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    • 1. 发明专利
    • Method and apparatus for cleaning heavily greasy work clothing
    • 方法和装置用于清洁HEAVILY GREASY WORKS衣服
    • JP2010194134A
    • 2010-09-09
    • JP2009043264
    • 2009-02-26
    • Active K:KkSeiichi Manabe合同会社アクティブ・K真鍋 征一
    • MANABE SEIICHIYOSHIOKA KEIKO
    • D06F43/00C11D7/24C11D7/50C11D17/00D06F43/08
    • PROBLEM TO BE SOLVED: To provide a cleaning method for preventing the re-contamination of a cleaning solvent in heavily greasy work clothing and simultaneously removing even water-soluble stain without increasing a cleaning frequency; and also to provide a zero-emission type cleaning apparatus for collecting and reusing the solvent substantially without using thermal energy in cleaning or collecting and reusing even an aqueous solvent to be used. SOLUTION: In the cleaning method, the working clothing is washed using a mixture solution, the mixture solution containing a hydrocarbon system solvent (abbreviated as an O-solution) and an alkaline water solution (abbreviated as an A-solution), and then, dried by performing centrifugal desolvation and repetitive water-washing and dehydrating. The mixture solution after washing is separated in a separation tub. The respective solutions after the separation are refined and reused. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种清洁方法,用于防止重油污工作服中的清洁溶剂的再污染,同时在不增加清洗频率的情况下同时除去水溶性污渍; 并且还提供一种零排放型清洁装置,用于在即使使用的水性溶剂的清洗或回收和再利用中基本上不使用热能来收集和再利用溶剂。 解决方案:在清洁方法中,使用混合溶液洗涤工作服,将含有烃系溶剂(缩写为O溶液)和碱性水溶液(缩写为A-溶液)的混合溶液洗涤, 然后通过离心去溶剂化和重复水洗脱水干燥。 洗涤后的混合溶液在分离槽中分离。 分离后的各种溶液被精炼和重复使用。 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • Method for removing moisture in air
    • 在空气中去除水分的方法
    • JP2010131486A
    • 2010-06-17
    • JP2008308133
    • 2008-12-03
    • Kurosaki:KkSeiichi Manabe株式会社クロサキ真鍋 征一
    • MANABE SEIICHIYASUDA KOICHIRO
    • B01D53/26B01D53/22B01D63/14B01D63/16B01D71/10
    • PROBLEM TO BE SOLVED: To provide a method of removing moisture from wet air for removing moisture in air without using heat energy, recovering the latent heat energy possessed by the moisture in air as latent heat energy and satisfying a demand for increasing a moisture removing speed by the minimized energy from the outside. SOLUTION: By rotating a cylindrical rotary body, on which a flat hydrophilic porous membrane 3 is mounted, by utilizing the flowing force of wet air when moisture is removed from the wet air in a case that the absolute humidity of the wet air is higher than that of the atmosphere, three kinds of mechanisms of pore diffusion, surface diffusion and dissolving diffusion through the membrane are utilized to move the moisture of the wet air into the atmosphere. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种从湿空气中去除水分的方法,用于除去空气中的水分而不使用热能,将作为潜热能的空气中的水分所具有的潜热回收,并满足增加需求 通过外部最小化的能量去除湿度。 解决方案:通过在安装有平坦的亲水性多孔膜3的圆柱形旋转体上旋转湿空气的流动力,当湿气的绝对湿度 高于大气,通过膜的孔扩散,表面扩散和溶解扩散的三种机制被用来将湿空气的水分移动到大气中。 版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Multistage multilayer flat membrane
    • 多层多层平板膜
    • JP2009095701A
    • 2009-05-07
    • JP2007267390
    • 2007-10-15
    • Seiichi Manabe真鍋 征一
    • MANABE SEIICHISEKI CHIEKO
    • B01D69/06B01D71/10C08B16/00
    • PROBLEM TO BE SOLVED: To provide a separation membrane for filtration which serves as a membrane capable of separation purification of e.g. physiologically active substances and can improve the permeability for e.g. useful proteins and control clogging while removing specified fine particles efficiently from a solution.
      SOLUTION: The membrane is a multistage multilayer membrane which is used in separation purification of the proteins from a solution containing e.g. useful proteins through a mechanism of multistage filtration while removing fine particles to a high degree, and has a multilayer structure in the same module and is a substantially unified one obtained by directly stacking a plurality of porous flat membranes having a porosity of 65% or more and an average pore diameter ratio of pores of the membrane front surface to the membrane rear surface of 1:3 or more. The material of the membrane is a regenerated cellulose-made flat membrane.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种用作过滤分离膜,其用作能够分离纯化的膜。 生理活性物质,并且可以提高例如生物活性物质的渗透性。 有用的蛋白质和控制堵塞,同时从溶液中有效地除去特定的细颗粒。 解决方案:膜是一种多层多层膜,用于从含有例如磷酸盐的溶液中分离纯化蛋白质。 有效的蛋白质通过多级过滤机制,同时高度去除细颗粒,并且具有同一组件中的多层结构,并且是通过直接堆叠多孔孔隙率为65%或更多的多孔平板膜而获得的基本统一的 膜前表面与膜后表面的孔的平均孔径比为1:3以上。 膜的材料是再生的纤维素制成的平膜。 版权所有(C)2009,JPO&INPIT
    • 5. 发明专利
    • Multi layer membrane where fine particle capturing capability on front face is different from that on rear face, and method for manufacturing the same
    • 多层薄膜在前脸上的微粒捕获能力与后期不同,以及其制造方法
    • JP2009274010A
    • 2009-11-26
    • JP2008127738
    • 2008-05-14
    • Seiichi ManabeSepa Sigma Inc株式会社セパシグマ真鍋 征一
    • MANABE SEIICHIHANADA SAORIKIHARA DAISUKESUENAGA KOJI
    • B01D71/12A61K39/395A61P43/00B01D69/06B01D71/10B01D71/16
    • PROBLEM TO BE SOLVED: To design a membrane that gives a macromolecular porous membrane as a diaphragm that can give a closed space for fine particles (prion, virus, bacteria, etc.) and an opened space for molecules, and removes fine particles in liquid, recovers dissolved molecules at a high rate of recovery and whose filtration capacity is big, and to provide a method for manufacturing the same. SOLUTION: A raw materials of flat membrane of which include a cellulosic and its saponified, regenerated cellulosic multilayer membrane, and which is a laminate of 100 layers or more with an average pore size of 5 to 500 nm, has a film thickness of 40 to 500 μm, and a porosity of 0.7 or more, and a thickness of one layer thereof of 0.05 to 0.5 μm is designed, and also configured such that the ratio of the amounts of particles captured by filtration on the front face to the back face of the flat membrane is 1/5 to 1/100, the particles having an average pore size being two times the pore size of the membrane. The method for manufacturing the flat membrane includes producing the membrane by a dry-type micro-phase separation method and casting a coasting solution in a form of a solid flat plate with micro irregularities. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了设计一种膜,其能够提供大分子多孔膜作为隔膜,其可以为细颗粒(朊病毒,病毒,细菌等)和开放的分子空间提供封闭的空间,并且去除细 液体中的颗粒以高回收率回收溶解分子,其过滤能力大,并提供其制造方法。 解决方案:平板膜的原料包括纤维素及其皂化的再生纤维素多层膜,其平均孔径为5〜500nm的100层以上的层压体的膜厚度 为40〜500μm,孔隙率为0.7以上,其一层的厚度为0.05〜0.5μm,也可以构成为,通过过滤捕获的颗粒的数量与前表面的比例 平膜的背面为1/5〜1/100,平均孔径为膜的孔径的2倍。 制造平膜的方法包括通过干式微相分离法制造膜,并以具有微小凹凸的固体平板的形式浇注惯性溶液。 版权所有(C)2010,JPO&INPIT
    • 6. 发明专利
    • Hole diffusion-filtering module mounted with multistaged multilayered structure membrane
    • 用多层结构膜安装的孔扩散过滤器
    • JP2009136744A
    • 2009-06-25
    • JP2007314463
    • 2007-12-05
    • Seiichi ManabeSepa Sigma Inc株式会社セパシグマ真鍋 征一
    • MANABE SEIICHISEKI CHIEKO
    • B01D63/14B01D69/06
    • PROBLEM TO BE SOLVED: To provided a hole diffusion-filtering method in a membrane separation module using a flat membrane, having feature (no hole clogging) of hole diffusion, and feature of filtration (possibility of reduction of liquid to be treated and optional setting of membrane passing speed of a substance), respectively, and a module efficiently preventing clogging by large particles (mixed in the liquid to be treated).
      SOLUTION: In the membrane separation module, (1) the multistaged multilayered structure membrane is used as the flat membrane, and multilayered structure membrane with further larger average hole diameters are sequentially set on the liquid to be treated side, (2) the membrane plane is vertically set, (3) three or more liquid inlet/outlet ports are provided on the liquid to be treated side, (4) two or more liquid inlet/outlet ports are provided on the diffusion liquid side, and (5) a filled liquid amount on the liquid to be treated side increases a filled liquid amount of the diffusion liquid side.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:在使用平膜的膜分离组件中提供孔扩散过滤方法,具有孔扩散的特征(无孔堵塞)和过滤特性(待处理液体的还原的可能性 和物质的膜通过速度的可选设定),以及有效防止大颗粒(混入待处理液体)堵塞的模块。 解决方案:在膜分离模块中,(1)将多层多层结构膜用作平膜,并且在待处理液侧依次设置具有更大平均孔径的多层结构膜,(2) 膜平面垂直设置,(3)待处理液体上设置三个以上的液体入口/出口,(4)扩散液侧设置两个以上的液体入口/出口,(5 )待处理液体侧的填充液量增加了扩散液侧的填充液量。 版权所有(C)2009,JPO&INPIT
    • 7. 发明专利
    • Membrane separation method based on pore diffusion and filtration
    • 基于孔扩散和滤波的膜分离方法
    • JP2009095702A
    • 2009-05-07
    • JP2007267393
    • 2007-10-15
    • Seiichi Manabe真鍋 征一
    • MANABE SEIICHISEKI CHIEKO
    • B01D61/14B01D69/12B01D71/10
    • PROBLEM TO BE SOLVED: To provide a membrane separation method which solves the problems associated with pore diffusion, including that (1) the amount of solution treated is not reduced; (2) the concentration of a target substance recovered from the diffused solution is low; and (3) the membrane permeation rate of the substance is small, and retains the characteristics of pore diffusion membrane separation.
      SOLUTION: The pore diffusion and filtration separation method is one in which the mass transfer by filtration is added to pore diffusion membrane separation under such a condition that the diffusion rate in pores of fine particles having particle sizes equal to the average pore diameter of the membrane to be used in pore diffusion membrane separation is higher than the membrane permeation rate of the fine particles by filtration.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种解决与孔扩散相关的问题的膜分离方法,包括(1)不降低溶液的处理量; (2)从扩散溶液中回收的目标物质的浓度低; 和(3)物质的膜渗透速率小,保留了孔扩散膜分离的特点。 解决方案:孔扩散和过滤分离方法是在孔扩散膜分离中加入通过过滤的质量传递的方法,其条件是使颗粒的孔隙中的扩散速率等于平均孔径 用于孔扩散膜分离的膜比通过过滤的细颗粒的膜渗透速率高。 版权所有(C)2009,JPO&INPIT
    • 8. 发明专利
    • Apparatus and method of removing moisture in gas
    • 装置和方法去除气体中的水分
    • JP2010167339A
    • 2010-08-05
    • JP2009010449
    • 2009-01-21
    • Kurosaki:KkSeiichi Manabe株式会社クロサキ真鍋 征一
    • MANABE SEIICHIYASUDA ZENICHI
    • B01D53/26B01D53/22B01D63/08B01D69/12B01D71/10
    • PROBLEM TO BE SOLVED: To provide a method of removing moisture from a gas, wherein (1) the moisture is removed while executing the control of a moisture rate in a target space without using heat energy, (2) a water molecule in a gas state has latent heat energy and is recovered as sensible heat energy, (3) limitation by a moisture rate in the atmosphere is mitigated for a moisture removing speed and a reachable zone of the moisture rate after removal, and (4) application is performed even in a place where a space part to remove the moisture is not adjacent to the atmosphere. SOLUTION: The apparatus of removing the moisture from a gas which is wet by high humidity comprises a double cylinder provided with a circuit for making a wet high-temperature gas (gas A) flow inside a cylindrical porous flat membrane module and a circuit for making the gas (gas B) of absolute humidity lower than that of the gas flow formed on the outer side of the cylindrical flat membrane, the porous flat membrane comprises at least two hydrophilic polymer materials, and a moisture flat membrane transmission mechanism is the center of the contribution of diffusion in the method of removing the moisture. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种从气体中除去水分的方法,其中(1)在不使用热能的同时执行目标空间中的水分速率的控制来除去水分,(2)水分子 在气体状态下具有潜热能并作为显热能回收,(3)去除气体的除湿速度和去除水分率的可达区域,大气中的水分率受到限制,(4)应用 即使在空气部分去除水分也不与大气相邻的地方进行。 解决方案:从由高湿度润湿的气体中除去水分的装置包括一个双缸,其设置有用于使湿的高温气体(气体A)在圆柱形多孔平膜组件内流动的回路,以及 用于使气体(气体B)的气体(气体B)比形成在圆筒形平坦膜的外侧上的气流低的气体的电路,多孔平膜包含至少两种亲水性聚合物材料,并且水分平坦膜传递机构是 在去除水分的方法中扩散的贡献的中心。 版权所有(C)2010,JPO&INPIT
    • 9. 发明专利
    • Integrity testing device
    • 完整性测试设备
    • JP2009204437A
    • 2009-09-10
    • JP2008046960
    • 2008-02-27
    • Seiichi ManabeSepa Sigma Inc株式会社セパシグマ真鍋 征一
    • HANADA SAORISEKI CHIEKOMANABE SEIICHI
    • G01N15/08B01D65/10
    • PROBLEM TO BE SOLVED: To provide an integrity testing device (a nondestructive test method by a direct method is used for integrity test, in this case) of a membrane capable of coping with any membrane removable method between a membrane filtration method, a pore diffusion method, and a pore diffusion-filtration method.
      SOLUTION: This device has a circuit for sending each different liquid to each surface on one side (A-surface) and on the other side (B-surface) of a membrane, by using a measurable solution, even when there is a concentration lower than 1/1,000 times the colloidal particle concentration in colloidal solution for the integrity test; and has a circuit for sending the colloidal solution and cleaning liquid for cleaning the membrane surface to the A-surface side and sending water and dissolving liquid for dissolving colloid, to the B-surface side.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种完整性测试装置(在这种情况下,通过直接方法的无损检测方法用于完整性测试)能够应用膜过滤方法之间的任何膜可移除方法的膜, 孔扩散法和孔扩散过滤法。 解决方案:该装置具有通过使用可测量的解决方案将各种不同液体发送到膜的一侧(A表面)和另一侧(B表面)上的每个表面的电路,即使存在 浓度低于胶体溶液中胶体粒子浓度的1/1000倍,用于完整性试验; 并且具有用于将用于将膜表面清洁的胶体溶液和清洗液送到A表面侧并将水和溶解胶体的溶解液溶解到B面侧的回路。 版权所有(C)2009,JPO&INPIT
    • 10. 发明专利
    • Pore diffusion type membrane separation system using hollow fiber membrane
    • 使用中空纤维膜的孔扩散型膜分离系统
    • JP2008155079A
    • 2008-07-10
    • JP2006343669
    • 2006-12-21
    • Seiichi Manabe真鍋 征一
    • MANABE SEIICHI
    • B01D63/02B01D61/58B01D71/10D01F2/28
    • PROBLEM TO BE SOLVED: To provide a membrane separation system applying a hollow fiber membrane for a pore diffusion type membrane separation system.
      SOLUTION: The pore diffusion type membrane separation system is characterized in that the enrichment step is provided before the pore diffusion type hollow fiber membrane separation apparatus and the hollow fiber membrane having the specified average pore size, the porosity and the film thickness are employed in the apparatus, and in that the intermittent operation is conducted or the rate i (mL/second) of liquid flowing through the hollow part of one hollow fiber membrane satisfies following conditions: i 3 d
      4 ), l denotes the length of a fiber, d denotes the inner diameter andηdenotes the viscosity of a liquid.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种应用孔扩散型膜分离系统的中空纤维膜的膜分离系统。 解决方案:孔扩散型膜分离系统的特征在于,在孔扩散型中空纤维膜分离装置和具有规定的平均孔径,孔隙率和膜厚度的中空纤维膜之前提供富集步骤 并且进行间歇操作,或者流过一个中空纤维膜的中空部分的液体的速率i(mL /秒)满足以下条件:i <(π/128η1)(10 3 d 4 ),l表示纤维的长度,d表示内径,η表示液体的粘度。 版权所有(C)2008,JPO&INPIT