Biofilm increases permeate quality by organic carbon degradation in low pressure ultrafiltration

被引:66
作者
Chomiak, A. [1 ]
Traber, J. [1 ]
Morgenroth, E. [1 ,2 ]
Derlon, N. [1 ,2 ]
机构
[1] Swiss Fed Inst Aquat Sci & Technol, Eawag, Uberlandstr 133, CH-8600 Dubendorf, Switzerland
[2] Swiss Fed Inst Technol, Inst Environm Engn, CH-8093 Zurich, Switzerland
关键词
Biofilm; Foulant; Gravity Driven Membrane (low pressure) ultrafiltration; Permeate quality; Substrate degradation; MEMBRANE BIOREACTOR; WATER-TREATMENT; PRETREATMENT; MECHANISMS; FLUX; FILTRATION; OPERATION; REMOVAL; IMPACT; MATTER;
D O I
10.1016/j.watres.2015.08.009
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
We investigated the influence of biofouling of ultrafiltration membranes on the removal of organic model foulants and ultimately on the quality of permeate. Gravity Driven Membrane ultrafiltration (GDM) membrane systems were operated with modified river water during five weeks without control of the biofilm formation. Three GDM systems were studied: two systems with biofilms exposed to (A) variable or (B) constant load of organic foulants, and (C) one system operated without biofilm and exposed to constant foulant loading. Biodegradable dextran or non-biodegradable polystyrene sulfonate model foulants were tested. Substrate biodegradability was confirmed by Size Exclusion Chromatography (SEC) and by degradation batch tests (D). The GDM systems (A) and (B) were fed with pre-filtered river water supplemented with dextran (Dex) of 1, 150 or 2000 kDa, or polystyrene sulfonate (PSS) of 1 or 80 kDa at concentrations of 2-3.5 mgC L-1. In exp. (C) the feed water consisted of deionized water with 25 mgC L-1 of either PSS 1, 80 kDa or Dex 2000 kDa. The biofilm formation on UF membrane surfaces controlled the foulant permeation and thus the permeate quality. Biofilms exposed to continuous foulant loading (exp. B) degraded low molecular weight (LMW) biodegradable foulants (1 kDa Dex), which improved the permeate quality. For high molecular weight (HMW) substrates (150, 2000 kDa Dex), the improvement of the permeate quality was observed after 7 days of biofilm formation, and resulted from the foulant hydrolysis followed by degradation. For non-biodegradable foulants, an improvement of 20% of the retention was observed for the polystyrene (1, 80 kDa PSS) due to the presence of biofilms on membrane surfaces. For variable foulant loading (exp. A) the biofilms hydrolysed the large biodegradable foulants but did not degraded them fully, which resulted a deterioration of the permeate quality (except for the LMW dextran (1 kDa) that was fully degraded). Overall, the "biofilm + membrane" composite retained a larger amount of biodegradable foulant than the membrane alone, due to the activity of the biofilm. However, this resulted in an increased biofilm accumulation and reduced flux. In presence of the biofilm, the highest fluxes were observed for control (no foulant) and for small non-biodegradable foulants (PSS 1 kDa). Low fluxes were observed for the accumulating on membrane surface or degradable foulants (exp. B). But, the lowest fluxes were observed in absence of the biofilm (exp. C) due to physical accumulation of the foulants (PSS 80 kDa and Dextran 2000 kDa). Overall our study demonstrates that the presence of biofilms on membrane surfaces has some benefits: (i) biofilm helps to increase the permeate quality and (ii) biofilms protect the membrane from further fouling. Permeate flux stabilizes in the case of biofilm-membrane composite, while it continuously declines in the case of the membrane only. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:512 / 520
页数:9
相关论文
共 22 条
[1]  
[Anonymous], 2005, Standard methods for the examination of water and waste- water
[2]   Operation of gravity-driven ultrafiltration prototype for decentralised water supply [J].
Boulestreau, Morgane ;
Hoa, Eric ;
Peter-Verbanets, Maryna ;
Pronk, Worrtes ;
Rajagopaul, Rachi ;
Lesjean, Baris .
DESALINATION AND WATER TREATMENT, 2012, 42 (1-3) :125-130
[3]   DYNAMIC ULTRAFILTRATION MODEL FOR CHARGED COLLOIDAL DISPERSIONS - A WIGNER-SEITZ CELL APPROACH [J].
BOWEN, WR ;
JENNER, F .
CHEMICAL ENGINEERING SCIENCE, 1995, 50 (11) :1707-1736
[4]   Presence of biofilms on ultrafiltration membrane surfaces increases the quality of permeate produced during ultra-low pressure gravity-driven membrane filtration [J].
Derlon, Nicolas ;
Mimoso, Joao ;
Klein, Theresa ;
Koetzsch, Stefan ;
Morgenroth, Eberhard .
WATER RESEARCH, 2014, 60 :164-173
[5]   In-situ biofilm characterization in membrane systems using Optical Coherence Tomography: Formation, structure, detachment and impact of flux change [J].
Dreszer, C. ;
Wexler, A. D. ;
Drusova, S. ;
Overdijk, T. ;
Zwijnenburg, A. ;
Flemming, H. -C. ;
Kruithof, J. C. ;
Vrouwenvelder, J. S. .
WATER RESEARCH, 2014, 67 :243-254
[6]   Effect of interparticle electrostatic double layer interactions on permeate flux decline in crossflow membrane filtration of colloidal suspensions: An experimental investigation [J].
Faibish, RS ;
Elimelech, M ;
Cohen, Y .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1998, 204 (01) :77-86
[7]   Biofouling - the Achilles heel of membrane processes [J].
Flemming, HC ;
Schaule, G ;
Griebe, T ;
Schmitt, J ;
Tamachkiarowa, A .
DESALINATION, 1997, 113 (2-3) :215-225
[8]   Characterization of natural organic matter as major constituents in aquatic systems [J].
Frimmel, FH .
JOURNAL OF CONTAMINANT HYDROLOGY, 1998, 35 (1-3) :201-216
[9]   Assessing the Performance of Biological Filtration As Pretreatment to Low Pressure Membranes for Drinking Water [J].
Halle, Cynthia ;
Huck, Peter M. ;
Peldszus, Sigrid ;
Haberkamp, Jens ;
Jekel, Martin .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2009, 43 (10) :3878-3884
[10]   Assimilable organic carbon in molecular weight fractions of natural organic matter [J].
Hem, LJ ;
Efraimsen, H .
WATER RESEARCH, 2001, 35 (04) :1106-1110