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    • 5. 发明申请
    • REFRIGERATOR WITH PLASMA DEVICE
    • 具有等离子体装置的制冷机
    • US20150121937A1
    • 2015-05-07
    • US14072797
    • 2013-11-06
    • Chung-Ping Lai
    • Chung-Ping Lai
    • F25D11/00F25D17/06A61L9/22
    • A61L9/22A61L2209/212A61L2209/213F25D17/042F25D2317/041
    • The refrigerator includes a thermally insulated box with a first board, a plasma device and a pipeline, all of which are embedded in the first board. The plasma device includes an atomizer with a water tank and a first fan, a plasma generator and a pipeline. The plasma generator is hermetically connected to the atomizer and has an electrode device. The electrode device includes a dielectric plate and a plurality of electrode rods embedded therein. The electrode rods are interlacedly electrically connected to an AC source. The pipeline is hermetically connected to the plasma generator and composed of an inlet section with an inlet, an outlet section with at least one outlet and a middle section communicating with the dielectric plate. The inlet is provided with a second fan.
    • 冰箱包括具有第一板,等离子体装置和管道的绝热箱,所有这些都嵌入在第一板中。 等离子体装置包括具有水箱和第一风扇,等离子体发生器和管道的雾化器。 等离子体发生器气密地连接到雾化器并具有电极装置。 电极装置包括电介质板和嵌入其中的多个电极棒。 电极棒与AC电源交错电连接。 该管道气密地连接到等离子体发生器并由具有入口的入口部分,具有至少一个出口的出口部分和与电介质板连通的中间部分组成。 入口设有第二个风扇。
    • 6. 发明申请
    • Automated KleenSan System
    • 自动KleenSan系统
    • US20140356231A1
    • 2014-12-04
    • US14293801
    • 2014-06-02
    • Emilia Rico-MunozShawn A. Johnson
    • Emilia Rico-MunozShawn A. Johnson
    • A61L2/18A61L2/02
    • A61L2/18A61L2/02A61L2/22A61L2202/23A61L2209/213
    • Systems and processes to dispense, clean and sanitize the key exposure points in the filling process to reduce risk of mold, yeast, or bacteria product spoilage, with minimal downtime. In some embodiments, a process uses a chemical solution that includes a liquid including potable water or another liquid—such as paramagnetic water, ultrapure water, R.O. water or any other kind of modified water—and a biocide solution such as sodium hypochlorite, stabilized chlorine dioxide, etc. at concentrations between 0.5 and 200 ppm or any of the components of electrochemical activated (EAC) water. In some embodiments, the water has a low enough chemical concentration to allow application without a follow-up rinse. The high ORP water at high pressure and flow removes the statically charged particles, preventing micro growth in between sprays, and effectively cleaning and sanitizing in a single step.
    • 系统和流程在灌装过程中分配,清洁和消毒关键暴露点,以减少模具,酵母或细菌产品腐败的风险,同时减少停机时间。 在一些实施方案中,方法使用包括液体的化学溶液,所述液体包括饮用水或另一种液体,例如顺磁性水,超纯水,R.O. 水或任何其他类型的改性水和杀生物剂溶液如次氯酸钠,稳定二氧化氯等,浓度为0.5-200ppm之间或电化学活化(EAC)水的任何组分。 在一些实施方案中,水具有足够低的化学浓度以允许施用而不进行后续冲洗。 高压和高流量的高ORP水除去静电荷颗粒,防止喷雾之间的微生长,并在一个步骤中有效地清洗和消毒。
    • 7. 发明授权
    • Method and apparatus for cleaning surfaces with high pressure electrolyzed fluid
    • 用高压电解液清洗表面的方法和设备
    • US08719999B2
    • 2014-05-13
    • US13275028
    • 2011-10-17
    • Bruce F. Field
    • Bruce F. Field
    • A47L7/00
    • A47L11/4011A47L11/302A47L11/4083A47L11/4088A61L2/035A61L2/186A61L2202/11A61L2209/213C02F1/4672
    • A mobile surface cleaner includes a mobile body, a least one wheel, a source of a fluid, a pump, a sprayer hose connectable to a fitting on the mobile body, a high pressure spray gun connectable to the sprayer hose, and a functional generator. The functional generator includes first and second electrode chambers, which are separated by an ion exchange membrane. A flow path extends from the fluid source to the fitting and passes through the functional generator. The flow path is configured to combine all the fluid produced in the first and second electrode chambers to form a combined fluid on the cleaner. A control circuit is coupled to the pump and the functional generator and is configured to energize the pump to pump the fluid along the flow path and energize the functional generator to electrochemically activate the liquid that is passed through the functional generator.
    • 移动表面清洁器包括移动体,至少一个轮,流体源,泵,可连接到移动体上的配件的喷雾器软管,可连接到喷雾器软管的高压喷枪,以及功能发生器 。 功能发生器包括由离子交换膜隔开的第一和第二电极室。 流路从流体源延伸到配件并通过功能发生器。 流动路径被配置为组合在第一和第二电极室中产生的所有流体,以在清洁器上形成组合流体。 控制电路耦合到泵和功能发生器,并且被配置为激励泵以沿着流动路径泵送流体并激励功能发生器以电化学地激活通过功能发生器的液体。