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Anaerobic co‑digestion: a sustainable approach to food processing organic waste management

机译:Anaerobic Co-Digestion:食品加工有机废物管理的可持续方法

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Anaerobic digestion is a promising technology to control pollution and recover energy from organic matter. In this study, batch experiments were conducted to investigate methane yields of seven organic wastes from a food processing company and dairy manure (DM) from a tie-stall barn having two straw lengths (2 cm and 10 cm) at 52 °C. This was followed by anaerobic co-digestion of all organic wastes with DM in bench experiments. The results indicated that the highest methane yield was observed in lipid-rich waste (basil sauce, 0.47 L/gVS) followed by carbohydrate-rich wastes (pumpkin processing residue, 0.21 L/gVS); the lowest yield was obtained from tomato leaves and stems (0.09 L/gVS). Furthermore, the methane yield from DM was about 0.18 L/gVS, irrespective of the straw length. Anaerobic co-digestion of food processing residues with DM demonstrated a 41% increase in methane yield (0.24 L/gVS), as compared to DM alone (0.17 L/gVS), while the milling of both organic wastes and DM did not affect methane yields. Thus, integration of anaerobic co-digestion in food processing residue management is a sustainable approach that guarantees a closed-loop flowing economy and makes food processing environmentally friendly.
机译:Anaerobic Digestion是一种有助于控制污染和从有机物中恢复能量的技术。在该研究中,进行了分批实验,以从食品加工公司和乳制品(DM)的甲烷产量从52℃下具有两个秸秆长度(2cm和10cm)的Tie-Stall谷仓来研究七种有机废物(DM)。随后是在板凳实验中具有DM的所有有机废物的Anaerobic共消化。结果表明,在富含脂质的废物(罗勒酱,0.47L / GV)中观察到最高甲烷产率,然后观察到富含碳水化合物的废物(南瓜加工残留物,0.21L / GV);从番茄叶和茎(0.09L / GV)获得的最低产量。此外,来自DM的甲烷产率为约0.18升/ gVs,无论秸秆长度如何。与DM的食物加工残留物的厌氧共消化证明了甲烷产率(0.24L / gV)增加了41%,与单独的DM相比(0.17L / gV)相比,有机废物和DM的研磨不影响甲烷产量。因此,在食品加工残留管理中的厌氧共消化的整合是一种可持续的方法,可保证闭环流动经济性,并使食物加工环境友好。

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