Acidic gas separation laminate and acidic gas separation module provided with laminate
    63.
    发明授权
    Acidic gas separation laminate and acidic gas separation module provided with laminate 有权
    酸性气体分离层压板和酸性气体分离模块配有层压板

    公开(公告)号:US09457319B2

    公开(公告)日:2016-10-04

    申请号:US15006918

    申请日:2016-01-26

    IPC分类号: B01D53/22 B01D63/08 B01D63/10

    摘要: An acidic gas separation laminate including: a porous support formed by laminating a porous film and an auxiliary support film; an acidic gas separation facilitated transport film; a permeating gas channel member; a sealing unit which is formed by impregnating the porous film, the auxiliary support film, and the gas channel member with an adhesive in the lamination direction thereof along the peripheral edge at a width of 5 mm or greater such that the permeation rate becomes 60% or greater; and a stress buffer unit which is adjacent to the sealing unit, has a permeation rate of the adhesive of less than 60% at least in the porous film, and is formed by impregnating at least the gas channel member with the adhesive.

    摘要翻译: 一种酸性气体分离层压体,包括:通过层压多孔膜和辅助支撑膜形成的多孔载体; 酸性气体分离便于运输膜; 渗透气体通道构件; 密封单元,其通过在其层叠方向上沿着周边边缘以5mm或更大的宽度浸渍多孔膜,辅助支撑膜和气体通道构件而形成,使得渗透速率为60% 或更大; 以及与密封单元相邻的应力缓冲单元,至少在多孔膜中具有小于60%的粘合剂的渗透速率,并且通过使用粘合剂至少浸渍气体通道构件而形成。

    CENTRIFUGAL AIR SEPARATORS
    64.
    发明申请
    CENTRIFUGAL AIR SEPARATORS 有权
    离心式空气分离器

    公开(公告)号:US20160279552A1

    公开(公告)日:2016-09-29

    申请号:US14671761

    申请日:2015-03-27

    IPC分类号: B01D45/16

    摘要: Centrifugal air separators, systems including the same, and methods of separating gas are disclosed. Centrifugal air separators include a separation section configured to separate an input air stream into a clean air stream emitted from an exit port of the separation section and a waste stream emitted from a waste port of the separation section. The separation section includes a coiled duct and is configured to transmit through a duct entrance port a duct input air stream that is at least a portion of the input air stream and to at least partially separate the duct input air stream according to a molecular weight of components of the duct input air stream into a duct clean air stream that is at least a portion of the clean air stream and a duct waste stream that is at least a portion of the waste stream.

    摘要翻译: 公开了离心式空气分离器,包括它们的系统以及分离气体的方法。 离心式空气分离器包括分离部分,其被配置为将输入空气流分离成从分离部分的出口排出的清洁空气流和从分离部分的废物端口排出的废物流。 分离部分包括螺旋管道,并且被配置为通过管道入口端口传输作为输入空气流的至少一部分的管道输入空气流,并且至少部分地根据分子量分离管道输入空气流 所述管道输入空气流的部件进入作为所述清洁空气流的至少一部分的管道清洁空气流和作为所述废物流的至少一部分的管道废物流。

    Nanoparticulate-trapping filter for hard disk drive
    66.
    发明授权
    Nanoparticulate-trapping filter for hard disk drive 有权
    用于硬盘驱动器的纳米颗粒捕集过滤器

    公开(公告)号:US09418710B1

    公开(公告)日:2016-08-16

    申请号:US14742309

    申请日:2015-06-17

    摘要: A hard disk drive (HDD) filter assembly may include an inlet for receiving an input gas, a cyclonic particle separator configured for separating certain sized particulates from the gas, and a trap chamber for securing the particulates separated from the gas. Such a filter assembly may be designed and configured to separate and secure nanoparticulates from the input gas, such as nanoparticulates with diameters less than around 100 nm. A filter assembly may further include a desiccant chamber for controlling the humidity of the cleaned gas and a membrane for absorbing and/or adsorbing some remaining particulates from the gas before the gas enters the main chamber of the HDD.

    摘要翻译: 硬盘驱动器(HDD)过滤器组件可以包括用于接收输入气体的入口,被配置用于从气体中分离某些尺寸的颗粒的气旋颗粒分离器和用于固定与气体分离的微粒的捕集室。 这种过滤器组件可以被设计和配置成将纳米微粒与输入气体分离并固定,例如直径小于约100nm的纳米颗粒。 过滤器组件还可以包括用于控制净化气体的湿度的干燥剂室和用于在气体进入HDD的主室之前从气体吸收和/或吸附一些剩余的微粒的膜。

    LOAD FOLLOWING SINGLE BED REVERSING BLOWER ADSORPTION AIR SEPARATION SYSTEM
    69.
    发明申请
    LOAD FOLLOWING SINGLE BED REVERSING BLOWER ADSORPTION AIR SEPARATION SYSTEM 有权
    单板倒装风机吸附空气分离系统的装载

    公开(公告)号:US20160184762A1

    公开(公告)日:2016-06-30

    申请号:US14971062

    申请日:2015-12-16

    IPC分类号: B01D53/047

    摘要: An exemplary single bed reversing blower adsorption based air separation unit is configured to follow the O2 load placed thereon by adjusting flow rates therethrough and power consumption. At least one and preferably multiple pressure sensors sense O2 pressure within an O2 storage region downstream of an adsorber vessel. These sensed pressures are utilized to generate control signals controlling flow rates at locations upstream of the compressor, such as at a reversible blower and an output compressor. Control loops for the blower and the compressor are independent of each other and have different time constants. Effective following of the O2 load is thus achieved without driving the air separation unit into operational conditions outside of design and also maintaining optimal power consumption for the O2 produced, such that efficiency is maintained over a large turndown ratio.

    摘要翻译: 示例性的单床换向鼓风机吸附型空气分离单元被配置为通过调节流过其中的流量和功率消耗来跟随其上放置的O2负载。 至少一个并且优选地多个压力传感器感测吸附器容器下游的O 2存储区域内的O 2压力。 这些感测压力用于产生控制信号,该控制信号控制压缩机上游位置处的流量,例如在可逆鼓风机和输出压缩机处。 鼓风机和压缩机的控制回路彼此独立,具有不同的时间常数。 因此,无需将空气分离单元驱动到设计之外的操作条件下,并且还保持所产生的O2的最佳功率消耗,从而实现了O 2负载之后的有效跟随,使得在大的调节比下保持效率。