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    • 135. 发明申请
    • FLUID HANDLING SYSTEM
    • 流体处理系统
    • US20150299000A1
    • 2015-10-22
    • US14691832
    • 2015-04-21
    • Purewater Therapeutics, LLC
    • Mark Forrest SmithW. Mark DavisJustin Charles Smith
    • C02F1/469C02F1/00A61L2/02
    • C02F1/4691A61L2/022C02F1/001C02F1/006C02F1/008C02F1/02C02F1/444C02F9/005C02F2001/46119C02F2103/026C02F2201/008C02F2209/005C02F2303/04
    • A fluid handling system is disclosed as it may be implemented to purify water. In an example, a single-unit fluid handling system includes a stationary filter, a mobile tank, and an end effector subsystem. The stationary filter has a Capacitive Deionization (CDI) subsystem. The stationary filter also has a mix and filter subsystem, and an output subsystem. The mobile tank has a tank subsystem, and a tank liner subsystem. The system may also include a waste handling component having a waste tank subsystem. In an example, purified fluid is maintained in physical, chemical, and biological isolation from waste fluid on the same device. Although not limited in end-use, the fluid handling system may be configured to further combine the purified water with medical fluid concentrate, store the fluid, and then dispense the product, e.g., via a medical device for use in a medical treatment procedure and/or surgery.
    • 公开了一种流体处理系统,因为它可以被实现以净化水。 在一个示例中,单个单元流体处理系统包括固定过滤器,移动罐和末端执行器子系统。 固定滤波器具有电容去离子(CDI)子系统。 固定式过滤器还具有混合和过滤器子系统以及输出子系统。 移动坦克有一个坦克子系统和一个坦克班子子系统。 该系统还可以包括具有废物箱子系统的废物处理部件。 在一个实例中,纯化的流体保持在同一装置上的废物流体的物理,化学和生物隔离中。 尽管在最终用途中不受限制,流体处理系统可以被配置为进一步将净化水与医用流体浓缩物组合,储存流体,然后例如经由用于医疗处理程序的医疗装置分配产品, /或手术。
    • 136. 发明授权
    • Salt water chlorinator
    • 盐水氯化器
    • US08920615B2
    • 2014-12-30
    • US13496075
    • 2010-09-16
    • Robert Bruce DavidsonMark Andrew Lance
    • Robert Bruce DavidsonMark Andrew Lance
    • C02F1/461C02F1/46C02F1/467C02F103/42
    • C02F1/4602C02F1/46104C02F1/4674C02F2001/46119C02F2103/42C02F2209/40C02F2303/22
    • A salt water chlorinator (30) for a swimming pool includes an electrolysis cell having two anodes (98) and a cathode (94). Two scrapers (102), each of which is of titanium and includes scraping portions in the form of ribs (106) in contact with the opposite surfaces of the cathode, are reciprocated relative to the cathode (94) to remove scale deposits from the cathode (94). The scrapers (102) are mounted in a frame (110) and their scraping ribs (106) are curved such that the ribs (106) are self-biased against the cathode surfaces. A mechanism for reciprocating the scrapers (102) includes two solenoid coils (116) which act on cores (114) in a stem (112) of the frame (110). A control circuit for the electrolysis cell is contained in a housing (86) which is attached to a housing (82) for the electrolysis cell. The control circuit includes a flow sensor for sensing salt-water flow through the electrolysis cell.
    • 用于游泳池的盐水氯化器(30)包括具有两个阳极(98)和阴极(94)的电解池。 两个刮刀(102),其每一个都是钛,并且包括与阴极的相对表面接触的肋(106)形式的刮擦部分相对于阴极(94)往复运动,以从阴极(111)去除垢垢 (94)。 刮刀(102)安装在框架(110)中,并且其刮刀(106)是弯曲的,使得肋(106)相对于阴极表面自偏压。 用于使刮刀(102)往复运动的机构包括两个电磁线圈(116),其作用在框架(110)的杆(112)中的芯(114)上。 用于电解槽的控制电路包含在壳体(86)中,壳体(86)附接到用于电解槽的壳体(82)。 控制电路包括用于感测通过电解槽的盐水流动的流量传感器。
    • 138. 发明授权
    • Method and apparatus for removing impurities from a liquid
    • 从液体中除去杂质的方法和装置
    • US08431010B2
    • 2013-04-30
    • US12767583
    • 2010-04-26
    • Bruce E. Norris
    • Bruce E. Norris
    • C02F1/461
    • C02F1/46114C02F1/463C02F2001/46119C02F2001/46142C02F2201/4613
    • A method and system for purifying liquid is disclosed that includes combining powdered metal particles with the fluid to be treated. The mixture of powdered metal particles or metal and liquid to be treated is then passed through an electrolytic cell. The cell forms multivalent ions which attach to contaminants in the liquid and are subsequently separated out from the liquid using conventional solid/liquid separation techniques. The multivalent ions may also be formed from thin strips of aluminum or formed by pressing layers of powdered metallic particles together and installing in the electrolytic cell between two cathodes, the powdered metal electrode being the anode.
    • 公开了一种用于净化液体的方法和系统,其包括将粉末状金属颗粒与待处理的流体相结合。 然后将粉末状金属颗粒或金属和待处理液体的混合物通过电解槽。 细胞形成附着于液体中的污染物的多价离子,随后使用常规的固/液分离技术从液体中分离出来。 多价离子也可以由薄的铝条形成,或者通过将粉末状金属颗粒的层压在一起并且在电解池中在两个阴极之间安装,粉末状金属电极是阳极。