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FREEZE VACUUM DRYER AND FREEZE VACUUM DRYING METHOD

机译:冷冻干燥机及冷冻干燥方法

摘要

PROBLEM TO BE SOLVED: To provide a freeze vacuum dryer with which fine source liquid particles do not self-freeze around a nozzle in the case that source liquid is injected into a vacuum freeze drying tower from the nozzle to conduct freeze-dry and a freeze vacuum drying method.;SOLUTION: The nozzle 12 for injecting 5% aqueous solution of mannitol as the source liquid L into the vacuum freeze drying tower 11 is formed as a flat plate 13 with a micro pore 14 of, for example, 150 μm in inner diameter. With pressure in the vacuum freeze drying tower 11 at, for example, 50 Pa and pressure applied to the source liquid L at, for example, 0.3 MPa, a liquid column K of the source liquid L is formed below the micro pore 14 and the fine source liquid particles R formed by dispersion of the liquid column K from an lower end of the liquid column K in a fixed length which is determined by injection condition are self-freezed and collected as fine frozen particles Q. Ice contained in the fine frozen particles Q is sublimated by heating the fine frozen particles Q at a low temperature and dry them to obtain fine powder P of mannitol.;COPYRIGHT: (C)2006,JPO&NCIPI
机译:解决的问题:提供一种冷冻真空干燥器,在从喷嘴将原料液体注入真空冷冻干燥塔中进行冷冻干燥和冷冻的情况下,精细的原料液体颗粒不会在喷嘴周围自冻。解决方案:用于将5%甘露醇水溶液作为原料液体L注入真空冷冻干燥塔11的喷嘴12形成为平板13,其具有例如150μm的微孔14。内径为m。在真空冷冻干燥塔11中的压力例如为50Pa,对原料液L施加的压力例如为0.3MPa的情况下,在微孔14的下方形成原料液L的液柱K。通过将液柱K从液柱K的下端以固定长度分散(通过注入条件确定)而形成的细源液状颗粒R被自冷冻,并作为细冻颗粒Q收集。通过将冷冻的细颗粒Q在低温下加热并干燥将其升华,得到甘露醇细粉P 。;版权所有:(C)2006,日本特许经营&NCIPI

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