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The concept of circular economy strategy in food waste management for the optimization of energy production through anaerobic digestion

机译:通过厌氧消化的粮食废物管理循环经济战略概念

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摘要

Food waste management (FWM) is considered to be an extremely important social issue besides an environmental one. Worldwide, it is estimated that 1.3 billion t/year of foods are disposed of in landfills (including edible and inedible foods). Moreover, FAO indicated that if food waste (FW) was a country, it could be the 3rd biggest CO2 producer after China and the USA with more than 3.5-4.2 billion of t equivalence CO2. Each citizen in the entire EU produces approximately 179kg/year FW equal more or less with 600 Euro/year. This paper focuses on the concept of circular economy (CE) and how can we optimize and improve the production of biogas from UASB-R (upflow anaerobic sludge blanket reactor) using FW and natural minerals (clinoptilolite). The study was elaborated through laboratory scale experiments using different mixtures of FW, liquid waste from slaughterhouse (LWS), and natural clinoptilolite (Cli). The amount of biogas produced and the methane content of biogas were used as indicators in order to monitor and asses the performance of the anaerobic digester. The results of the present study were encouraging towards the use of FW in existing anaerobic treatment plants, suggesting selective collection at source of FW, diversion from landfills, and use as a secondary resource for energy recovery through a transition to a CE. The results indicate that the use of FW with zeolite duplicates the production of CH4 within the same days of production compared with the control sample.
机译:除了环境之外,食品废物管理(FWM)被认为是一个非常重要的社会问题。据估计,据估计,13亿吨食物在垃圾填埋场(包括可食用和可剥夺食物)处置。此外,粮农组织表示,如果食物垃圾(FW)是一个国家,它可能是中国和美国之后的第三大二氧化碳生产国,其中T等价二氧化碳的3.5-42亿。整个欧盟的每个公民在600欧元/年内或多或少地产生大约179公斤/年的FW。本文重点介绍了循环经济(CE)的概念,我们如何使用FW和天然矿物(Clinoptilolite)从UASB-R(上流厌氧污泥毯反应器)优化和改善沼气的生产。通过使用来自屠宰场(LWS)的不同混合物的实验室规模实验来阐述该研究,以及来自屠宰场(LWS)的液体废物和天然Clinophtolite(CLI)。产生的沼气量和沼气的甲烷含量用作指标,以便监测和抑制厌氧消化器的性能。本研究的结果令人鼓舞的是在现有的厌氧处理厂中使用FW,建议在FW的来源中选择性收集,从垃圾填埋场转移,并用作通过向CE过渡的能量恢复的次要资源。结果表明,与对照样品相比,使用具有沸石的FW在生产的同一天内的CH4的产生。

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