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Biogas generation by hybrid treatment of dairy wastewater with lipolytic whole cell preparations and anaerobic sludge

机译:用脂溶性全细胞制备和厌氧污泥的乳制品废水杂交处理沼气

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This study aimed to assess the potential of the biochemical methane production and biodegradability of dairy wastewater employing a hybrid treatment: granular anaerobic sludge as inoculum and whole cells of Penicillium citrinum with high lipase activity. It was expected that mycelium-bound lipase from whole cells would enhance hydrolysis, contributing to the efficiency of anaerobic digestion by granular inoculum. Seven substrate and microbial combinations were prepared; five contained the inoculum and whole cells cultivated in different agroindustrial wastes and two were controls (inoculated and uninoculated). A synergistic microbial interaction was evidenced by the high cumulative methane production after 45 h of reaction, reaching 231 mL g(-1) volatile solids. pH was maintained at values near neutrality in all treatments, and chemical oxygen demand removal ranged from 42 to 57 % in hybrid treatments. First-order and modified Gompertz kinetic models were fitted to experimental data, and a lag phase was not observed. The results show the potential of hybrid treatment of dairy wastewater with whole cells produced in waste-based media for biogas production.
机译:本研究旨在评估采用杂种处理的乳制品废水的生化甲烷生产和生物降解性的潜力:粒状厌氧污泥作为胆碱活性高柠檬酸的白细胞植物的整个细胞。预计全细胞的菌丝体染色脂肪酶将增强水解,有助于通过粒状接种物的厌氧消化的效率。制备了7种底物和微生物组合;五种含有在不同农业工业废物中培养的接种物和整个细胞,两种是对照(接种和未处理)。在反应45小时后,通过高累积甲烷产生的协同微生物相互作用,达到231ml G(-1)挥发性固体。 pH维持在所有治疗中的中性附近的值,化学氧需求除去杂交处理中的42%至57%。一阶和修改的GOMPertz动力学模型适用于实验数据,未观察到滞后阶段。结果表明,乳品废水杂交处理与废物培养基生产的全细胞进行沼气生产。

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