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Changes in characteristics of soluble microbial products in membrane bioreactors associated with different solid retention times: Relation to membrane fouling

机译:膜生物反应器中可溶性微生物产物特性的变化与不同的固体保留时间相关:与膜结垢的关系

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A membrane bioreactor (MBR) is a promising wastewater treatment technology, but there is a need for efficient control of membrane fouling, which increases operational and maintenance costs. Soluble microbial products (SMP) have been reported to act as major foulants in the operation of MBRs used for wastewater treatment. In this study, SMP in MBRs operated with different sludge retention times (SRTs) were investigated by means of various analytical techniques and their relations to the evolution of membrane fouling were considered. Bench-scale filtration experiments were carried out in a laboratory with synthetic wastewater to eliminate fluctuations that would occur with the use of real wastewater and that would lead to fluctuations in compositions of SMP. Three identical submerged MBRs were operated for about 50 days under the same conditions except for SRT (17, 51 and 102 days). Accumulation of SMP in the MBRs estimated by conventional analytical methods (i.e., the phenol-sulfuric acid method and the Lowry method) was significant in the cases of short SRTs. However, the degrees of membrane fouling in the MBRs were not directly related to the concentrations of SMP in the reactors estimated by the conventional analytical methods. Non-conventional analytical methods such as excitation-emission matrix (EEM) fluorescence spectroscopy revealed that characteristics of SMP in the three reactors considerably differed depending on SRT. Foulants were extracted from the fouled membranes at the end of the operation and were compared with SMP in each MBR. It was clearly shown that characteristics of the foulants were different depending on SRT, and similarities between SMP and the extracted foulants were recognized in each MBR on the basis of results of EEM measurements. However, such similarities were not found on the basis of results obtained by using the conventional methods for analysis of SMP. The results of this study suggest that the use of conventional methods for analysis of SMP is not appropriate for investigation of membrane fouling in MBRs.
机译:膜生物反应器(MBR)是一种很有前途的废水处理技术,但是需要有效控制膜结垢,这会增加运行和维护成本。据报道,可溶性微生物产品(SMP)在用于废水处理的MBR操作中起主要污垢的作用。在这项研究中,通过各种分析技术研究了在不同污泥保留时间(SRT)下运行的MBR中的SMP,并考虑了它们与膜污染的关系。在实验室中对合成废水进行了基准规模的过滤实验,以消除使用实际废水时可能发生的波动,该波动会导致SMP的成分波动。除SRT(17、51和102天)外,三个相同的浸没式MBR在相同条件下运行约50天。在传统SRT较短的情况下,通过常规分析方法(即苯酚-硫酸法和Lowry方法)估算出的MBR中SMP的积累非常重要。然而,通过常规分析方法估算,MBR中的膜污染程度与反应器中SMP的浓度没有直接关系。非常规分析方法(例如激发-发射矩阵(EEM)荧光光谱法)显示,三个反应堆中SMP的特性取决于SRT显着不同。在操作结束时从结垢的膜中提取污垢,并与每个MBR中的SMP进行比较。清楚地表明,污垢的特性随SRT的不同而不同,并且根据EEM测量结果,在每个MBR中识别出SMP和提取的污垢之间的相似性。但是,基于使用常规方法分析SMP所获得的结果,未发现此类相似之处。这项研究的结果表明,使用常规方法对SMP进行分析不适用于研究MBR中的膜污染。

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