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Effect of digester F/M ratio on gas production and sludge minimization of ultrasonically treated sludge

机译:消化池F / M比对超声处理污泥产气量和污泥最小化的影响

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Sludge pretreatment by mechanical, chemical or thermal methods before anaerobic digestion has been applied to increase the digestability of excess sludge. Pretreatment processes rely on their ability to disrupt cell membranes and to release organic materials from the cells into the aqueous phase. Pretreatment by mechanical disintegration has grown rapidly in recent years in parallel with the advances in technology. Ultrasonic sludge disintegration -one of the most commonly used mechanical pretreatment methods- enables the occurrence of cavitation bubbles for the break-up of microorganism cells to extract intracellular materials. The purpose of this study was to conduct disintegration experiments to optimize sonication parameters and to operate subsequent batch anaerobic digesters to examine the effect of food to microorganism ratio (F/M) in sonicated and unsonicated samples. Results showed that high sonication powers and longer treatment times were effective in sludge disintegration in terms of soluble chemical oxygen demand release. Sonicated sludge digested in batch reactors with higher initial F/M ratio caused higher methane generations, higher sludge reductions and had better dewatering characteristics.
机译:在进行厌氧消化之前,可以通过机械,化学或热方法对污泥进行预处理,以提高剩余污泥的消化率。预处理过程取决于它们破坏细胞膜和将有机物质从细胞释放到水相中的能力。近年来,随着技术的发展,通过机械崩解进行的预处理已经迅速增长。超声波污泥的分解是最常用的机械预处理方法之一,它使空化气泡的出现使微生物细胞破裂,从而提取出细胞内物质。这项研究的目的是进行崩解实验,以优化超声处理参数,并操作随后的分批厌氧消化池,以检查超声处理和未超声处理样品中食物与微生物的比率(F / M)的影响。结果表明,就可溶性化学需氧量的释放而言,高超声处理能力和更长的处理时间可有效地降解污泥。在分批反应器中以较高的初始F / M比进行消化的超声处理污泥可产生更高的甲烷生成量,更高的污泥减少量并具有更好的脱水特性。

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