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Recovery of essential nutrients from municipal solid waste - Impact of waste management infrastructure and governance aspects

机译:从城市固体废物中回收必需养分-废物管理基础设施和治理方面的影响

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摘要

Every year 120-140 million tonnes of bio-waste are generated in Europe, most of which is landfilled, incinerated or stabilized and used as covering material in landfill operation. None of these practices enables the recovery of essential nutrients such as phosphorus (P) and nitrogen (N), which are in great demand for agricultural production. Recovery of these nutrients is a matter of international concern considering the non-renewable nature of P sources and the energy intensive production process required for the synthesis of N fertilizers. The objective of this research is to understand the relation between the municipal solid waste management (MSWM) system, both its the physical components and governance aspects, and the recovery of nutrients in Vitoria-Gasteiz (Basque Country) as a benchmark for European medium-size cities. The analysis shows that the existing physical infrastructure and facilities for bio-waste have high potential for nutrient recovery, 49% for N and 83% for P contained in bio-waste. However, governance aspects of the MSWM system such as legislation and user inclusivity play an important role and decrease the actual nutrient recovery to 3.4% and 7.4% for N and P respectively.
机译:欧洲每年产生120-1.4亿吨生物废物,其中大部分被填埋,焚化或稳定化,并用作填埋场的覆盖材料。这些实践都无法回收必需的营养物质,例如对农业生产非常需求的磷(P)和氮(N)。考虑到磷源的不可再生性以及合成氮肥所需的能源密集型生产过程,这些养分的回收是国际关注的问题。这项研究的目的是了解城市固体废物管理(MSWM)系统,其物理组成和治理方面以及Vitoria-Gasteiz(巴斯克地区)中的营养物回收之间的关系,作为欧洲中等偏远地区的基准,大小城市。分析表明,现有的生物废料物理基础设施和设施具有很高的养分回收潜力,其中生物废料中氮的含量为49%,磷的含量为83%。但是,MSWM系统的治理方面(例如法规和用户包容性)起着重要作用,并将氮和磷的实际养分回收率分别降低到3.4%和7.4%。

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