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首页> 外文期刊>Waste and biomass valorization >Enhancement of Sewage Sludge Byconversion to Methane by the Addition of Exhausted Coffee Biowaste Liquid Fraction
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Enhancement of Sewage Sludge Byconversion to Methane by the Addition of Exhausted Coffee Biowaste Liquid Fraction

机译:通过添加耗尽的咖啡BioWasty液体馏分来增强污水污泥的污泥渗透转化

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Anaerobic co-digestion of organic rich wastes and wastewater sludge has become an attractive economic possibility for water utilities as it enhances biogas production. The suitability of the organic rich waste depends on its biodegradability as well as on its synergetic effect on the anaerobic digestion process. The feasibility of sewage sludge (SS) treatment via co-digestion was studied in a semi-continuous mode at mesophilic conditions (36 +/- 1 degrees C), with a hydraulic retention time of 17 days and an average organic loading rate of 0.94 +/- 0.05 g(VS) L-reactor day(-1), using the liquid fraction of pre-treated exhausted coffee biowaste (LECB) as a co-substrate. An anaerobic co-digestion trial (T1) was performed using as feeding mixture 80% SS and 20% LECB (v:v) and compared against a reference scenario of mono-digestion of SS (T0). The stability along assays was ensured by monitoring the digestate characteristics (pH, electrical conductivity, total alkalinity and ammonia content) and the specific energy-loading rate (SELR). Along the operation time of T1, methane yield and VS removal were significantly higher in comparison to mono-digestion of SS. Results showed that the addition of the co-substrate had a positive effect on specific methane production (3 times higher) and methane content (12% higher), indicating this is a feasible strategy towards self-sufficient wastewater treatment plants.
机译:厌氧共消化有机丰富的废物和废水污泥已成为水公用事业的有吸引力的经济可能性,因为它提高了沼气生产。有机丰富废物的适用性取决于其生物降解性以及对厌氧消化过程的协同作用。通过共消化的污泥污泥(SS)处理的可行性在嗜水煮条件下(36 +/- 1℃),液压保留时间为17天,平均有机载量为0.94 +/- 0.05克(Vs)L反应器日(-1),使用预处理的净化咖啡BioWaste(LECB)作为共衬底的液体分数。使用作为饲养混合物80%SS和20%LECB(V:V)进行的厌氧共消化试验(T1),并与SS(T0)的单消解的参考场景进行比较。通过监测消化特征(pH,导电性,总碱度和氨含量)和特定的能量负载率(SELR)来确保沿测定的稳定性。沿T1的操作时间,与SS的单消解相比,甲烷产率和Vs去除显着高。结果表明,共衬底的添加对特异性甲烷的产生(3倍越高)和甲烷含量(12%越高),这表明这是对自给式废水处理厂的可行策略。

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