitfall traps and direct searches to investigate variation in predation pressure. Decomposition rate was higher in willow SRC and set-aside than in cereal crops. Willow SRC had the highest abundance and diversity of ground-dwelling arthropod predators, but land-use had no detectable influence on predation of fly pupae or the combined activity-density of the two principal Coleoptera families (carabids and staphylinids). Overall, our study demonstrates that the conversion of arable land to SRC may have implications for the rate of some, but not all, ecosystem processes, and highlights the need for further research in this area
机译:尽管有越来越多的研究将生物能源种植与不断变化的生物多样性模式联系起来,但人们对生物能源人工林如何影响支撑重要生态系统服务的关键生态系统过程的兴趣很少。在这项研究中,我们比较了短节肢动物(SRC)柳树生物能源人工林和替代土地利用方式(可耕种和预留土地(停产的农业用地))之间节肢动物捕食和凋落物分解的过程如何变化。我们部署了垃圾袋来测量分解的变化,并结合了陷阱陷阱和直接搜索来调查猎物压力的变化来进行猎物去除试验。柳树SRC和预留的分解速率高于谷物作物。柳树SRC具有最多的陆生节肢动物捕食者丰富度和多样性,但土地利用对蝇p的捕食或两个主要鞘翅目科(carabid和staphylinids)的联合活动密度没有可检测的影响。总体而言,我们的研究表明,将耕地转换为SRC可能会影响某些而非全部生态系统进程的速度,并强调了在这一领域进行进一步研究的必要性

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