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Global warming potential impact of bioenergy systems

机译:生物能源系统的全球变暖潜在影响

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Reducing dependence on fossil fuels and mitigation of GHG emissions is a main focus in the energy strategy of many Countries. In the case of Demark, for instance, the long-term target of the energy policy is to reach 100% renewable energy system. This can be achieved by drastic reduction of the energy demand, optimization of production/distribution and substitution of fossil fuels with biomasses. However, a large increase in biomass consumption will finally induce conversion of arable and currently cultivated land into fields dedicated to energy crops production determining significant environmental consequences related to land use changes. In this study the global warming potential impact associated with six alternative bioenergy systems based on willow and Miscanthus was assessed by means of life-cycle assessment. The results showed that bioenergy production may generate higher global warming impacts than the reference fossil fuel system, when the impacts from indirect land use changes are accounted for. In a life-cycle perspective, only highly-efficient co-firing with fossil fuel achieved a (modest) GHG emission reduction.
机译:减少对化石燃料的依赖和缓解温室气体排放是许多国家能源战略的主要重点。例如,在Demark的情况下,能源政策的长期目标是达到100%可再生能源系统。这可以通过减少能量需求,优化生产/分配和化石燃料的优化和化石燃料的替代品来实现。然而,生物质消耗的大幅增加将最终诱导耕地和目前耕地的转换为致力于能源作物生产的领域,确定与土地利用变化有关的重大环境后果。在这项研究中,通过生命周期评估评估了与基于柳树和误生的六种替代生物能源相关的全球变暖潜在影响。结果表明,当间接土地利用变化的影响被占时,生物能量生产可能会产生比参考化石燃料系统更高的全球变暖冲击。在生命周期的角度下,只有具有化石燃料的高效共射,实现了(适度的)温室气体排放减少。

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