Department of Civil Engineering, University of Hong Kong, Hong Kong, China.
Water Res. 2010 Oct;44(18):5499-509. doi: 10.1016/j.watres.2010.06.067. Epub 2010 Jul 8.
Soluble microbial products (SMP) in the wastewater treatment process not only cause fouling to the membrane, but also generate disinfection by-products (DBP) in the effluent, thus get increasing attention. In this study, SMP produced by activated sludge and isolates under different stressful conditions, i.e. starvation, salinity, heavy metals, low pH and high temperature, were characterized to investigate the effects of these conditions on the amount of SMP and their compositions. The analysis results using size exclusion chromatography (SEC), high pressure liquid chromatography (HPLC) and fluorescence excitation emission matrix (FEEM) showed that activated sludge and isolates suffered with the same stressful condition contained almost the same concentration and composition of SMP, indicating that the stressful condition instead of the microbial species played the crucial role in the production of SMP. Among of stressful conditions tested, high temperature had stimulated the production of polysaccharides and polycarboxylate-type humic acid with high hydrophilicity, which is in positive proportion to the foulants formation potential, thus should be avoided in membrane bioreactors. Low pH had promoted the generation of hydrophobic humic acid-like or protein-like organics, which had been proved as the main disinfection byproduct (DBP) precursor, thus should be avoided in the biological treatment. Starvation had less effect on SMP production as the seeding microbes had no substrates.
在废水处理过程中,可溶性微生物产物(SMP)不仅会导致膜污染,而且还会在污水中产生消毒副产物(DBP),因此越来越受到关注。在这项研究中,对活性污泥和在不同胁迫条件下(如饥饿、盐度、重金属、低 pH 值和高温)分离出的 SMP 进行了特征描述,以研究这些条件对 SMP 数量和组成的影响。使用尺寸排阻色谱(SEC)、高效液相色谱(HPLC)和荧光激发发射矩阵(FEEM)的分析结果表明,处于相同胁迫条件下的活性污泥和分离物中含有几乎相同浓度和组成的 SMP,这表明胁迫条件而不是微生物种类在 SMP 的产生中起着关键作用。在所测试的胁迫条件中,高温刺激了具有高亲水性的多糖和聚羧酸型腐殖酸的产生,这与污染物形成潜力呈正相关,因此应避免在膜生物反应器中使用。低 pH 值促进了疏水性腐殖酸样或蛋白质样有机物的生成,已被证明是主要的消毒副产物(DBP)前体,因此应避免在生物处理中使用。由于接种微生物没有基质,饥饿对 SMP 的产生影响较小。