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Membrane Bioreactor Technology: The Effect of Membrane Filtration on Biogas Potential of the Excess Sludge

机译:膜生物反应器技术:膜过滤对多余污泥的沼气潜力的影响

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摘要

Although the membrane bioreactor technology is gaining increasing interest because of high efficiency of wastewater treatment and reuse, data on the anaerobic transformations of retentate are scarce and divergent. The effects of transmembrane pressure (TMP) in microfiltration (MF) and ultrafiltration (UF) on the pollutant rejection, susceptibility of ceramic membrane to fouling, hydraulic parameters of membrane module, and biogas productivity of retentate were determined. Irrespective of the membrane cut-off and TMP (0.2–0.4 MPa), 97.4 ± 0.7% of COD (chemical oxygen demand), 89.0 ± 4.1% of total nitrogen, and 61.4 ± 0.5% of total phosphorus were removed from municipal wastewater and the permeates can be reused for irrigation. Despite smaller pore diameter, UF membrane was more hydraulically efficient. MF membrane had 1.4–4.6 times higher filtration resistances than UF membrane. In MF and UF, an increase in TMP resulted in an increase in permeate flux. Despite complete retention of suspended solids, strong shearing forces in the membrane installation changed the kinetics of biogas production from retentate in comparison to the kinetics obtained when excess sludge from a secondary clarifier was anaerobically processed. MF retentates had 1.15 to 1.28 times lower cumulative biogas production than the excess sludge. Processing of MF and UF retentates resulted in about 60% elongation of period in which 90% of the cumulative biogas production was achieved.
机译:虽然膜生物反应器技术由于废水处理和再利用的高效率而增加,但滞留物的厌氧转化数据是稀缺和发散的。确定跨膜压力(TMP)对微滤(MF)和超滤(UF)对污染物排斥,陶瓷膜的敏感性,膜组件的液压参数以及腐烂物的沼气参数的影响。无论膜切断和TMP(0.2-0.4MPa),97.4±0.7%的COD(化学需氧量),89.0±4.1%的总氮,61.4±0.5%的总磷除去城市废水和渗透物可以重复使用灌溉。尽管孔径较小,但UF膜更加液压有效。 MF膜比UF膜的过滤电阻较高1.4-4.6倍。在MF和UF中,TMP的增加导致渗透助焊剂增加。尽管悬浮固体完全保留,但膜装置中的强剪切力改变了与来自二次澄清剂的过量污泥获得的动力学相比,沼气生产的动力学改变了腐败物质的腐蚀性。 MF滞留率比过量的污泥累积为1.15至1.28倍。 MF和UF滞留物的处理导致了约60%的时间伸长率,其中达到了90%的累积沼气产量。

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