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首页> 外文期刊>The International Journal of Life Cycle Assessment >Environmental evaluation and comparison of selected industrial scale biomethane production facilities across Europe
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Environmental evaluation and comparison of selected industrial scale biomethane production facilities across Europe

机译:欧洲部分工业规模沼气生产设施的环境评估和比较

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摘要

Purpose The two main reasons for producing biomethane as renewable fuel are reduction of climate impacts and depletion of fossil resources. Biomethane is expected to be sustainable, but how sustainable is it actually? This article contributes to the clarification. Therefore, the environmental impacts of several biomethane facilities all over Europe were assessed. A special focus is put on the differences between the facilities as they follow different production routes. Methods The method used for evaluation is life cycle assessment (LCA) applied in a well-to-wheel approach. This enables to show the overall performance in terms of global warming potential (GWP), acidification potential (AP), eutrophication potential (EP), photochemical ozone creation potential (POCP) and PE fossil. The system boundary includes the entire chain from biogas production to upgrading, distribution and use. For evaluating the different production routes several years of measuring data, calculating and improving the LCA models in close cooperation with the plant operators were carried out. Results and discussion The evaluation of the production routes shows a high reduction potential compared to fossil fuels. Regarding the depletion of fossil resources, the amounts vary between the sites, but the reduction is at least 50 % and reaches almost 100 % reductions at some sites. The reduction of GWP is at least 65 %, because waste flows free of environmental burdens are used almost exclusively as substrate. Other dominant factors are power and heat demand, methane losses to the environment and the use of by-products, e.g. fertilizer. Conclusions Despite this caveat, the evaluated systems demonstrate the possible positive results of renewable fuel production if done properly.
机译:目的生产生物甲烷作为可再生燃料的两个主要原因是减少气候影响和减少化石资源。预计生物甲烷是可持续的,但实际上它是如何可持续的?本文有助于澄清。因此,评估了整个欧洲几个生物甲烷设施对环境的影响。特别关注的是设施之间的差异,因为它们遵循不同的生产路线。方法用于评估的方法是在轮到井方法中应用的生命周期评估(LCA)。这使得能够根据全球变暖潜势(GWP),酸化势(AP),富营养化势(EP),光化学臭氧产生势(POCP)和PE化石显示整体性能。系统边界包括从沼气生产到升级,分配和使用的整个链条。为了评估不同的生产路线,需要多年的测量数据,并与工厂运营商密切合作,计算并改进了LCA模型。结果与讨论与化石燃料相比,对生产路线的评估显示出较高的还原潜力。关于化石资源的消耗,地点之间的数量不同,但减少量至少为50%,在某些地点减少量几乎达到100%。 GWP的降低至少为65%,因为没有环境负担的废物流几乎专门用作基质。其他主要因素是电力和热量需求,甲烷对环境的损失以及副产品的使用,例如肥料。结论尽管有这些警告,但评估的系统证明,如果操作正确,可能会产生可再生燃料生产的积极成果。

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