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    • 3. 发明授权
    • Method and system for generating hypochlorite
    • 产生次氯酸盐的方法和系统
    • US06805787B2
    • 2004-10-19
    • US09948810
    • 2001-09-07
    • James W. BessRudolf C. MatousekBrent Simmons
    • James W. BessRudolf C. MatousekBrent Simmons
    • C25B126
    • C25B15/08C02F1/4674C02F2201/46155C02F2201/4618C25B1/26
    • In a method for producing sodium hypochlorite, brine solution is piped from the brine tank to a first inlet in a first electrolyzer cell of an electrolyzer assembly while simultaneously piping chilled water from a chiller having a temperature range from about 10° C. to about 25° C. to the first inlet so that the brine solution combines with the chilled water. The chilled brine solution is electrolyzed in the first electrolyzer cell. The hypochlorite and brine solution resulting from electrolysis occurring in the first cell is piped to a second inlet in a second electrolyzer cell in the electrolyzer assembly while simultaneously piping chilled water from the chiller having a temperature range from about 10° C. to about 25° C. to the second inlet so that the chilled water combines with the hypochlorite and brine solution. Each cell can have more than one inlet, preferably up to 6 inlets. The chilled hypochlorite and brine solution are electrolyzed in the second cell. The process is repeated until the hypochlorite and brine solution passes through all cells of the electrolyzer assembly.
    • 在生产次氯酸钠的方法中,将盐水溶液从盐水槽管道输送到电解槽组件的第一电解池中的第一入口,同时将来自具有约10℃至约25℃温度范围的冷却器的冷冻水 ℃至第一入口,使得盐水溶液与冷冻水结合。 冷却的盐水溶液在第一电解池中电解。 在第一个电池中产生的电解产生的次氯酸盐和盐水溶液被管道输送到电解槽组件中的第二个电解槽中的第二个入口,同时将来自冷却器的冷冻水从大约10℃到大约25℃ C.到第二个入口,使冷冻水与次氯酸盐和盐水溶液结合。 每个电池可以具有多于一个入口,优选多达6个入口。 冷冻的次氯酸盐和盐水溶液在第二个电池中电解。 重复该过程,直到次氯酸盐和盐水溶液通过电解槽组件的所有电池。
    • 4. 发明申请
    • Method and system for producing a disinfecting solution
    • 消毒液生产方法及系统
    • US20050084411A1
    • 2005-04-21
    • US10690375
    • 2003-10-21
    • Harold ChildersRudolf MatousekBrent Simmons
    • Harold ChildersRudolf MatousekBrent Simmons
    • A61L2/18C02F1/68C02F1/76
    • C02F1/76C02F1/687C02F2209/29
    • A method and system of producing a disinfecting solution comprising directing feed water at a predetermined flow rate into a dosing storage tank; circulating the feed water from the dosing storage tank through one or more disinfectant containers and back into the dosing storage tank. Preferably, a disinfectant within the one or more disinfectant containers comprise dissolve characteristics to form a disinfecting solution when dissolved in the feed water. The flow rate of feed water directed into the dosing storage tank and circulated through out the disinfecting is predetermined and controlled to match the dissolve characteristics of the disinfectant within one or more disinfectant containers. Controlling the amount of feed water maintains a substantially consistent concentration of disinfecting solution throughout the dosing storage tank.
    • 一种生产消毒溶液的方法和系统,包括将预定流量的给水定向到定量储存罐中; 将来自定量储存罐的给水循环通过一个或多个消毒容器并返回到定量储存罐中。 优选地,一种或多种消毒剂容器内的消毒剂包含溶解特性以在溶解在给水中时形成消毒溶液。 预定和控制引导到定量储存罐中并进行消毒循环的给水的流量,使之与一个或多个消毒剂容器内的消毒剂的溶解特性相匹配。 控制进料水的量在整个计量储存罐中保持基本一致的消毒溶液浓度。
    • 5. 发明授权
    • Reservoir management system
    • 水库管理系统
    • US06818124B1
    • 2004-11-16
    • US09951183
    • 2001-09-13
    • Brent Simmons
    • Brent Simmons
    • C02F100
    • C02F1/686C02F1/76C02F2209/00F17C3/02F17C3/10
    • A system, method, and apparatus for managing a water supply in a water tank are presented herein. A submersible pump is placed inside the water tank. The thrust of the pump causes a considerable increase in water circulation about the water tank, thereby resulting in a more consistent water supply. Chemical disinfectants are added directly in front of the pump, thereby resulting in better mixing. Additionally an outlet from the pump provides a testable sample for measurement of the concentration of the chemical disinfectant. The measurements of the concentration of the chemical disinfectant are provided to a programmable logic controller which makes real time adjustments to the chemical disinfectants that are added.
    • 本文提供了一种用于管理水箱中的供水的系统,方法和装置。 潜水泵放置在水箱内。 泵的推力导致水箱周围水循环的显着增加,从而导致更一致的供水。 化学消毒剂直接加入泵的前面,从而形成更好的混合。 此外,泵的出口提供了可测试的样品,用于测量化学消毒剂的浓度。 将化学消毒剂的浓度测量值提供给可编程逻辑控制器,可对添加的化学消毒剂进行实时调整。
    • 6. 发明授权
    • Chiller tank system and method for chilling liquids
    • 冷水箱系统和冷却液体的方法
    • US06477855B1
    • 2002-11-12
    • US10134857
    • 2002-04-29
    • David G. FindleyBrent Simmons
    • David G. FindleyBrent Simmons
    • F25D1702
    • F25D31/003C02F1/686C02F1/76C02F2209/00F17C3/02F17C3/10F25D15/00
    • A chiller tank system for containment of chilled liquids comprises a first tank and a second tank position within the first tank. The first tank is spaced apart from the second tank so that insulation material can be positioned between them The second tank defines a chamber for receiving the liquid to be chilled. A straight-lined, chiller barrel is positioned vertically within the chamber, the chiller barrel defining a bore connected to a flexible, dual hose. The straight-lined chiller barrel extends downward into the tank thereby evenly chilling the liquid to avoid thermal stratification that causes vaporization by creating warm spots within the liquid. A refrigeration unit supplies inert refrigerant to the tank. The dual hose circulates refrigerant between the refrigeration unit and the chiller barrel, the dual hose comprising an inner hose within an outer hose, the outer hose concentric to and spaced apart from the inner hose thereby creating two channels, one for transporting the refrigerant to the chiller barrel and the other for transporting the refrigerant away from the chiller barrel.
    • 用于容纳冷冻液体的冷却箱系统包括在第一罐内的第一罐和第二罐位置。 第一个储罐与第二个储罐隔开,以便绝缘材料可以位于它们之间。第二个罐限定一个容纳待冷却液体的室。 直排式制冷机筒垂直放置在室内,冷水机筒限定了连接到柔性双软管的孔。 直线冷却器筒向下延伸到罐中,从而均匀地冷却液体,以避免热分层,通过在液体内产生温热点而引起汽化。 制冷单元向罐提供惰性制冷剂。 双软管在制冷单元和冷却器筒之间循环制冷剂,双软管包括外软管内的内软管,外软管与内软管同心并间隔开,从而形成两个通道,一个用于将制冷剂输送到 冷却器桶,另一个用于将制冷剂从冷却器筒输送。