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Environmental assessments of biological treatments of biowaste in life cycle perspective: A critical review

机译:从生命周期角度对生物废物进行生物处理的环境评估:一项重要评论

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Municipal biowaste is a major environmental issue. Life-cycle assessment is a valuable tool to assess recycling options, and anaerobic digestion and composting have performed adequately. However, reviews indicate several discrepancies between studies. Thus, we critically review 25 life-cycle assessments of the composting and anaerobic digestion of municipal biowaste. Our objective is to identify decisive factors, methodological gaps and processes that affect environmental performance. We generally identified methodological gaps in expanding systems borders. In energy systems, the replaced energy source did not consider power generation or dynamic regulation. All studies adopted mixed energy sources or marginal approaches. Agroecosystems included the carbon sequestration potential and compensation for the production of synthetic fertilizers only. A limited range of scientifically proven benefits of compost use has been reported. In general, studies provided a limited account of the effects of use on land emissions, but contradictory assumptions emerged, mainly in modelling synthetic fertilizer compensation. Only three studies compensated direct emissions from the use of synthetic fertilizers, and none included indirect emissions. Further studies should include an analysis of the additional benefits of compost use, compensate for the effects of emissions from synthetic fertilizer use on land and mix attributional and consequential approaches in energy system expansion.
机译:市政生物废物是主要的环境问题。生命周期评估是评估回收方案的有价值的工具,厌氧消化和堆肥已充分发挥了作用。但是,评论表明研究之间存在一些差异。因此,我们严格审查了25种对城市生物垃圾的堆肥和厌氧消化的生命周期评估。我们的目标是确定影响环境绩效的决定性因素,方法学差距和过程。我们通常确定了扩大系统边界的方法学差距。在能源系统中,替代能源不考虑发电或动态调节。所有研究都采用混合能源或边际方法。农业生态系统仅包括固碳潜力和仅用于合成肥料生产的补偿。据报道,使用堆肥的科学效益有限。一般而言,研究提供了使用对土地排放的影响的有限说明,但是出现了相互矛盾的假设,主要是在模拟化肥补偿模型中。只有三项研究补偿了使用化肥的直接排放,没有一项包括间接排放。进一步的研究应包括对堆肥使用的额外好处进行分析,补偿合成肥料使用对土地的影响,并在能源系统扩展中采用归因和间接方法。

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