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Separate collection of household food waste for anaerobic degradation - Comparison of different techniques from a systems perspective

机译:分开收集用于无氧降解的家庭食物垃圾-从系统角度比较不同技术

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摘要

Four systems for household food waste collection are compared in relation the environmental impact categories eutrophication potential, acidification potential, global warming potential as well as energy use. Also, a hotspot analysis is performed in order to suggest improvements in each of the compared collection systems. Separate collection of household food waste in paper bags (with and without drying prior to collection) with use of kitchen grinders and with use of vacuum system in kitchen sinks were compared. In all cases, food waste was used for anaerobic digestion with energy and nutrient recovery in all cases. Compared systems all resulted in net avoidance of assessed environmental impact categories; eutrophication potential (-0.1 to -2.4 kg NO_3~-eq/ton food waste), acidification potential (-0.4 to -1.0 kg SO_2~-eq/ ton food waste), global warming potential (-790 to -960 kg C_2~-Jeq/ton food waste) and primary energy use (-1.7 to -3.6 GJ/ton food waste). Collection with vacuum system results in the largest net avoidence of primary energy use, while disposal of food waste in paper bags for decentralized drying before collection result in a larger net avoidence of global warming, eutrophication and acidification. However, both these systems not have been taken into use in large scale systems yet and further investigations are needed in order to confirm the outcomes from the comparison. Ranking of scenarios differ largely if considering only emissions in the foreground system, indicating the importance of taking also downstream emissions into consideration when comparing different collection systems. The hot spot identification shows that losses of organic matter in mechanical pretreatment as well as tank connected food waste disposal systems and energy in drying and vacuum systems reply to the largest impact on the results in each system respectively.
机译:比较了四种家庭食物垃圾收集系统的环境影响类别:富营养化潜力,酸化潜力,全球变暖潜力以及能源使用。另外,执行热点分析以建议在每个比较的收集系统中进行改进。比较了使用厨房研磨机和使用厨房水槽中的真空系统将家庭食物垃圾分别收集在纸袋中的情况(收集前有无干燥)。在所有情况下,都将食物垃圾用于厌氧消化,并在所有情况下回收能量和营养。经过比较的系统都净规避了评估的环境影响类别;富营养化潜力(-0.1至-2.4 kg NO_3〜-eq /吨食物垃圾),酸化潜力(-0.4至-1.0 kg SO_2〜-eq /吨食物垃圾),全球变暖潜力(-790至-960 kg C_2〜 -Jeq /吨食物垃圾)和一次能源使用(-1.7至-3.6 GJ /吨食物垃圾)。真空系统的收集最大程度地避免了一次能源的净使用,而在收集前将食物垃圾处理在纸袋中进行分散干燥的处理,可以更大程度地避免了全球变暖,富营养化和酸化的发生。但是,这两个系统尚未在大规模系统中使用,需要进一步研究以确认比较的结果。如果仅考虑前台系统中的排放,则情景的排名差异很大,这表明在比较不同的收集系统时也必须考虑下游排放的重要性。热点识别表明,机械预处理以及与罐相连的食物垃圾处理系统中有机物的损失以及干燥和真空系统中的能量分别对每个系统的结果产生了最大影响。

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