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Effect of circulation flowrate on the performance of a spiral finned freeze concentrator

机译:循环流动对螺旋翅冻浓缩器性能的影响

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Progressive freeze concentration (PFC) has emerged as a viable technology for concentration of liquid solution. In this study, a newly designed spiral finned crystallizer to improve productivity of PFC process was proposed. The spiral fin is presented based on the advantage of additional surface area to the spiral finned crystallizer. The performance of spiral finned crystallizer was analysed by the system efficiency and the effect of circulation flowrate. It was found that the efficiency of the system has significantly improved in terms of a lower effective partition constant and a higher recovered solute. An effective partition constant of 0.35 and a recovered solute of approximately 0.96 g of glucose per 1 g of initial glucose were obtained. Thus, spiral finned crystallizer for PFC system is evidently an effective system to concentrate solution and to produce pure ice crystal.
机译:渐进式冷冻浓度(PFC)已成为浓度液体溶液的可行技术。 在这项研究中,提出了一种新设计的螺旋翅片结晶器,提出了提高PFC工艺的生产率。 基于螺旋翅片结晶器的附加表面积的优点来提出螺旋形翅片。 通过系统效率和循环流量的影响分析了螺旋翅片结晶器的性能。 发现系统的效率在较低的有效分区常数和更高的回收溶质方面具有显着改善。 得到0.35的有效分区常数和每1g初始葡萄糖的约0.96g葡萄糖的回收溶质。 因此,用于PFC系统的螺旋翅片结晶器显然是浓缩溶液和生产纯冰晶的有效系统。

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