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Site-specific economic and ecological analysis of enhanced production, upgrade and feed-in of biomethane from organic wastes

机译:针对特定地点的经济和生态分析,以提高有机废物的生产,升级和供入沼气的能力

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摘要

The present study analyses the cost structure and ecological performance of biomethane production and feed-in from organic wastes and manure in a site-specific approach for Upper Austria. The theoretically available quantities of biowaste and manure can feed representative biogas plant capacities resulting in relatively high biomethane full costs in the natural gas grid of at least 9.0 ?-cents/kWh, which shows strong economies of scale when feed-in flows of methane from 30 to 120 Nm~3/h are considered. From the ecological point of view small plant capacities are to be preferred since the environmental effect, i.e. the global warming potential (up to -22% of CO _(2eq)), is lower in comparison to higher capacities as a consequence of reduced transport in the evaluated scenarios. To enforce the combined energetic use of the biowaste fraction, co-operation between compost facility, gas grid and biogas plant operators is necessary to use existing infrastructure, logistics and knowledge to promote the production, upgrade and feed-in of biomethane from biowastes at attractive locations in Upper Austria and in the whole of Europe.
机译:本研究分析了上奥地利州特定地点的方法生产生物甲烷的成本结构和生态绩效,以及有机废物和粪便的进料。从理论上讲,可利用的生物废物和粪便的数量可以满足具有代表性的沼气厂的生产能力,从而导致天然气网格中沼气的全部成本至少达到9.0欧分/ kWh,这表明,当甲烷的进料流量从考虑30〜120Nm〜3 / h。从生态的角度来看,小工厂的容量是首选,因为由于运输减少,环境影响,即全球变暖潜力(高达-22%的CO _(2eq))相对于更高的能力要低。在评估的方案中。为了加强对生物废物部分的综合利用,堆肥设施,燃气网和沼气厂运营商之间的合作是必要的,以利用现有的基础设施,物流和知识,以有吸引力的方式促进生物废物的生产,升级和供入沼气。在上奥地利州和整个欧洲的地理位置。

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