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Anaerobic Digestion of Food Waste: Effect of the Organic Load Variation in a Demo-Scale System

机译:厌氧消化食物垃圾:演示系统中有机负荷变化的影响

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This study aimed to evaluate the effect of organic loading rate (OLR) variation on the anaerobic treatment of food waste from a university restaurant in a demonstration-scale set-up. The system was submitted to the academic calendar and seasonal variation of temperature. During 330 days of semi-continuous operation in three different periods (i.e. school-period/fall, school-period/spring and vacation-period/summer), the reactor performance and stability process were analysed. The reactor temperature was not controlled and varied seasonally from 23 to 32 degrees C. Differently, the OLR and hydraulic retention time (HRT) were controlled by food waste available in the vacation period and by the reactor stability in the school periods, ranging from 0.15 to 0.51 kg VS m(-3) day(-1) for the OLR and from 121 to 230 days for the HRT. The highest average methane production rate and VS removal were 0.12 m(3) CH4 m(-3) day(-1) and 81%, respectively. The results indicated that as the reactor had been operated using non-optimized mixing for six years before the experiment, probably the accumulation of inert materials inside affected its performance. In addition, despite the non-optimized mixing of the reactor, which represented up to 80% of the energy consumed, a net energy ratio of 1.98 was achieved. Throughout the experimental period a total of 15,970 kg of food waste was treated and 375 m(3) of methane were produced. Despite the system limitations, the valorization of food waste through anaerobic digestion proved to be possible under simplified operating conditions, i.e. even without pH and temperature control, besides the organic loading rate reduction caused by the vacation period.[GRAPHICS].
机译:本研究旨在评估有机加载率(OLR)变异对一家大学餐厅的厌氧治疗厌氧处理的影响。该系统提交给学术日历和温度季节性变化。在三个不同时期的半连续操作330天内(即学校 - 期/秋季,学校 - 期/春季和假期/夏季),分析了反应器性能和稳定性过程。在23至32摄氏度下,不控制反应器温度并季节性稳定地变化。不同地,OLR和液压保留时间(HRT)通过在度假期可用的食物垃圾和学校期间的反应堆稳定来控制,范围为0.15 OLR的0.51千克Vs M(-3)天(-1),HRT为121至230天。最高的平均甲烷产量和Vs去除分别为0.12m(3)℃(-3)天(-1)和81%。结果表明,随着反应器在实验前使用未优化的混合进行操作,可能内部惰性材料的积累影响其性能。此外,尽管反应器的未优化混合,但由于占用的能量高达80%,因此实现了1.98的净能量比。在整个实验期间,共有15,970千克食物废物处理,并制备375米(3)甲烷。尽管系统局限性,但在简化的操作条件下证明,通过厌氧消化的食物废物的算入,即即使没有pH和温度控制,除了假期期间的有机加载速率还减少。[图形]。

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