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Adsorptive removal and oxidation of model organic pollutant BPA from water using a novel membrane

机译:使用新型膜对水中的模型有机污染物BPA进行吸附去除和氧化

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To find a new and cost-effective method to remove and mineralize trace organic pollutants, a series of composite functional membrane containing ACF powder(<240 mesh) and Ce 3+ -TiO2, a combination of adsorbent and photo-catalyst, was prepared by using a sol-gel and dip coating method on PET filter cloth. BPA (bisphenol A) at a level of 10mg/L was separated by adsorption onto the membrane in a series of batch experiments successfully and partly removed in dynamic filtration and adsorption test, in which removal of solid suspends such as Kaolinite may be combined. The measured adsorption of BPA corresponds to 37.0, 70.6 and 62.2 mg (BPA)/g (ACF) for membrane A,B and C, where the weight ratio of ACF to ACF+TiO2 was 29.9, 17.6 and 11.3% respectively in batch adsorption test (50ml solution) and 25.5 mg(BPA)/g(ACF) for membrane A after 2h adsorption in 200ml solution. After dynamic filtration, the total adsorption capacity was 81.0 mg (BPA)/g(ACF) for membrane A. It is noteworthy that the membrane adsorption can be regenerated by UV/Fenton. Order of BPA adsorption quantity is 1 st >2 nd > 3 rd time use for membrane C, due to loss of ACF resulted from the supersonic treatment before regeneration. Introducing TEOS in the preparation of sol gel solution and subsequent coating to form composite membrane, improved membrane adsorption stability after regeneration treatment by UV-Fenton.
机译:为了寻找一种新的经济有效的去除和矿化微量有机污染物的方法,制备了一系列由ACF粉体(<240目的)和Ce 3+ -TiO2(吸附剂和光催化剂结合而成)的复合功能膜。在PET滤布上使用溶胶-凝胶和浸涂方法。在一系列的分批实验中,成功地将BPA(双酚A)以10mg / L的浓度吸附到膜上,并在动态过滤和吸附测试中将其部分去除,其中可以结合去除固体悬浮液(例如高岭土)。膜A,B和C的BPA吸附量分别相当于37.0、70.6和62.2 mg(BPA)/ g(ACF),其中分批吸附中ACF与ACF + TiO2的重量比分别为29.9、17.6和11.3%测试(50ml溶液)和在200ml溶液中吸附2h后膜A的浓度为25.5 mg(BPA)/ g(ACF)。动态过滤后,膜A的总吸附容量为81.0 mg(BPA)/ g(ACF)。值得注意的是,膜吸附可以通过UV / Fenton再生。 BPA吸附量的顺序是膜C第一次使用> 2次> 3次,这是由于再生前超声处理导致的ACF损失。在溶胶凝胶溶液的制备过程中引入TEOS,随后进行涂覆以形成复合膜,从而提高了UV-Fenton再生处理后膜的吸附稳定性。

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