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水力空化作为一种预处理含油废水的新方法,用于与剩余活性污泥进行厌氧共消化。

Hydrodynamic cavitation as a novel approach for pretreatment of oily wastewater for anaerobic co-digestion with waste activated sludge.

作者信息

Habashi Nima, Mehrdadi Nasser, Mennerich Artur, Alighardashi Abolghasem, Torabian Ali

机构信息

Faculty of Environment, University of Tehran, No. 25, Ghods St., Enghelab Ave., Tehran, Iran; Faculty of Civil and Environmental Engineering, Ostfalia University of Applied Sciences, Herbert-Meyer-Str. 7, 29556 Suderburg, Germany.

Faculty of Environment, University of Tehran, No. 25, Ghods St., Enghelab Ave., Tehran, Iran.

出版信息

Ultrason Sonochem. 2016 Jul;31:362-70. doi: 10.1016/j.ultsonch.2016.01.022. Epub 2016 Jan 21.

Abstract

Application of hydrodynamic cavitation (HC) was investigated with the objective of biogas production enhancement from co-digestion of oily wastewater (OWW) and waste activated sludge (WAS). Initially, the effect of HC on the OWW was evaluated in terms of energy consumption and turbidity increase. Then, several mixtures of OWW (with and without HC pretreatment) and WAS with the same concentration of total volatile solid were prepared as a substrate for co-digestion. Following, several batch co-digestion trials were conducted. To compare the biogas production, a number of digestion trials were also conducted with a mono substrate (OWW or WAS alone). The best operating condition of HC was achieved in the shortest retention time (7.5 min) with the application of 3mm diameter orifice and maximum pump rotational speed. Biogas production from all co-digestion reactors was higher than the WAS mono substrate reactors. Moreover, biogas production had a direct relationship with OWW ratio and no major inhibition was observed in any of the reactors. The biogas production was also enhanced by HC pretreatment and almost all of the reactors with HC pretreatment had higher reaction rates than the reactors without pretreatment.

摘要

研究了水力空化(HC)在提高含油废水(OWW)和废弃活性污泥(WAS)共消化产沼气方面的应用。首先,从能耗和浊度增加方面评估了HC对OWW的影响。然后,制备了几种总挥发性固体浓度相同的OWW(有和没有HC预处理)与WAS的混合物作为共消化的底物。接着,进行了几次分批共消化试验。为了比较沼气产量,还对单一底物(单独的OWW或WAS)进行了一些消化试验。在应用3毫米直径孔板和最大泵转速的情况下,在最短停留时间(7.5分钟)内实现了HC的最佳运行条件。所有共消化反应器的沼气产量均高于WAS单一底物反应器。此外,沼气产量与OWW比例呈直接关系,且在任何反应器中均未观察到重大抑制作用。HC预处理也提高了沼气产量,几乎所有经过HC预处理的反应器的反应速率都高于未预处理的反应器。

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