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Environmental impacts of future low-carbon electricity systems: Detailed life cycle assessment of a Danish case study

机译:未来低碳电力系统的环境影响:丹麦案例研究的详细生命周期评估

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The need to reduce dependency on fossil resources and to decrease greenhouse gas (GHG) emissions is driving many countries towards the implementation of low-carbon electricity systems. In this study the environmental impact of a future (2030) possible low-carbon electricity system in Denmark was assessed and compared with the current situation (2010) and an alternative 2030 scenario using life cycle assessment (LCA). The influence on the final results of the modeling approach used for (ⅰ) electricity import, (ⅱ) biomass resources, and (ⅲ) the cogeneration of heat and power was discussed. The results showed that consumption of fossil resources and global warming impacts from the Danish electricity sector could be reduced significantly compared with 2010. Nevertheless, a reduction in GHG may be at the expense of other environmental impacts, such as the increased depletion of abiotic resources. Moreover, the results were very dependent upon biomass origin: when agricultural land was affected by biomass import, and land use changes and transportation were included, GHG emissions from imported biomass were comparable to those from fossil fuels. The results were significantly influenced by the modeling approach regarding the import of electricity, biomass provision, and the allocation between heat and power in cogeneration plants. As the importance of all three aspects is likely to increase in the future, transparency in LCA modeling is critical. Characterized impacts for Danish power plants in 2010 and 2030 (including corresponding electricity supply mixes) were provided, thus enabling future LCA studies to include appropriately impacts from the Danish electricity sector.
机译:减少对化石资源的依赖并减少温室气体(GHG)排放的需求正推动许多国家开始实施低碳电力系统。在这项研究中,评估了丹麦未来​​(2030年)可能的低碳电力系统的环境影响,并将其与当前状况(2010年)以及使用生命周期评估(LCA)的2030年替代情景进行了比较。讨论了用于(the)进口电力,(ⅱ)生物质资源和(ⅲ)热电联产的建模方法最终结果的影响。结果表明,与2010年相比,丹麦电力部门的化石资源消耗和全球变暖影响可能会大大减少。尽管如此,温室气体的减少可能以其他环境影响为代价,例如非生物资源的消耗增加。此外,结果非常依赖于生物质的来源:当农业用地受到生物质进口的影响,并且包括土地用途的变化和运输时,进口生物质的温室气体排放量可与化石燃料相比。该结果受到有关热电联产电厂的电力进口,生物质供应以及热电分配的建模方法的显着影响。由于将来这三个方面的重要性都可能增加,因此LCA建模的透明度至关重要。提供了2010年和2030年对丹麦发电厂的特定影响(包括相应的电力供应组合),从而使未来的LCA研究能够适当地吸收丹麦电力部门的影响。

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