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Solid-state anaerobic co-digestion of hay and soybean processing waste for biogas production

机译:固态厌氧消化用于生产沼气的干草和大豆加工废料

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Co-digestion of soybean processing waste (SPW) and hay in solid-state anaerobic digestion (SS-AD) for biogas production was investigated. Effects of the SPW to hay ratio, feedstock to effluent (inoculum) ratio, premixing of effluent with feedstock, and leachate recirculation on biogas production via SS-AD were studied. The highest methane yield of 258 L/kg VS was obtained with a SPW/hay ratio of 75:25 and feedstock/ effluent (F/E) ratio of 3, which was 148% and 50% higher than that of 100% SPW and 100% hay, respectively. Increasing the F/E ratio from 1 to 5 decreased methane yield, however the highest volumetric methane yield (16.2 L/L_(reactor)) was obtained at an F/E of 3. There was no significant difference in methane yields between premixing 50% and 100% of the effluent. Leachate recirculation significantly accelerated the SS-AD start-up process when effluent was not completely premixed.
机译:研究了固态厌氧消化(SS-AD)中用于生产沼气的大豆加工废物(SPW)和干草的共消化。研究了SPW与干草的比率,原料与废水(接种物)的比率,废水与原料的预混合以及渗滤液再循环对通过SS-AD生产沼气的影响。最高的甲烷产量为258 L / kg V​​S,SPW /干草比率为75:25,原料/废水(F / E)比率为3,分别比100%SPW和140%分别高148%和50%。分别是100%的干草。将F / E比例从1增加到5会降低甲烷产率,但是在F / E为3时会获得最高体积甲烷产率(16.2 L / L_(反应器))。在预混合50次之间,甲烷产率没有显着差异%和100%的废水。当流出物未完全预混合时,渗滤液的再循环会显着加速SS-AD的启动过程。

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