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首页> 外文期刊>Journal of Membrane Science >Fouling and regeneration of ceramic membranes used in recovering titanium silicalite-1 catalysts
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Fouling and regeneration of ceramic membranes used in recovering titanium silicalite-1 catalysts

机译:回收钛silicalite-1催化剂使用的陶瓷膜的结垢和再生

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Ceramic ultrafiltration (UF) membranes were used to separate titanium silicalite-1 (TS-1) catalysts from slurry in catalytic ammoximation of cyclohexanone to the oxime. Both the fouling mechanisms and the regeneration of fouled membranes were studied. The fouling was mainly caused by TS-1 particles deposition, silica additive adsorption and iron precipitation. The interaction between the two solutes in the system, silica additive and TS-1 catalysts, played a significant role in the formation of dense cake layers at the membrane surface, leading to a greater flux decline during ultrafiltration of TS-1 particles. Estimation of hydrodynamic forces acting on a single particle shows crossflow velocity (CFV) has an important effect on the deposition of TS-1 particles. However, after particles have deposited, increasing CFV will not resuspend them due to the strong and dense cake layer formation. The cleaning of a fouled membrane can be achieved by sequential use of strongly basic and acidic solutions. In addition, a particle-cleaning method was applied. Micro-sized alumina particles were used for their scouring effect to remove the cake layer from the membrane surface effectively. The particle cleaning combined with acid cleaning was effective to fully restore membrane flux.
机译:在环己酮催化肟化为肟的过程中,使用陶瓷超滤(UF)膜从浆液中分离了钛硅沸石1(TS-1)催化剂。研究了结垢机理和结垢膜的再生。结垢主要是由TS-1颗粒沉积,二氧化硅添加剂吸附和铁沉淀引起的。系统中的两种溶质(二氧化硅添加剂和TS-1催化剂)之间的相互作用在膜表面致密滤饼层的形成中起着重要作用,导致TS-1颗粒超滤过程中通量下降更大。估算作用在单个颗粒上的流体动力表明,错流速度(CFV)对TS-1颗粒的沉积具有重要影响。但是,在颗粒沉积后,由于坚固而致密的滤饼层形成,增加的CFV不会将其重新悬浮。可以通过依次使用强碱性和强酸性溶液来清洁结垢的膜。另外,应用了颗粒清洁方法。使用微细的氧化铝颗粒具有精练效果,可以有效地从膜表面去除滤饼层。颗粒清洗与酸清洗相结合可以有效地完全恢复膜通量。

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