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Anaerobic co-digestion of livestock and vegetable processing wastes: Fibre degradation and digestate stability

机译:畜禽和蔬菜加工废料的厌氧共消化:纤维降解和消化稳定性

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摘要

Anaerobic digestion of livestock wastes (swine manure (SM) and poultry litter (PL)) and vegetable processing wastes (VPW) mixtures was evaluated in terms of methane yield, volatile solids removal and lig-nocellulosic material degradation. Batch experiments were performed with 2% VS (volatile solids) to ensure complete conversion of TVFAs (total volatile fatty acids) and to avoid ammonia inhibition. Experimental methane yields obtained for the mixtures resulted in higher values than those obtained from the sum of the methane yields from the individual components. VPW addition to livestock wastes before anaerobic digestion also resulted in improved VS elimination. In SM-VPW co-digestions, CH_4 yield increased from 111 to 244 mL CH_4 g VS_(added)~(-1), and the percentage of VS removed increased from 50% to 86%. For PL-VPW co-digestions, the corresponding values were increased from 158 to 223 mL CH_4 g VS_(added)~(-1) and from 70% to 92% VS removed. Hemicelluloses and more than 50% of cellulose were degraded during anaerobic digestion. Thermal analyses indicated that the stabilization of the wastes during anaerobic digestion resulted in significantly less energy being released by digestate samples than fresh samples.
机译:对牲畜废物(猪粪(SM)和家禽垃圾(PL))和蔬菜加工废物(VPW)混合物的厌氧消化进行了甲烷产量,挥发性固体去除和木质纤维素材料降解方面的评估。用2%VS(挥发性固体)进行批处理实验,以确保TVFA(总挥发性脂肪酸)完全转化,并避免氨被抑制。从混合物中获得的实验甲烷产率比从各个组分的甲烷产率总和获得的更高。在厌氧消化之前将VPW添加到牲畜废物中还可以改善VS消除。在SM-VPW共消化中,CH_4的产量从111 mL增加到244 mL CH_4 g VS_(添加)〜(-1),而VS去除的百分比从50%增加到86%。对于PL-VPW共消化,相应的值从158 mL CH_4 g VS_(添加)〜(-1)增加到VS,从70%除去到92%VS。在厌氧消化过程中,半纤维素和50%以上的纤维素被降解。热分析表明,厌氧消化过程中废物的稳定化导致消化样品释放的能量比新鲜样品少得多。

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