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Removal of lactic acid from acid whey using electrodialysis

机译:使用电渗析去除酸乳清中的乳酸

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The processing of acid whey, a by-product of cream cheese making, casein production and strained yogurt manufacture, has been a challenge in the dairy industry. The high lactic acid concentration causes operational problems in downstream spray drying operations due to increased powder stickiness. In this work, electrodialysis, a well proven demineralisation technology is used to remove the lactate ions from acid whey. If the ratio of lactic acid to lactose is to be reduced to the same level found in sweet whey, 80% of the lactate ions must be removed. For both laboratory prepared solutions and acid whey samples, the lactate ions were removed at a slower rate compared to other anions present in the system. Increasing the pH (from pH 4.6 to pH 6) of the feed solution led to a small enhancement in the rate of lactate ions removal at 5 degrees C. No impact was observed, however, at 30 and 45 degrees C where membrane resistance and solution viscosity is lower. To achieve the same level of lactate ion removal, the processing time in a batch process was three times shorter at 45 degrees C, compared to that at 5 degrees C. This means that significantly less membrane area is required in a continuous industrial electrodialysis operation. The energy consumption (similar to 0.014 kW h/kg whey processed) for achieving 90% demineralization of the acid whey was comparable to the energy requirement reported for sweet whey demineralization in a typical commercial electrodialysis unit, illustrating the feasibility of this approach. (C) 2015 Elsevier B.V. All rights reserved.
机译:乳清干酪制造,酪蛋白生产和酸乳酪生产的副产品酸乳清的加工一直是乳制品行业的挑战。高乳酸浓度由于增加的粉末粘性而在下游喷雾干燥操作中引起操作问题。在这项工作中,电渗析是一种行之有效的脱盐技术,用于从酸乳清中除去乳酸根离子。如果要将乳酸与乳糖的比例降低到甜乳清中的水平,则必须除去80%的乳酸离子。对于实验室制备的溶液和酸乳清样品,乳酸盐离子的去除速度比系统中存在的其他阴离子要慢。将进料溶液的pH值增加(从pH 4.6到pH 6)会导致5摄氏度时乳酸盐离子去除率的提高略有增加。但是,在30摄氏度和45摄氏度时未观察到影响,其中膜的电阻和溶液粘度较低。为了实现相同水平的乳酸离子去除,与5摄氏度时相比,在45摄氏度时分批处理的处理时间要短三倍。这意味着在连续的工业电渗析操作中所需的膜面积明显减少。实现90%的酸乳清软化的能耗(类似于0.014 kW h / kg乳清的能耗)与典型的商用电渗析装置中报道的甜乳清软化的能耗相当,这说明了这种方法的可行性。 (C)2015 Elsevier B.V.保留所有权利。

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