会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • SWEEP AIR SYSTEM FOR MEMBRANE AIR DRYER
    • 用于膜空气干燥器的扫气系统
    • US20110303091A1
    • 2011-12-15
    • US12902832
    • 2010-10-12
    • Randall W. Nichols
    • Randall W. Nichols
    • B01D53/22
    • B01D53/268B01D2257/80B01D2259/4566B60T17/004
    • A membrane dryer includes a shell having an inner tube and an outer tube and a bundle of hollow fibers supported in the shell. A dryer air inlet into the hollow fibers and a sweep air outlet from the inner tube are at a first end of the shell. A dryer air outlet into the hollow fibers and a sweep air inlet from the inner tube are at a second end of the shell. The inner tube has a first set of circumferential openings into the sweep air space adjacent the first end of the shell and a second set of circumferential openings into the sweep air space adjacent the first end of the shell; and a second plug is in the inner tube between the first and second set of openings.
    • 膜干燥器包括具有内管和外管的壳体和支撑在壳体中的一束中空纤维。 进入中空纤维的干燥器空气入口和来自内管的吹扫空气出口在壳体的第一端。 来自中空纤维的干燥器空气出口和来自内管的吹扫空气入口位于壳体的第二端。 所述内管具有与所述壳体的第一端相邻的所述吹扫空气空间中的第一组周向开口,以及邻近所述壳体的所述第一端部的所述吹扫空气空间中的第二组周向开口; 并且第二塞子位于第一和第二组开口之间的内管中。
    • 4. 发明授权
    • Transverse sheet membrane separation module, components thereof and
related methods
    • 横向薄膜分离模块及其组件及相关方法
    • US5000855A
    • 1991-03-19
    • US383742
    • 1989-07-21
    • Randall W. Nichols
    • Randall W. Nichols
    • B01D63/08B29C41/20B29C70/84
    • B29C41/20B01D63/081B01D63/082B29C70/845B29C2791/001B29K2063/00B29K2091/00
    • A wafer (10) providing transfer sheets of semipermeable membrane (21). Such wafers include peripheral support means (11) defining a generally cylindrical ring and having inside (14) and outside faces (15) and upper (12) and lower (13) faces and, a plurality of transverse sheet membrane sleeves (16) carried within the peripheral support means. Apparatus (60) for the separation of a fluid into permeate and retentate portions comprises a plurality of transverse sheet membrane wafers (10), vessel means (61) providing a first port (68) for receiving the fluid, a second port (69) for withdrawing the retentate and a third port (70) for withdrawing the permeate, means for compressing (74) the plurality of wafers in axial alignment, and permeate chamber means (72) within said vessel, separate from the feedstream and the retentate by the means for compressing (74) and peripheral support means (11). Separate methods are also provided for the manufacture of the wafers as well as for the separation of fluid feedstreams into permeate and retentate portions. A method of the latter type includes the steps of feeding the fluid into a module containing a plurality of semipermeable membrane sleeves arranged chord-wise in parallel alignment and oriented perpendicularly with respect to the longitudinal axis of the module; providing separate chambers for the permeate, communicating with the interior of the sleeves, and for said retentate, communicating with the areas between the membrane sleeves; and removing the permeate and retentate from the module.
    • 5. 发明授权
    • Sweep air system for membrane air dryer
    • 扫风式空气干燥机系统
    • US08066801B2
    • 2011-11-29
    • US11789293
    • 2007-04-24
    • Randall W. Nichols
    • Randall W. Nichols
    • B01D53/22
    • B01D53/268B01D2257/80B01D2259/4566B60T17/004
    • A membrane dryer includes a shell having an inner tube and an outer tube and a bundle of hollow fibers supported in the shell. A dryer air inlet into the hollow fibers and a sweep air outlet from the inner tube are at a first end of the shell. A dryer air outlet into the hollow fibers and a sweep air inlet from the inner tube are at a second end of the shell. The inner tube has a first set of circumferential openings into the sweep air space adjacent the first end of the shell and a second set of circumferential openings into the sweep air space adjacent the first end of the shell; and a second plug is in the inner tube between the first and second set of openings.
    • 膜干燥器包括具有内管和外管的壳体和支撑在壳体中的一束中空纤维。 进入中空纤维的干燥器空气入口和来自内管的吹扫空气出口在壳体的第一端。 来自中空纤维的干燥器空气出口和来自内管的吹扫空气入口位于壳体的第二端。 所述内管具有与所述壳体的第一端相邻的所述吹扫空气空间中的第一组周向开口,以及邻近所述壳体的所述第一端部的所述吹扫空气空间中的第二组周向开口; 并且第二塞子位于第一和第二组开口之间的内管中。
    • 7. 发明授权
    • Membrane air dryer with sweep air control
    • 膜式空气干燥机具有吹扫空气控制
    • US07731784B2
    • 2010-06-08
    • US11736318
    • 2007-04-17
    • Eric WrightRichard KoharRandall W. Nichols
    • Eric WrightRichard KoharRandall W. Nichols
    • B01D53/22
    • B01D63/02B01D53/22B01D53/268B01D2311/13B01D2313/18B60T17/004Y10S55/17
    • The membrane air dryer includes a housing with an air inlet adjacent a first end of the housing, an air outlet adjacent a second end of the housing, a sweep air inlet and a sweep air outlet. A membrane separator has surfaces extending between and connected to the air inlet and the air outlet. A first sweep air passage in the housing extends between the first and second ends of the membrane along and including surfaces of the membrane. The first sweep air passage has an inlet adjacent the air outlet and an outlet adjacent the air inlet and connected to the sweep air outlet. The sweep air inlet and outlet is adjacent the air inlet. A second sweep air passage in the housing extends between the first and second ends of the membrane. The second sweep air passage has an inlet that is connected to the sweep air inlet and is adjacent the air inlet and has an outlet that is adjacent the air outlet and in fluid communication with the inlet of the first sweep air passage. The membrane air dryer may be mounted to extend into the reservoir.
    • 膜空气干燥器包括壳体,其具有与壳体的第一端相邻的空气入口,与壳体的第二端相邻的空气出口,吹扫空气入口和吹扫空气出口。 膜分离器具有在空气入口和空气出口之间延伸并连接到空气入口和空气出口的表面。 壳体中的第一吹扫空气通道在膜的第一和第二端部之间延伸并且包括膜的表面。 第一吹扫空气通道具有邻近空气出口的入口和邻近空气入口的出口并连接到吹扫空气出口。 吹扫空气入口和出口与进气口相邻。 壳体中的第二吹扫空气通道在膜的第一和第二端之间延伸。 第二吹扫空气通道具有连接到吹扫空气入口并且与空气入口相邻的入口,并且具有邻近空气出口并与第一吹扫空气通道的入口流体连通的出口。 膜空气干燥器可以安装成延伸到储存器中。
    • 10. 发明授权
    • Apparatus for separation and for treatment of fluid feedstreams, wafers
for use therein and related methods
    • 用于分离和处理流体进料流的装置,用于其中的晶片及相关方法
    • US5174900A
    • 1992-12-29
    • US587868
    • 1990-09-25
    • Randall W. NicholsJames C. DavisRobert D. Littler
    • Randall W. NicholsJames C. DavisRobert D. Littler
    • B01D63/02B01D63/04B29C41/20B29C41/22B29C70/84
    • B01D63/026B01D63/02B01D63/022B01D63/043B29C41/20B29C41/22B29C70/845
    • A method for the treatment of fluid feedstreams comprises the steps of providing at least one wafer (200) comprising a central area (202) providing a plurality of members (18) arranged in a plurality of layers (201) and peripheral support means (203) encompassing the central area, arranged axially in a module (180) having first and second ports (185, 208); a plurality of separate bore fluid chambers (198, 199) generally encompassing the peripheral support means and communicable with the members within the central area, and a plurality of separate bore fluid ports (192, 193) communicable with the bore fluid chambers; directing the feedstream through the first port and over the wafer; and transferring materials between the central area in the wafer and the feedstream. Related methods employ other multi port apparatus (220, 240) as well as wafers (240, 280, 300, 320, 350, 410, 460) for use therein. Treatment of the feedstreams includes contact with layers of hollow fibers (18), non-porous hollow tubes (309), porous hollow tubes (303) coated with membrane material (304 ) and transverse sheet membrane sleeves (360).
    • 一种用于处理流体进料流的方法包括以下步骤:提供至少一个晶片(200),其包括中心区域(202),所述中心区域(202)提供布置在多个层(201)和外围支撑装置(203)中的多个构件 )包括中心区域,轴向布置在具有第一和第二端口(185,208)的模块(180)中; 通常包围周边支撑装置并与中心区域内的构件可连通的多个单独的孔流体腔室(198,199)以及可与孔流体腔室连通的多个分离的孔流体端口(192,193) 引导进料流通过第一端口并在晶片上方; 并且在晶片的中心区域和进料流之间转移材料。 相关方法使用其他多端口设备(220,240)以及用于其中的晶片(240,280,300,320,350,410,460)。 进料流的处理包括与中空纤维(18),无孔中空管(309),涂覆有膜材料(304)的多孔中空管(303)和横向片膜套筒(360)的层接触。