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Characterization of food waste and sewage sludge mesophilic anaerobic co-digestion under different mixing ratios of primary sludge, secondary sludge and food waste

机译:不同混合比初级污泥,二次污泥和食物废物的不同混合比例食品废物和污水污泥融合厌氧厌氧共消化的特征

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The main aim of the present work was to characterize the mesophilic anaerobic co-digestion of food waste (FW) and sewage sludge (SS) by considering different mixing ratios of primary sludge (Pr), secondary sludge (Sc) and food waste. The experiments were carried out using batch reactors (R1-R7). The applied ratios included VS_(pr):VS_(sc) (1:1 and 2:1) and VS_(FW):VS_(SS) (0:4, 1:3, 2:2 and 4:0) with VS_X (g) as the volatile solids content of the substance x within the total feed of each reactor and VS_(SS) as the sum of VS_(Pr) and VS_(Sc)- According to the obtained results, ratio of carbon to nitrogen (C.N) was much more effective than VS_(Pr):VS_(Sc) ratio considering VS reduction and biogas production efficiencies. A second-order polynomial curve fitted well the data of VS reduction vs. C:N, representing an optimum C:N around 16 to achieve the highest VS removal. A high R-squared linear correlation was found between data of gas production and C:N ratio according to which, with increasing the C:N within the test range (8-19.7), the biogas production increased steadily. Doubling VS_(Pr):VS_(Sc) under lower ratios of VS_(FW):VS_(SS) (0:4 and 1:3) positively affected both VS reduction and biogas production, while under higher VSfw:VSss ratio (2:2) it influenced adversely. Doubling VS_(Pr):VS_(sc) also improved the digestate dewaterability under all applied ratios of VS_(FW):VS_(SS).A synergistic gas production was observed for the reactors with 50% share of VS_(FW) (VS_(FW): VS_(ss) of 2:2) between which, R5 with VS_(Pr):VS_(Sc) of 1:1 showed the highest synergistic gas production. The highest methane content (70.3%) also belonged to R5.
机译:本作本作的主要目的是通过考虑初级污泥(PR),二次污泥(SC)和食物废物的不同混合比来表征食品废物(FW)和污水污泥(SS)的嗜嗜厌厌厌污染(SS)。使用批量反应器(R1-R7)进行实验。包括vs_(pr):vs_(sc)(1:1和2:1)和vs_(fw):vs_(ss)(0:4,1:3,2:2和4:0) Vs_x(g)作为物质x的挥发性固体含量在每个反应器和Vs_(ss)的总饲料中作为Vs_(pr)和Vs_(ss)的总和 - 根据所得结果,碳与氮的比率(CN)比VS_(PR):VS_(SC)比率更有效,考虑到VS减少和沼气产生效率。二阶多项式曲线孔井符合VS减少与C:n的数据,表示最佳C:n约16以达到最高的VS去除。在天然气生产和C:N比的数据之间发现了高r断线性相关性,随着测试范围内的C:N(8-19.7),沼气产量稳定地增加。 vs_(fw)下比率下的vs_(pr):vs_(sc):vs_(ss)(0:4和1:3)积极影响VS减少和沼气生产,而在较高的VSFW下:VSSS比率(2 :2)它受到不利影响。加倍VS_(PR):VS_(SC)还改善了VS_(FW)的所有施加比下的消化脱水性:VS_(SS)。对于VS_(FW)的50%份额(FW)的反应器观察到协同气体生产(VS_ (FW):2:2的VS_(SS)之间的VS_(PR):VS_(SC)为1:1显示了最高的协同气体生产。最高的甲烷含量(70.3%)也属于R5。

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