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Volume 39 Issue 7
Jan.  2022
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Article Contents
CHEN Li, LI Jia-bin, FU Wan-yi, ZHANG Xi-hui. EFFECT OF CERAMIC MEMBRANE COMBINED PROCESS IN TREATMENT OF SLUDGE WATER FROM DRINKING WATER TREATMENT PLANT[J]. ENVIRONMENTAL ENGINEERING , 2021, 39(7): 80-87,12. doi: 10.13205/j.hjgc.202107009
Citation: CHEN Li, LI Jia-bin, FU Wan-yi, ZHANG Xi-hui. EFFECT OF CERAMIC MEMBRANE COMBINED PROCESS IN TREATMENT OF SLUDGE WATER FROM DRINKING WATER TREATMENT PLANT[J]. ENVIRONMENTAL ENGINEERING , 2021, 39(7): 80-87,12. doi: 10.13205/j.hjgc.202107009

EFFECT OF CERAMIC MEMBRANE COMBINED PROCESS IN TREATMENT OF SLUDGE WATER FROM DRINKING WATER TREATMENT PLANT

doi: 10.13205/j.hjgc.202107009
  • Received Date: 2021-01-19
    Available Online: 2022-01-18
  • The combined processes based on ceramic membrane were studied including coagulation, ozonation, ceramic membrane ultrafiltration and activated carbon filtration, for sludge water reuse in a drinking water treatment plant(WTP) in South China. A pilot system with a capacity of 10 m3/d was set up. Under membrane flux of 100 L/(m2·h) and transmembrane pressure TMP of 30 kPa, the removal efficiencies of the pilot-scale test for turbidity, color, CODMn, ammonia, geosmin(GSM), dimethyl trisulfide(DMTS), 2-methylisocamphenol(2-MIB), pharmaceuticals and personal care products(PPCPs) and endocrine disruptors(EDCs) were evaluated. The results showed that the quality of the treated sludge water was able to totally meet the requirement of China National Standards for Drinking Water Quality(GB 5749-2006). The average removal efficiencies of turbidity, color, CODMn, and ammonia were 99%, 100%, 75.9%, and 72.3%, respectively, and the average removal efficiencies of PPCPs, EDCs, DMTS and 2-MIB were 95.4%, 78.3%, 90.3% and 100%, respectively. The effluent quality of the pilot process was much better than that of the existing sludge water recovery processes in the WTP. Moreover, in situ ozonation in membrane tank could effectively alleviate the membrane fouling. The findings proved that the combined processes of ozonation/ceramic membrane filtration and activated carbon filtration was technically stable and feasible for the reuse of sludge water of water treatment plant.
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