Integrated multi-objective membrane systems for surface water treatment: pretreatment of reverse osmosis by conventional treatment and ultrafiltration

被引:31
|
作者
Kruithof, JC
Schippers, JC
Kamp, PC
Folmer, HC
Hofman, JAMH
机构
[1] Kiwa NV Res & Consultancy, NL-3430 BB Nieuwegein, Netherlands
[2] NV PWN Water Supply Co N Holland, NL-2060 BA Bloemendaal, Netherlands
[3] Amsterdam Water Supply, NL-1005 AD Amsterdam, Netherlands
关键词
integrated multi-objective membrane systems; pretreatment; reverse osmosis; ultrafiltration;
D O I
10.1016/S0011-9164(98)00065-4
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Within the scope of this project funded by AWWARF and USEPA three very promising IMS's were identified for surface water treatment. This paper will cover some highlights of the research carried out by the Water Supply Company of North Holland and Kiwa on the combination ultrafiltration/ultra low pressure reverse osmosis. Productivity of the ultrafiltration proved to be stable for the first 6000 h. Then, at the end of summer, the backwash regime was not able to prevent accumulation of biofouling. This biofouling coincides with an increase in bacterial counts in the ultrafiltrate. Also the ultra low pressure reverse osmosis unit showed no significant fouling up to 6000 hours. Then a rapid decrease of the second stage MTC started caused by BaSO4 precipitation, coinciding with an increase in feed-concentrate pressure drop caused by a severe biofouling. Ultrafiltration reduced the indicator organisms E. coli and spores of sulphite reducing Clostridia to under the detection limit. To determine the elimination capacity the feed of UF and ULPRO were spiked with MS-2 phages. Generally UF showed a complete (>5 log) removal. Once only a 2.7 log removal was found caused by defects in UF-membranes. ULPRO showed a high (4.7-4.9 log) although no complete removal. The results show that integrity measurement and monitoring of both membrane steps are essential. UF-integrity is measured by a pressure hold test and monitored by particle counting. integrity of ULPRO is measured by vacuum testing and monitored by in situ conductivity measurement and particle counting. ULPRO gives a very high precursor removal. Potential measurements (24 h, 20 degrees C, 1-2 mg/l Cl-2-residual) showed >95% removal of THMFP and HAAFP. IMS with UF and ULPRO are exceptional tools for control of microbials and DBP-precursors. Crucial for application may be control of biofouling in the system.
引用
收藏
页码:37 / 48
页数:12
相关论文
共 50 条
  • [31] Rejection of pharmaceuticals in nanofiltration and reverse osmosis membrane drinking water treatment
    Radjenovic, J.
    Petrovic, M.
    Ventura, F.
    Barcelo, D.
    WATER RESEARCH, 2008, 42 (14) : 3601 - 3610
  • [33] Water treatment reverse osmosis membrane characterization by atomic force microscopy
    Terrazas Bandala, Luisa Piroshka
    Cruz Ochoa, Noel Isai
    Solis Canto, Oscar
    Manjarrez Nevarez, Laura Alicia
    Ballinas Casarrubias, Maria de Lourdes
    REVISTA INTERNACIONAL DE CONTAMINACION AMBIENTAL, 2019, 35 : 9 - 18
  • [34] Multi-objective optimization and parametric study of a hybrid waste gasification system integrated with reverse osmosis desalination
    Rafieian P.
    Ashjaee M.
    Houshfar E.
    Chemosphere, 2023, 339
  • [35] Coal seam gas produced water treatment by ultrafiltration, reverse osmosis and multi-effect distillation: A pilot study
    Nghiem, Long D.
    Elters, Christian
    Simon, Alexander
    Tatsuya, Taguchi
    Price, William
    SEPARATION AND PURIFICATION TECHNOLOGY, 2015, 146 : 94 - 100
  • [36] Multi-objective design of reverse osmosis plants integrated with solar Rankine cycles and thermal energy storage
    Antipova, Ekaterina
    Boer, Dieter
    Cabeza, Luisa F.
    Guillen-Gosalbez, Gonzalo
    Jimenez, Laureano
    APPLIED ENERGY, 2013, 102 : 1137 - 1147
  • [37] Reuse of tannery wastewaters by combination of ultrafiltration and reverse osmosis after a conventional physical-chemical treatment
    Fababuj-Roger, M.
    Mendoza-Roca, J. A.
    Galiana-Aleixandre, M. V.
    Bes-Pia, A.
    Cuartas-Uribe, B.
    Iborra-Clar, A.
    DESALINATION, 2007, 204 (1-3) : 219 - 226
  • [38] Gray water recycle: Effect of pretreatment technologies on low pressure reverse osmosis treatment
    Boddu, Veera M.
    Paul, Tias
    Page, Martin A.
    Byl, Cristiaan
    Ward, Laura
    Ruan, Jaime
    JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2016, 4 (04) : 4435 - 4443
  • [39] Multi-objective integrated optimal control for a wastewater treatment process
    Han, Hong-Gui
    Chen, Cong
    Sun, Hao-Yuan
    Qiao, Jun-Fei
    CONTROL ENGINEERING PRACTICE, 2022, 128
  • [40] Design of reverse osmosis surface water treatment plant Chesapeake, Virginia
    Sanders, FA
    WATER SUPPLY PUZZLE: HOW DOES DESALTING FIT IN?, 1996, : 225 - 249