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超声-热预处理厌氧消化前的剩余活性污泥。

Sono-thermal pre-treatment of waste activated sludge before anaerobic digestion.

机构信息

Department of Environmental Engineering, Engineering & Architecture Faculty, Nevşehir University, 50300 Nevşehir, Turkey.

出版信息

Ultrason Sonochem. 2013 Jan;20(1):587-94. doi: 10.1016/j.ultsonch.2012.07.006. Epub 2012 Jul 21.

Abstract

Sonication and thermalization can be applied successfully to disrupt the complex waste activated sludge (WAS) floc structure and to release extra and intra cellular polymeric substances into soluble phase along with solubilization of particulate organic matters, before sludge digestion. In this study, sonication has been combined with thermalization to improve its disintegration efficiency. It was aimed that rise in temperature occurring during the sonication of sludge was used to be as an advantage for the following thermalization in the combined pre-treatment. Thus, the effects of sonication, thermalization and sono-thermalization on physical and chemical properties of sludge were investigated separately under different pre-treatment conditions. The disintegration efficiencies of these methods were in the following descending order: sono-thermalization > sonication > thermalization. The optimum operating conditions for sono-thermalization were determined as the combination of 1-min sonication at 1.0 W/mL and thermalization at 80 °C for 1h. The influences of sludge pre-treatment on biodegradability of WAS were experienced with biochemical methane potential assay in batch anaerobic reactors. Relative to the control reactor, total methane production in the sono-thermalized reactor increased by 13.6% and it was more than the sum of relative increases achieved in the sonicated and thermalized reactors. Besides, the volatile solids and total chemical oxygen demand reductions in the sono-thermalized reactor were enhanced as well. However, it was determined that sludge pre-treatment techniques applied in this study was not feasible due to their high energy requirements.

摘要

超声和热解可以成功地应用于破坏复杂的废活性污泥 (WAS) 絮体结构,并将细胞外和细胞内的高分子物质释放到可溶性相中,同时使颗粒有机物溶解,然后进行污泥消化。在本研究中,超声与热解相结合以提高其分解效率。目的是利用污泥超声过程中产生的升温,作为后续联合预处理中热解的优势。因此,分别在不同的预处理条件下,研究了超声、热解和超声-热解对污泥物理化学性质的影响。这些方法的分解效率依次为:超声-热解>超声>热解。超声-热解的最佳操作条件确定为 1.0 W/mL 下超声 1 分钟,然后在 80°C 下热解 1 小时。污泥预处理对 WAS 生物降解性的影响通过间歇式厌氧反应器中的生化甲烷潜能测定进行了评估。与对照反应器相比,超声-热解反应器中的总甲烷产量增加了 13.6%,并且超过了超声和热解反应器中相对增加量的总和。此外,超声-热解反应器中的挥发性固体和总化学需氧量的减少也得到了增强。然而,由于其高能源需求,确定本研究中应用的污泥预处理技术不可行。

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