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    • 6. 发明授权
    • Method of and system for continuously processing liquid materials, and the product processed thereby
    • 连续处理液体材料的方法和系统,以及由此处理的产品
    • US06616849B1
    • 2003-09-09
    • US09562189
    • 2000-05-02
    • Yutaka OsajimaMitsuya ShimodaMichinosuke TakadaMasaki Miyake
    • Yutaka OsajimaMitsuya ShimodaMichinosuke TakadaMasaki Miyake
    • C02F120
    • A61L2/0011A23L2/42A23L3/0155A23L3/349A23V2002/00C02F1/02C02F1/20C02F1/686C02F2209/02C02F2209/03A23V2200/10A23V2250/11
    • The present invention proposes a method of and system for continuously processing liquid material by which enzymes in the liquid material are inactivated and the liquid material is sterilized effectively. In one example of the system according to the present invention, a liquid material is introduced into a processing chamber 11 from an introduction port at the bottom, and liquefied carbon dioxide formed into micro-particles by a filter 16 is also introduced in the chamber 11. The micro-particles of liquefied carbon dioxide dissolves into the liquid material efficiently. The liquid material taken out from a take-out port 18 is introduced into a warming pipe 20 kept at such a preset temperature and pressure where the carbon dioxide turns to a supercritical fluid. After that, the liquid material is introduced through a pressure control valve 24 into a pressure-reducing chamber 24. The carbon dioxide rapidly changes from supercritical fluid to gas, and vaporizes from the liquid material. The step of dissolving carbon dioxide into the liquid material and the step of processing the liquid material with the supercritical fluid are carried out independently under respective optimized temperature-and-pressure condition. Therefore, the processing time can be shortened even with a small-sized processing chamber 11, and there is no need to pre-heat the liquid material.
    • 本发明提出了一种用于连续处理液体材料中的酶失活并且液体材料被有效灭菌的液体材料的方法和系统。 在根据本发明的系统的一个示例中,液体材料从底部的引入口引入处理室11中,并且通过过滤器16将形成为微粒子的液化的二氧化碳引入到室11中 液化二氧化碳的微粒有效地溶解在液态物质中。 从取出口18取出的液体材料被引入到保持在二氧化碳变成超临界流体的预设温度和压力下的加温管20中。 之后,将液体材料通过压力控制阀24引入减压室24中。二氧化碳从超临界流体迅速转变为气体,并从液体材料中蒸发。 将二氧化碳溶解在液体材料中的步骤以及用超临界流体处理液体材料的步骤在各自优化的温度和压力条件下独立进行。 因此,即使使用小型处理室11也能够缩短加工时间,不需要对液体材料进行预热。