Application of ultrasonic disintegration to waste activated sludge for increasing of biogas production by anaerobic digestion

I. Patroescu, R. Dinu, M. Ștefănescu, V. Badescu, N. Cristea, C. Martin
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Abstract

The municipal wastewater treatment is the source of significant amounts of primary and secondary sludge which is under the present legislation referring to quality and management aspects. It is estimated that a half of wastewater treatment plant costs are due to the sludge management. Anaerobically sludge stabilization, capitalization as energy source, in order to diminish the costs and sludge volume decreasing, are the aims of the main operational steps of sludge treatment, as a part of wastewater treatment plant. The improvement of sludge anaerobically stabilization process must be possible by acting in the rate limiting step - hydrolysis in order to rise the organic carbon solubilization. The increase of soluble carbon can be possible by adding a pretreatment step of waste biological sludge, ultrasonic disintegration being one option. This paper emphasized the experimental results regarding anaerobically stabilization of the thickened waste biological sludge by ultrasonication taking into account the results of blank test, without ultrasonication. Experimental tests show that ultrasonic disintegration of the sludge having initial dried substances content (d.w) 2.72% and soluble organic load COD of 598 mg O2/L led to soluble COD concentration of 4950-6710 mg O2/L after sonication with specific energy in the range of 3.06 - 14.24 kWh/kg d.w. Anaerobically stabilization during 25 test days at 36 0C of the mixture 40% disintegrated biological sludge and 60% digested sludge (inoculum) mixture led to 30-38.6% increase of biogas production comparing with parallel test with non-sonicated sludge.
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超声波降解废活性污泥提高厌氧消化产气量的应用
城市污水处理是大量初级和二级污泥的来源,根据现行立法,涉及质量和管理方面。据估计,污水处理厂成本的一半是由于污泥管理。作为污水处理厂的一部分,污泥处理的主要操作步骤是厌氧污泥稳定化,资本化作为能源,以降低成本,减少污泥量。为了提高污泥的有机碳增溶率,必须通过限速步解法来改善污泥的厌氧稳定过程。可溶碳的增加可以通过增加一个预处理步骤的废生物污泥,超声波分解是一种选择。在空白试验的基础上,着重介绍了超声波对浓缩后的废生物污泥厌氧稳定的实验结果。实验结果表明,对初始干物质含量(d.w)为2.72%、可溶有机负荷COD为598 mg O2/L的污泥进行超声分解后,超声处理后可溶COD浓度为4950 ~ 6710 mg O2/L,比能量为3.06 ~ 14.24 kWh/kg d.w。在36℃条件下,40%的生物污泥和60%的消化污泥(接种物)混合物厌氧稳定25天,可使沼气产量增加30 ~ 38.6%与无声污泥平行试验比较。
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