首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Cleaning ceramic membranes used in treating desizing wastewater with a complex-surfactant SDBS-assisted method
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Cleaning ceramic membranes used in treating desizing wastewater with a complex-surfactant SDBS-assisted method

机译:复杂表面活性剂SDBS辅助清洗用于处理退浆废水的陶瓷膜

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Ceramic ultrafiltration membranes were used to treat desizing wastewater for recycling. Both the fouling mechanisms and the regeneration of fouled membranes obtained from an industrial park were studied. The fouling was mainly caused by polymethyl acrylate (PMA) deposition on membrane surface and blockage in membrane pores. A cleaning strategy and solution composed of NaOH and sodium dodecyl benzene sulfonate (SDBS) were developed based on analysis of fouling resistance and interaction between cleaning agents and foulants, respectively. The hydrolysis of NaOH and solubilization of SDBS micelles, which decreased the adhesion between foulants and membrane surface, played an important role during the cleaning. The flux of the membrane could be well recovered with the cleaning solution. The cleaning efficiency was sensitive to the concentration of SDBS (C-SDBS) and temperature (T), and was also affected by transmembrane pressure (TMP), crossflow velocity (CFV) and operation time of the permeate line (OTPL). The optimized cleaning condition was C-SDBS = 0.30 wt.%, TMP = 0.10 MPa, CFV = 3 m/s, T = 60 degrees C, and OTPL = 80 min. The dynamic and chemical interaction between chemical agents, foulants and the membrane was also studied in this research. The methods were successfully applied to the industry. (C) 2015 Published by Elsevier B.V.
机译:陶瓷超滤膜用于处理退浆废水以进行回收。研究了从工业园区获得的污垢机理和污垢膜的再生。结垢主要是由聚丙烯酸酯(PMA)在膜表面的沉积和膜孔的堵塞引起的。在分析耐垢性和清洁剂与污垢之间的相互作用的基础上,提出了一种由NaOH和十二烷基苯磺酸钠(SDBS)组成的清洁策略和解决方案。 NaOH的水解和SDBS胶束的增溶作用(在污垢与膜表面之间的附着力下降)在清洁过程中起着重要作用。膜的通量可以用清洁溶液很好地回收。清洁效率对SDBS(C-SDBS)的浓度和温度(T)敏感,并且还受到跨膜压力(TMP),错流速度(CFV)和渗透管线运行时间(OTPL)的影响。优化的清洁条件为C-SDBS = 0.30 wt。%,TMP = 0.10 MPa,CFV = 3 m / s,T = 60摄氏度和OTPL = 80分钟。在这项研究中还研究了化学试剂,污垢和膜之间的动态和化学相互作用。该方法已成功应用于工业。 (C)2015由Elsevier B.V.发布

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