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The challenge of lignocellulosic bioenergy in a water-limited world.

机译:缺水世界中木质纤维素生物能源的挑战。

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It is hoped that lignocellulosic sources will provide energy security, offset carbon dioxide enrichment of the atmosphere, and stimulate the development of new economic sectors. However, little is known about the productivity and sustainability of plant cell-wall energy industries. In this study, we used 16 global circulation models to project the global distribution of relative water availability in the coming decades and summarized the available data on the water-use efficiency of tree- and grass-based bioenergy systems. The data on bioenergy water use were extremely limited. Productivity was strongly correlated with water-use efficiency, with C4 grasses having a distinct advantage in this regard. Our analysis of agro climatic drivers of bioenergy productivity suggests that relative water availability will be one of the most important climatic changes to consider in the design of bioenergy systems.
机译:希望木质纤维素来源将提供能源安全,抵消大气中二氧化碳的富集,并刺激新经济部门的发展。但是,关于植物细胞壁能源产业的生产力和可持续性知之甚少。在这项研究中,我们使用了16种全球循环模型来预测未来几十年相对可用水的全球分布,并总结了有关基于树和草的生物能源系统的用水效率的可用数据。关于生物能源用水的数据非常有限。生产力与水分利用效率密切相关,C 4 草在这方面具有明显的优势。我们对生物能源生产力的农业气候驱动因素的分析表明,相对水利用率将是设计生物能源系统时要考虑的最重要的气候变化之一。

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