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Modern Technologies of Milk Whey Processing in the Conditions of New Techno-Economic Paradigm

机译:新技术经济范式条件下的牛奶乳清加工现代技术

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The transition to the next techno-economic paradigm under the conditions of new industrialization has demanded a change in the attitude of consumers to secondary raw materials and, in particular, approaches to the processing of milk whey. One of the breakthrough technologies of waste-free processing of whey is membrane technology. The study is currently significant insofar as it considers reprocessing of secondary raw materials represented by milk whey generated in bulk in the course of curd and cheese production. Waste-free method of whey reprocessing has been experimentally justified employing two stages of baromembrane technology: ultrafiltration at the first stage to recover macromolecular components followed by reverse osmosis concentration of lactose applying modern domestically produced membranes. The materials and methods for investigating the processes of ultrafiltration and reverse osmosis concentration of whey have been described. Proprietary solution has been suggested for milk whey ultrafiltration without its preliminary treatment using ceramic ultrafiltration elements (0.01). Optimum operating parameters for the processes of ultrafiltration and reverse osmosis concentration of whey have been experimentally established and verified in the workshop environment. A technological process for Waste-free whey processing has been developed. The results of the experimental investigations have been discussed and the relevant conclusions have been made. As a result ceramic membrane can be recommended as the most preferable technical solution for separating whey without any preliminary treatment during ultrafiltration process. Recommendations are given for reverse osmosis process conditions.
机译:新型工业化条件下的下一个技术 - 经济范式的转变已要求在消费者的二次原料的态度有所转变,特别是,接近的乳清处理。乳清的无废物处理的突破性技术是膜技术。该研究目前的缺乏是重要的,因为它考虑了在凝乳和奶酪生产过程中散装中产生的牛奶乳清所代表的二次原料的再加工。乳清再加工的无废物方法已经在实验上有理由采用双膜技术的两个阶段:在第一阶段的超滤以回收大分子组分,然后在乳糖的反渗透浓度施加现代国内生产的膜。已经描述了用于研究超滤方法和乳清的反渗透浓度的材料和方法。已经提出了专有的解决方案,用于使用陶瓷超滤元素(0.01)的初步处理而没有其初步处理。在研讨会环境中,已经在实验和验证了乳清超滤和反渗透浓度的最佳操作参数。已经开发了一种无垃圾乳清处理的技术过程。已经讨论了实验调查的结果,并已进行了相关结论。结果,可以推荐陶瓷膜作为在超滤过程中分离乳清的最优选的技术方案。提出建议,用于反渗透过程条件。

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