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(00895)Methane Production and Waste Stabilization in Anaerobic Co-Digestion of Food Waste, Biosolids and used Cooking Oil

机译:(00895)甲烷生产和废物稳定在厌氧共同消化食品废物,生物糖和用过的食用油

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Restaurants, food processing industries and cafe kitchen generate significant amounts of food waste (FW)and waste cooking oil. Septage treatment also generates large amount of biosolids. This study explores the application of anaerobic process, which generates methane, a renewable energy resource, to these wastes. The performance of batch anaerobic co-digestion of food waste, biosolids and waste cooking oil at varying waste ratio, namely 0, 30, 50 and 70 mass percent volatile solids (VS)was determined. The seed sludge used was a combination of cow rumen obtained from a slaughterhouse and pig manure. The waste mixture that did not contain waste oil yielded the highest amount of methane (61.5 mL g~(-1)VS), showed the highest VS destruction (48.51%)and rate of hydrolysis (first-order rate constant of 0.187 d~(-1)). Rates of hydrolysis and methane production, methane yield and methane content of the biogas produced were lower at higher amounts of oil added but constant amount of seed sludge. Nevertheless, the mixture containing 70% waste oil produced 9.54 mL g~(-1)VS. Compared with other simple means of disposal, this method of the three kinds of wastes is a promising energy-generating option for treating food waste.
机译:餐馆,食品加工等行业和咖啡厅的厨房产生显著数量的食物垃圾(FW)和废食用油。粪污治疗还产生大量的生物固体。本研究探讨厌氧工艺,产生甲烷,可再生能源,这些废弃物的应用。的食品废弃物,生物固体批量厌氧共消化的性能,并浪费在不同废物比,即0,30,50和70质量%挥发性固体(VS)测定食用油。使用的种子污泥是从屠宰场和猪粪获得牛瘤胃的组合。不含有废油的废物混合物,得到甲烷的最高量(61.5毫升克〜(-1)VS),显示出最高的VS破坏(48.51%)和0.187 d的水解(一级速率常数的速率〜 (-1))。水解和甲烷产量,甲烷产率和产生的沼气的甲烷含量的速率在较高量的油加入,但接种污泥的恒定量较低。然而,含有70%的废油的混合物产生9.54毫升克〜(-1)VS。与处置等简单的手段相比,三种废物的这种方法是治疗食品废物的潜力的能源生成选项。

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