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纳滤组合工艺处理高硬度微污染水的效果。

Effect of a nanofiltration combined process on the treatment of high-hardness and micropolluted water.

机构信息

College of Environmental and Municipal Engineering, Shandong Jianzhu University, 250101, Jinan, People's Republic of China.

College of Environmental and Municipal Engineering, Shandong Jianzhu University, 250101, Jinan, People's Republic of China.

出版信息

Environ Res. 2020 Mar;182:109063. doi: 10.1016/j.envres.2019.109063. Epub 2019 Dec 25.

Abstract

The quality of raw water and the current high level of pollution presents a phenomenon of high hardness and micropollution. An experimental study was conducted of the nanofiltration (NF) pilot-scale process combined with biological contact oxidation precipitation and ultrafiltration (UF) as the pretreatment process to treat this water. The study investigated the removal efficiency and membrane fouling of the NF process under the continuous and stable operating conditions of the combination process and studied the influence of high-hardness water on the membrane pollution of the combination process. The results showed that the combined process had a positive removal effect on conventional pollutants and characteristic pollutants, and the removal rates of conventional pollutants, such as turbidity, UV and COD, were 95%, 90% and 85%, respectively. The removal efficiency of total hardness, total alkalinity and soluble total solids reached 98%, 86% and 91%, respectively, and that of total desalination was above 95%. The removal rates of fluorescent organic substances, such as tryptophan, tyrosine, soluble microbial products (SMPs), fulvic acid and humus-like substances, as well as the precursors of disinfection byproducts reached over 88% and 50%, respectively. The pollutant removal efficiency of the combined process was mainly concentrated in the NF unit. The pretreatment process had certain removal effects on turbidity and macromolecular organic substances in the raw water, which provided a perfect operating environment for the NF process. Under long-term operation, the main elements of scaling on the surface of the NF membrane included C, O, Na, Mg, Al, Si, S, Cl, Ca, Ti and Fe, which were mainly concentrated at the outlet of the membrane and mainly came from monomers or compounds composed of inorganic salts in the raw water and some organic compounds. High-hardness water accelerated the change in membrane process parameters, and the surface of the membrane had abundant inorganic scaling. The inorganic scale on the surface of the NF membrane increased noticeably when filtering water with high hardness. Regular cleaning of the UF and NF membranes could effectively restore the parameters of the process and prolong the service life of the membrane process.

摘要

原水水质和当前高污染水平呈现出高硬度和微污染的现象。本研究采用纳滤(NF)中试规模工艺与生物接触氧化沉淀和超滤(UF)联合预处理工艺,对处理该类水源进行了实验研究。考察了组合工艺连续稳定运行条件下 NF 过程的去除效率和膜污染情况,并探讨了高硬度水对组合工艺膜污染的影响。结果表明,组合工艺对常规污染物和特征污染物均具有良好的去除效果,常规污染物如浊度、UV254 和 COD 的去除率分别达到 95%、90%和 85%,总硬度、总碱度和总溶解性固体的去除率分别达到 98%、86%和 91%,总脱盐率高于 95%,荧光类有机物如色氨酸、酪氨酸、溶解性微生物产物(SMP)、腐殖酸和类胡敏酸以及消毒副产物前体物的去除率均超过 88%和 50%。组合工艺的污染物去除效率主要集中在 NF 单元。预处理工艺对原水中的浊度和高分子有机物具有一定的去除效果,为 NF 工艺提供了良好的运行环境。在长期运行过程中,NF 膜表面结垢的主要元素包括 C、O、Na、Mg、Al、Si、S、Cl、Ca、Ti 和 Fe,主要集中在膜的出口端,主要来源于原水中无机盐的单体或化合物以及部分有机化合物。高硬度水加速了膜过程参数的变化,膜表面无机物结垢较为严重。在过滤高硬度水时,NF 膜表面的无机结垢明显增加。定期清洗 UF 和 NF 膜可以有效恢复工艺参数,延长膜工艺的使用寿命。

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