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The application of forward osmosis to dairy processing

机译:向前渗透到乳制品加工的应用

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This work assesses the feasibility for concentrating process streams within dairy processing facilities using commercial forward osmosis membranes; to increase their total solids concentrations before entering energy intensive unit operations including thermal evaporators and spray dryers. These streams include demineralised whey, lactose, whey protein concentrate, sweet whey and skim milk. FTSH2O cellulose acetate (CTA) and Aquaporin flat sheet membranes are used with magnesium chloride concentrations of 1.66 +/- 0.12 M as the draw solution. The experimental data are fitted to conventional mathematical models for forward osmosis, further modified by considering the nonlinear relationship between osmotic pressure and solute concentration. The diffusion coefficients of magnesium chloride in 1.6 M solutions at 10 degrees C, 20 degrees C and 50 degrees C are obtained and reported for the first time. Minimal fouling and a significantly smaller degree of concentration polarisation was observed on the membrane surface during lactose concentration compared to the concentration of other dairy solutions, due to the absence of proteins and calcium phosphate salts. The transfer of magnesium into the concentrated products was monitored and shown to be below 100 mg per 100 g dry powder. Acid cleaning alone was not effective in recovering pure water flux, and enzyme cleaners at neutral pH were needed given the limited pH tolerance (3-8) of the CTA membranes. Total solids concentrations of the concentrated dairy streams by forward osmosis (up to 40%) exceed those which can be achieved by nanofiltration and reverse osmosis (i.e., 15-20%). This study shows that forward osmosis is an effective approach to concentrate relevant dairy streams to achieve high concentration factors (e.g. > 4 for sweet whey samples) without jeopardising product quality.
机译:这项工作评估了使用商业前进渗透膜在乳制品加工设施内集中流程流的可行性;在进入能量密集型单元操作之前增加其总固体浓度,包括热蒸发器和喷雾干燥器。这些溪流包括脱矿质乳清,乳糖,乳清蛋白浓缩物,甜乳清和脱脂牛奶。 FTSH2O醋酸纤维素(CTA)和水通道蛋白平板膜用于氯化镁浓度为1.66 +/-0.12μm作为拉伸溶液。实验数据适用于常规数学模型,用于前进渗透,通过考虑渗透压与溶质浓度之间的非线性关系进一步修改。在10℃,20℃和50℃下溶液中氯化镁的扩散系数在1.6M溶液中获得并首次报道。由于不存在蛋白质和磷酸钙盐,在乳糖浓度相比,在乳糖浓度相比,在膜表面上观察到最小的污重和显着较小程度的浓度。监测镁在浓缩产物中的转移,并显示为每100g干粉低于100mg。单独的酸清洁在回收纯净的水通量时无效,并且在CTA膜的PH耐受性(3-8)的有限pH耐受性(3-8)时,需要在中性pH下进行酶清洁剂。通过前渗透量(高达40%)浓缩乳制品的总固体浓度超过纳米过滤和反渗透(即15-20%)可以实现的浓度。本研究表明,前瞻性渗透是浓缩相关乳制品的有效方法,以实现高浓度因素(例如,用于甜乳清样品),而不会危及产品质量。

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