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Solubilization of waste activated sludge by alkaline pretreatment and biochemical methane potential (BMP) tests for anaerobic co-digestion of municipal organic waste

机译:通过碱预处理和生化甲烷潜能(BMP)试验增溶废物活性污泥,用于城市有机废物的厌氧共消化

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Biochemical methane potential (BMP) tests have been carried out to determine the anaerobic digestibility of the waste activated sludge (WAS) and the sludge pretreated by NaOH (PWAS). The optimal NaOH dosage was determined to be 45 meq NaOH/L. The maximum SCOD solubilization was 27.7, 31.4 and 38.3% at the temperatures, of 25, 35 and 55degreesC respectively after 4 hours reaction. The final methane yield of simulated food waste (SFW) was 430 ml CH4/g Vs(added), and those of PWAS (25degreesC), PWAS (35degreesC) and PWAS (55degreesC) was 274, 286 and 310 ml CH4/g VSadded respectively after 20 days. The figures were 66%, 73% and 88% higher than that of WAS. The methane production in anaerobic co-digestion is considerably affected by the fraction of SFW and PWAS in the feed. The anaerobic digestibility of the feed mixture (SFW with PWAS) is higher than that of the feed mixture (SFW with WAS). Anaerobic co-digestion of food waste with the PWAS is found to be an attractive option to reduce the solid waste volume with improved methane recovery. [References: 23]
机译:已进行了生化甲烷潜力(BMP)测试,以确定废活性污泥(WAS)和经NaOH预处理的污泥(PWAS)的厌氧消化率。确定的最佳NaOH剂量为45 meq NaOH / L。反应4小时后,在25、35和55℃的温度下,最大的SCOD增溶度分别为27.7、31.4和38.3%。模拟食物残渣(SFW)的最终甲烷产量为430 ml CH4 / g Vs(添加),而PWAS(25°C),PWAS(35°C)和PWAS(55°C)的最终甲烷产量为274、286和310 ml CH4 / g VS添加分别在20天后。分别比WAS高出66%,73%和88%。厌氧共消化中的甲烷产量受进料中SFW和PWAS的比例影响很大。进料混合物(带有PWAS的SFW)的厌氧消化率高于进料混合物(带有WAS的SFW)的厌氧消化率。与PWAS一起厌氧消化食物垃圾是减少固体垃圾量并提高甲烷回收率的一种有吸引力的选择。 [参考:23]

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