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超声处理剩余活性污泥以改善厌氧稳定性。

Ultrasonic waste activated sludge disintegration for improving anaerobic stabilization.

作者信息

Tiehm A, Nickel K, Zellhorn M, Neis U

机构信息

Department of Sanitary and Environmental Engineering, Technical University of Hamburg-Harburg, AB Gewässerreinigungstechnik, Eissendorfer Str. 42, D-21073 Hamburg, Germany.

出版信息

Water Res. 2001 Jun;35(8):2003-9. doi: 10.1016/s0043-1354(00)00468-1.

Abstract

The pretreatment of waste activated sludge by ultrasonic disintegration was studied in order to improve the anaerobic sludge stabilization. The ultrasound frequency was varied within a range from 41 to 3217 kHz. The impact of different ultrasound intensities and treatment times was examined. Sludge disintegration was most significant at low frequencies. Low-frequency ultrasound creates large cavitation bubbles which upon collapse initiate powerful jet streams exerting strong shear forces in the liquid. The decreasing sludge disintegration efficiency observed at higher frequencies was attributed to smaller cavitation bubbles which do not allow the initiation of such strong shear forces. Short sonication times resulted in sludge floc deagglomeration without the destruction of bacteria cells. Longer sonication brought about the break-up of cell walls, the sludge solids were distintegrated and dissolved organic compounds were released. The anaerobic digestion of waste activated sludge following ultrasonic pretreatment causing microbial cell lysis was significantly improved. There was an increase in the volatile solids degradation as well as an increase in the biogas production. The increase in digestion efficiency was proportional to the degree of sludge disintegration. To a lesser degree the deagglomeration of sludge flocs also augmented the anaerobic volatile solids degradation.

摘要

为提高厌氧污泥的稳定性,研究了采用超声破碎法对剩余活性污泥进行预处理。超声频率在41至3217kHz范围内变化。考察了不同超声强度和处理时间的影响。在低频下污泥破碎最为显著。低频超声产生大的空化气泡,气泡破裂时会引发强大的射流,在液体中施加强大的剪切力。在较高频率下观察到的污泥破碎效率降低归因于较小的空化气泡,这些气泡无法引发如此强大的剪切力。短时间超声处理导致污泥絮体解聚,但不会破坏细菌细胞。较长时间的超声处理会导致细胞壁破裂,污泥固体分解并释放出溶解的有机化合物。超声预处理使微生物细胞裂解后,剩余活性污泥的厌氧消化得到显著改善。挥发性固体降解增加,沼气产量也增加。消化效率的提高与污泥破碎程度成正比。在较小程度上,污泥絮体的解聚也增强了厌氧挥发性固体的降解。

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