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Potential of fluorescence excitation emission matrix (FEEM) analysis for foulant characterisation in membrane bioreactors (MBRs)

机译:膜结构生物反应器(MBR)中污垢表征的荧光激发发射矩阵(FEEM)分析潜力

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The relative impact of soluble microbial products (SMP) on membrane bioreactor (MBR) fouling is widely recognized. However, no direct relationship between fouling propensity and the SMP concentration in the bioreactor has been clearly established yet. This is due to (1) the lack of standard methods for SMP characterisation, (2) the limitations of the methods used so far, and (3) the characterisation of the SMP in supernatant rather than those deposited on the membrane surface. The aim of this paper is therefore to identify the feasibility of a novel technology, the fluorescence excitation-emission matrix (FEEM) spectrophotometry to characterise the supernatants and the foulant fractions. Foulant fractions are obtained by rinsing, backwashing (BW) and chemical cleaning (CC) the membrane modules, from two MBRs operated under different solid retention times (SRTs). FEEM was able to provide qualitative and quantitative information about the compounds present in MBR. In this study, FEEM results demonstrated that tryptophan-like proteins dominated in most samples rather than humic/fulvic-like substances. As expected, FEEM of the permeate collected from lab-scale ultrafiltration (UF) demonstrated that, these larger molecular weight proteins rather than humics were retained by membranes. These proteins were also in higher ratio in the chemical cleaning solutions of both MBRs, revealing preferential attachment to the membrane surface. Thus, proteins and humic compounds present in supernatants and their preferential deposition on or into membrane surface could be efficiently characterised in a simple, robust, non-destructive method like the FEEM analysis.
机译:可溶性微生物产物(SMP)对膜生物反应器(MBR)结垢的相对影响已得到广泛认可。然而,尚未明确建立结垢倾向与生物反应器中SMP浓度之间的直接关系。这是由于(1)缺乏用于SMP表征的标准方法,(2)迄今为止所用方法的局限性,以及(3)表征了上清液中而非沉积在膜表面的SMP的SMP。因此,本文的目的是确定一种新技术的可行性,即荧光激发-发射矩阵(FEEM)分光光度法来表征上清液和污垢组分。通过冲洗,反洗(BW)和化学清洗(CC)膜组件,从两个在不同固体保留时间(SRT)下运行的MBR中获得污垢级分。 FEEM能够提供有关MBR中存在的化合物的定性和定量信息。在这项研究中,FEEM结果表明,色氨酸样蛋白在大多数样品中占主导地位,而不是腐殖质/富里琴样物质。如预期的那样,从实验室规模的超滤(UF)收集的渗透液的FEEM表明,这些较大分子量的蛋白质而不是腐殖质被膜保留了下来。这些蛋白质在两种MBR的化学清洗溶液中的比例也更高,显示出优先附着在膜表面上。因此,上清液中存在的蛋白质和腐殖质化合物以及它们优先沉积在膜表面或膜表面的蛋白质和腐殖质可以通过简单,稳健,无损的方法(如FEEM分析)有效地表征。

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