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首页> 外文期刊>Journal of Membrane Science >Demulsification of water/sunflower oil emulsions by a tangential filtration process using chemically impregnated ceramic tubes
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Demulsification of water/sunflower oil emulsions by a tangential filtration process using chemically impregnated ceramic tubes

机译:使用化学浸渍的陶瓷管通过切向过滤工艺对水/葵花油乳液进行破乳

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A tangential filtration process was implemented in this study using porous ceramic tubes made of α-alumina produced by the slip-casting technique. These tubes were sintered at 1450 ℃ and characterized by mercury intrusion porosimetry, which revealed a mean pore size of 0.5 μm. The tubes were chemically impregnated with a zirconium citrate solution, after which they were calcined and heat treated at temperatures of up to 600 and 900 ℃ to eliminate volatile organic compounds and transform the zirconium citrate into zirconium oxide impregnated in the alumina in the form of nanoparticle agglomerates. The microporous pipes were tested on a microfiltration hydraulic system to analyze their performance in the demulsification of sunflower oil and water mixtures. The fluid-dynamic parameters of Reynolds number and transmembrane pressure were varied in the process. The volume of permeate was analyzed by measuring the Total Organic Carbon concentration (TOC), which indicated 99% of oil phase retention. The emulsified mixture was characterized by optical microscopy, while the morphology and composition of the impregnated microporous tubes were analyzed by scanning electron microscopy (SEM). Quantification of the TOC values for the tube impregnated once at 600 ℃ showed the best demulsification performance, with the concentration on permeate smaller than 10 mg/L. The impregnated tube sintered once at 900 ℃ presented low carbon concentration (smaller than 20 mg/L), has the advantage of presenting the greatest trans-membrane flux in relation to the other microporous tube.
机译:在这项研究中,采用了由滑铸技术生产的由α-氧化铝制成的多孔陶瓷管进行切向过滤工艺。这些管在1450℃烧结,并通过压汞法进行了表征,其平均孔径为0.5μm。将试管用柠檬酸锆溶液化学浸渍,然后将其煅烧并在高达600和900℃的温度下进行热处理,以除去挥发性有机化合物,并将柠檬酸锆转化为纳米颗粒形式浸渍在氧化铝中的氧化锆。结块。在微滤液压系统上测试了微孔管,以分析其在向日葵油和水混合物的反乳化中的性能。在此过程中,改变了雷诺数和跨膜压力的流体动力学参数。渗透液的体积通过测量总有机碳浓度(TOC)进行分析,这表明油相保留率为99%。通过光学显微镜对乳化的混合物进行表征,同时通过扫描电子显微镜(SEM)分析浸渍的微孔管的形态和组成。在600℃浸渍一次的管的TOC值的定量显示了最佳的破乳性能,渗透液浓度小于10 mg / L。在900℃烧结一次的浸渍管的碳浓度低(小于20mg / L),相对于其他微孔管而言,具有跨膜通量最大的优点。

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