首页> 外文期刊>Asia-Pacific Journal of Science and Technology >Influence of solute-membrane-particle interaction on permeate quality during cross flow ultrafiltration of whey suspensions using tubular ceramic membranes
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Influence of solute-membrane-particle interaction on permeate quality during cross flow ultrafiltration of whey suspensions using tubular ceramic membranes

机译:管状陶瓷膜在乳清悬浮液错流超滤过程中溶质-膜-颗粒相互作用对渗透质量的影响

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摘要

The tangential flow ultrafiltration of whey suspensions using tubular composite membranes and the effects of pH, coagulant of aluminium sulphate, Al2 (SO4 ) 3 , and surfactants of sodium dodecyl sulphate (SDS) and cetrytrimethyl ammonium bromide (CTAB) on permeate quality, are investigated. The permeate quality was assessed in terms of turbidity and the total organic carbon (TOC). The membranes and particulates were characterised using an electrokinetic property named the ζ-potential. The results indicate that the ζ-potentials of whey suspensions and membranes depend on the pH being positive at lower pH 3.5 and more negative at higher pH. In most cases the permeate turbidity and the TOC were reduced at least 97% and by about 22.1-28.1 %, respectively. Permeate fluxes varied between 13.2 to 21.5 (Χ 10-6) m3 m-2 s -1. The results were found to depend on the combination of pH, Al2 (SO4 ) 3 and surfactant concentrations. The best permeate flux was found at pH 6.2 when both particles and membrane had significant, negative ζ-potentials. In contrast the best reduction in TOC was observed when the ζ-potential of both membranes and particles were positive, but very close to zero. It is clear that the electrolyte conditions and electrokinetics play an important role in this ultrafiltration.
机译:研究了管状复合膜对乳清悬浮液的切向流超滤以及pH,硫酸铝,Al2(SO4)3的凝结剂,十二烷基硫酸钠(SDS)和铈三甲基溴化铵(CTAB)的表面活性剂对渗透物质量的影响。 。根据浊度和总有机碳(TOC)评估渗透质量。膜和颗粒的电动特性称为ζ电位。结果表明,乳清悬浮液和膜的ζ电位取决于pH在3.5较低时为正,而在较高pH时则更负。在大多数情况下,渗透物浊度和TOC分别降低了至少97%和约22.1-28.1%。渗透通量在13.2至21.5(Χ10-6)m3 m-2 s -1之间变化。发现结果取决于pH,Al 2(SO 4)3和表面活性剂浓度的组合。当颗粒和膜都具有显着的负ζ电位时,在pH 6.2时发现了最佳的渗透通量。相反,当膜和颗粒的ζ电位均为正值但非常接近零时,则观察到TOC的最佳降低。显然,电解质条件和电动动力学在该超滤中起重要作用。

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