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Biogas production using dry fermentation technology through co-digestion of manure and agricultural wastes

机译:通过共消化粪便和农业废物,使用干发酵技术生产沼气

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Recently, dry anaerobic co-digestion is one of the mechanisms which have been increasingly used to improve the reactor's performance for treating livestock manure with agricultural crop residues. Due to carbohydrate, protein and lipid existing in agricultural wastes, biogas yield decreased with higher reactor volume when using wet anaerobic digestion. In this regard, the aim of this work was to achieve the production of biogas using the dry anaerobic technology through livestock manure co-digestion with agricultural waste (AW) such as potato peels, lettuce leaves and peas peels. The manure and AW were mixed at a ratio of 2:1 for 15 min before being introduced into the batch anaerobic system. The results indicated that the co-digestion of lettuce leaves and manure yielded the highest production of methane and biogas which were 6610.2 and 12756.7 ml, respectively, compared to the control (manure) that yielded 4689.9 ml and 11606.7 ml, respectively. Additionally, the results indicated that the co-digestion of lettuce leaves and manure yielded the highest specific production of methane and biogas which were 405.5 ml CH(4)g(-1)VS and 782.6 ml biogas g(-1)VS, respectively, compared to the mono-digestion of manure (control) that yielded 328 ml CH(4)g(-1)VS and 633 ml biogas g(-1)VS, respectively. Eventually, dry anaerobic co-digestion process is an effective approach to waste treatment.
机译:最近,干燥的厌氧共消化是越来越多地用于改善反应堆对治疗农业作物残留物的牲畜粪便的机制之一。由于碳水化合物中存在的碳水化合物,蛋白质和脂质,使用湿无厌氧消化时,沼气产量随着反应器体积的较高的脂肪量降低。在这方面,这项工作的目的是通过牲畜粪便与农业废物(AW)等牲畜粪便,如薯皮,莴苣叶和豌豆皮。在引入批量厌氧系统之前,粪肥和AW以2:1的比例混合15分钟。结果表明,与对照(粪肥)分别产生4689.9ml和11606.7ml的对照(粪肥),莴苣叶和粪肥的共消化产量分别为6610.2和12756.7ml。另外,结果表明,莴苣叶和粪肥的共消化产生了405.5ml CH(4 )g(-1)Vs和782.6ml沼气G(-1)vs的最高特异性生产的甲烷和沼气相比,与粪肥(对照)的单消解相比,分别产生328mL CH(4)G(-1)Vs和633mL沼气G(-1)Vs。最终,干燥的厌氧共消化过程是一种有效的废物处理方法。

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