XIEYa-wei,XUZhen-feng,QIUJia-qi,et al.Productive Test on Nanofiltration Membrane to Remove Organic Matter from Water and Improve Water Production Rate[J].China Water & Wastewater,2023,39(7):29-34.
纳滤膜去除水中有机物及提高产水率的生产性试验
- Title:
- Productive Test on Nanofiltration Membrane to Remove Organic Matter from Water and Improve Water Production Rate
- Keywords:
- nanofiltration; organic matter; nanofiltration concentrated water; reverse osmosis; disinfection by-products
- 摘要:
- 为解决浙江省某水厂现有混凝沉淀—臭氧/活性炭工艺无法进一步去除水中有机物的问题,开展了处理规模为12 m3/h的纳滤系统(三段式纳滤膜单元)以及反渗透单元处理纳滤系统浓水的生产性试验,研究了4种型号纳滤膜(A、B、C、D)的产水水质以及反渗透提高系统产水率的效果。结果表明,纳滤单元在回收率为90%的条件下,对原水中CODMn、TOC和UV254的去除率均在78%以上,产水CODMn、TOC和UV254分别在0.45 mg/L、0.50 mg/L和0.004 cm-1以下;系统出水经消毒后未检出《生活饮用水卫生标准》(GB 5749—2022)规定的16种消毒副产物,对三卤甲烷生成势和卤乙酸生成势的去除率在89%以上。纳滤膜还能去除水中TDS和总硬度,改善口感。反渗透单元可将纳滤系统产水率提高至97.5%。纳滤系统及反渗透单元的总运行成本估算为1.28 元/m3,但浓水如何无害化处置是今后在纳滤工程中还需考虑的问题。
- Abstract:
- In order to solve the problem that the existing coagulation precipitation and ozonation/activated carbon process in a water treatment plant in Zhejiang Province could not further remove organic matter in the water, a productive experiment was carried out on nanofiltration system with the treatment scale of 12 m3/h (three-stage nanofiltration membrane unit) and reverse osmosis unit was used to treat the concentrated water of nanofiltration system. The treated water quality of four types of nanofiltration membranes (A, B, C and D) and the effect of improving the water yield of the system by reverse osmosis were studied. The results showed that the removal rates of CODMn, TOC and UV254 in raw water were above 78% at the recovery rate of 90%, and the CODMn, TOC and UV254 in produced water were below 0.45 mg/L, 0.50 mg/L and 0.004 cm-1, respectively. After disinfection, 16 kinds of disinfection by-products were not detected in the water according to the Standards for Drinking Water Quality (GB 5749-2022), and the removal rate of the trihalomethane formation potential and haloacetic acid formation potential was over 89%. Nanofiltration membrane could also remove TDS and total hardness from water to improve taste. The reverse osmosis unit could increase the water yield of nanofiltration system to 97.5%. The total operation cost of nanofiltration system and reverse osmosis unit was estimated to be 1.28 yuan/m3, but how to dispose concentrated water is still a problem to be considered in the future.
相似文献/References:
[1]岳丽芳,王春慧,韩一杰,等.钢铁企业浓盐水处理回用工程实例[J].中国给水排水,2020,36(22):156.
YUE Li-fang,WANG Chun-hui,HAN Yi-jie,et al.Brine Treatment and Reuse Project of an Iron and Steel Enterprise[J].China Water & Wastewater,2020,36(7):156.
[2]魏永,吴宏.纳滤处理太湖水的膜污染中试研究[J].中国给水排水,2021,37(7):66.
WEI Yong,WU Hong.A Pilot Study on Membrane Fouling in the Treatment of Taihu Lake Water by Nanofiltration[J].China Water & Wastewater,2021,37(7):66.
[3]刘坤乔,胥倩倩,汪步云,等.不同深度处理工艺净化太湖高藻原水的中试研究[J].中国给水排水,2021,37(9):21.
LIU Kun-qiao,XU Qian-qian,WANG Bu-yun,et al.Pilot-scale Test on Purification of Algae-laden Raw Water from Taihu Lake by Different Advanced Treatment Processes[J].China Water & Wastewater,2021,37(7):21.
[4]张彩云,张朋川,袁璐璐,等.超高标准除磷的纳滤再生水工艺设计及工程验证[J].中国给水排水,2021,37(10):116.
ZHANG Cai-yun,ZHANG Peng-chuan,YUAN Lu-lu,et al.Design and Engineering Verification of Nanofiltration Process for Super High Standard Phosphorous Removal in Wastewater Reclamation[J].China Water & Wastewater,2021,37(7):116.
[5]孙爱华,陈波,刘慎.IOC—A/O—UF/NF/RO组合工艺处理垃圾焚烧渗滤液[J].中国给水排水,2021,37(16):112.
SUN Ai-hua,CHEN Bo,LIU Shen.Treatment of Leachate from Waste Incineration Plant by a Combined Process of IOC, A/O, and UF/NF/RO[J].China Water & Wastewater,2021,37(7):112.
[6]李长海,张雅潇,普建国,等.生物法+膜法工艺处理垃圾焚烧电厂渗滤液[J].中国给水排水,2022,38(2):104.
LI Chang?hai,ZHANG Ya?xiao,PU Jian?guo,et al.Treatment of Leachate from Waste Incineration Power Plant by Biological and Membrane Process[J].China Water & Wastewater,2022,38(7):104.
[7]陶辉,厉彦辉,周伟青,等.针对低温期有机物去除率低的生物活性炭更换探究[J].中国给水排水,2022,38(9):33.
TAOHui,LIYan-hui,ZHOUWei-qing,et al.Research on the Replacement of Biological Activated Carbon for Low Organic Matter Removal Rate during Low Temperature Period[J].China Water & Wastewater,2022,38(7):33.
[8]王永强,李桂芳,宋武昌,等.UV/H2O2工艺对常规砂滤出水中有机物的去除特性[J].中国给水排水,2022,38(17):60.
WANGYong-qiang,LIGui-fang,SONGWu-chang,et al.Removal Characteristics of Organic Matter in Effluent from Conventional Sand Filtration by UV/H2O2 Process[J].China Water & Wastewater,2022,38(7):60.
[9]郝晓地,孙群,李季,等.排水管道甲烷产生影响因素及其估算方法[J].中国给水排水,2022,38(20):1.
HAOXiao-di,SUNQun,LIJi,et al.Affecting Factors and Estimating Methods of Methane Produced in Sewers[J].China Water & Wastewater,2022,38(7):1.
[10]刘志娟.炭吸附机械搅拌澄清池用于深度处理去除有机物[J].中国给水排水,2023,39(14):109.
LIU Zhi-juan.Application of Carbon Adsorption Accelerator in Wastewater Advanced Treatment for Organics Removal[J].China Water & Wastewater,2023,39(7):109.