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首页> 外文期刊>Separation and Purification Technology >Fouling in a novel airlift oxidation ditch membrane bioreactor (AOXMBR) at different high organic loading rate
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Fouling in a novel airlift oxidation ditch membrane bioreactor (AOXMBR) at different high organic loading rate

机译:新型空运氧化沟膜生物反应器(AOXMBR)在高有机负荷下的结垢情况

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摘要

In this study membrane fouling was studied in a novel airlift oxidation ditch membrane bioreactor (AOXMBR) working under various high organic loading rates (OLRs). The results confirmed the high performance of AOXMBR in terms of Chemical Oxygen Demand (COD) removal, even at very high OLRs. The role of the membrane barrier appeared to be significant when the COD in the supernatant was high under such conditions. In addition, the study confirmed the performance of the AOXMBR was better in comparison with the conventional activated sludge as such colloid matters cannot be retained via a simple secondary settling step. Also, on-line viability measurement of the activated sludge illustrated that the fouling increased with a decrease in the viability of the activated sludge. The results showed that the qualitative change of the activated sludge affected the fouling phenomenon. The membrane fouling dynamics analysis pointed out the relationship between cause of the membrane fouling and MBR operating conditions. Adsorption in pores appeared to be the dominant cause when any biofilm or deposit was present on the membrane surface. On the other hand at high OLR in the absence of any deficiency (oxygen deficiency, large pH variations etc.) for the microbial population the biofilm played the dominant role consequent, whereas with drastic decreases of OLRs -due to significant cell lysis - external and reversible deposits appeared as the dominant cause of membrane fouling.
机译:在这项研究中,在一种新型的气举式氧化沟膜生物反应器(AOXMBR)中研究了膜污染情况,该反应器在各种高有机负荷率(OLR)下工作。该结果证实了AOXMBR在化学需氧量(COD)去除方面的高性能,即使在非常高的OLR下也是如此。当在这种条件下上清液中的COD较高时,膜屏障的作用似乎很重要。此外,研究证实,与传统的活性污泥相比,AOXMBR的性能更好,因为此类胶体物质无法通过简单的二次沉降步骤保留。另外,活性污泥的在线生存能力测量表明,污垢随着活性污泥的生存能力的降低而增加。结果表明,活性污泥的质变影响了结垢现象。膜污染动力学分析指出了膜污染原因与MBR运行条件之间的关系。当任何生物膜或沉积物存在于膜表面时,孔中的吸附似乎是主要原因。另一方面,在高OLR的情况下,微生物种群没有任何缺乏(氧气缺乏,大的pH值变化等),生物膜起了主导作用,而由于显着的细胞裂解-外部和外部的OLR急剧下降。可逆沉积物似乎是造成膜污染的主要原因。

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