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Microfiltration of sodium nitrate and Direct Red 2 dye using asymmetric titanium dioxide membranes on porous ceramic tubes

机译:使用不对称二氧化钛膜在多孔陶瓷管上对硝酸钠和直接红2染料进行微滤

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Filtration studies using titanium dioxide membranes fused on porous ceramic tubes with pore diameters of 0.2 μm is reported for solutions containing sodium nitrate and solutions containing an anionic direct dye, Direct Red 2 (C.I. no. 23500). Solution pH was adjusted with dilute sodium hydroxide and nitric acid to maintain maximum solubility of all ions present in the system. Electrolyte rejections and color rejections were measured at pH values of four to ten. Tubes were supplied by Rhone-Poulenc, Cranbury, NJ. Results show that the charge or ionic nature of the membrane surface was responsible for the ion rejections and decreased as the salt concentration was raised from 50 to 5000 ppm. Salt rejections ranged from 12-64% and dye rejections ranged from 82-99% over the salt concentrations and temperatures of the experiments that ranged from 30 to 60℃. The results are interpreted in terms of the current and past research involving microfiltration.
机译:对于含硝酸钠的溶液和含阴离子直接染料直接红2(C.I. no。23500)的溶液,已报道了使用融合在孔径为0.2μm的多孔陶瓷管上的二氧化钛膜进行过滤的研究。用稀氢氧化钠和硝酸调节溶液的pH,以保持系统中所有离子的最大溶解度。在4到10的pH值下测量电解质排斥和颜色排斥。管由新泽西州克兰伯里的Rhone-Poulenc提供。结果表明,膜表面的电荷或离子性质是离子排斥的原因,并且随着盐浓度从50 ppm增加到5000 ppm而降低。在实验的盐浓度和温度范围(30至60℃)范围内,脱盐率在12%至64%之间,而脱色率在82%至99%之间。根据涉及微滤的当前和过去的研究来解释结果。

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