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    • 2. 发明专利
    • Maxacalcitol in new crystalline form
    • MAXACALCITOL新型结晶形式
    • JP2014037385A
    • 2014-02-27
    • JP2012181178
    • 2012-08-17
    • Formosa Lab Incフォーモサ・ラボラトリーズ・インコーポレーテッド
    • WEI CHING-PENGHUANG PEI-CHENG
    • C07C401/00
    • C07C401/00C07B2200/13C07C2601/14C07C2602/24
    • PROBLEM TO BE SOLVED: To provide maxacalcitol in a new crystalline form, and a maxacalcitol hydrate.SOLUTION: A process of preparing a maxacalcitol hydrate in a crystalline form includes: (a) dissolving crystalline or non-crystalline maxacalcitol in a polar organic solvent to form a first solution; (b) mixing the first solution with water to form a second solution; (c) cooling the second solution to form a crystalline deposit; and (d) isolating the crystalline deposit from the second solution to obtain a maxacalcitol hydrate in a crystalline form. The maxacalcitol hydrate, which is maxacalcitol in a new crystalline form, has excellent technical characteristics and excellent stability characteristics in production of a crystalline suspension formulation.
    • 要解决的问题:提供新的结晶形式的maxacalcitol和最大的矿物质水合物。解决方案:制备结晶形式的maxacalcitol水合物的方法包括:(a)将结晶或非结晶maxacalcitol溶解在极性有机溶剂中 形成第一个解决方案; (b)将第一溶液与水混合以形成第二溶液; (c)冷却第二溶液以形成结晶沉积物; 和(d)从第二溶液中分离出结晶沉积物,以获得结晶形式的最大卡他醇水合物。 作为新型结晶形式的maxacalcitol的maxacalcitol水合物在结晶悬浮液制剂的生产中具有优异的技术特性和优异的稳定性。
    • 5. 发明专利
    • Method for preparing poly(allylamine) hydrochloride and derivative therefrom
    • 制备聚(全甲基)氯化氢和衍生物的方法
    • JP2013104061A
    • 2013-05-30
    • JP2012168185
    • 2012-07-30
    • Formosa Lab Incフォーモサ・ラボラトリーズ・インコーポレーテッド
    • LIU YU-LIANGWEI CHING-PENG
    • C08J3/02C08F26/02C08J3/24
    • B01D61/145C08F6/04C08F6/12C08F8/02C08F8/26C08F126/02C08F2810/20C08J3/12C08J2379/00C08L39/00C08F8/44
    • PROBLEM TO BE SOLVED: To prepare cost-effective poly(allylamine) hydrochloride with easy handleability and with easy cleaning operation.SOLUTION: A membrane filtration system for separating a polymeric liquid that has different molecular weight includes: one or more membrane filtration units (a) integrated into a pressurized vessel; a supply pipe (b) that is connected to the membrane filtration unit and one end of which is fixed to one end of the pressurized vessel; a concentration outlet pipe (c) which is connected to the membrane filtration unit, one end of which is fixed to the one end of the pressurized vessel, and the other end of which is connected to the supply pipe through a continuation unit; a filtrate tank (d) surrounded with the membrane filtration unit and recovering a filtrate flowing out of the pressurized vessel; a filtrate outlet pipe (e) bonded to the filtrate tank and causing the removal of the filtrate from the filtrate tank; and a pump system (f) connected to the membrane filtration unit and providing pressure to push a supplied liquid against the membrane filtration unit.
    • 要解决的问题:制备性价比高的聚(烯丙胺)盐酸盐,易于操作和易于清洁操作。 解决方案:用于分离具有不同分子量的聚合液体的膜过滤系统包括:一个或多个膜过滤单元(a),其集成到加压容器中; 供给管(b),其连接到所述膜过滤单元,并且其一端固定在所述加压容器的一端; 浓缩出口管(c),其连接到膜过滤单元,其一端固定到加压容器的一端,另一端通过连续单元连接到供给管; 滤膜(d),其被膜过滤单元包围并回收从加压容器流出的滤液; 滤液出口管(e),其结合到滤液槽并使滤液从滤液槽中除去; 以及连接到膜过滤单元的泵系统(f),并提供压力以将供应的液体推向膜过滤单元。 版权所有(C)2013,JPO&INPIT