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    • 82. 发明申请
    • Biocidal Purification Device
    • 杀菌净化装置
    • US20160107904A1
    • 2016-04-21
    • US14889603
    • 2014-04-24
    • MERCK PATENT GMBH
    • Pascal RajagopalanJulien GrossIchiro KanoYves GaignetJulien Bole
    • C02F1/32
    • C02F1/325C02F2103/026C02F2201/3221C02F2201/3222C02F2201/3228C02F2201/326C02F2209/005C02F2303/04C02F2307/02
    • A biocidal fluid purification cap (2) for a fluid container (1), preferably one storing purified water for use in laboratory environments and especially purified water for cell culture and water for molecular biology. The purification cap (2) includes a cap body (3) including an engagement feature (20) for removably attaching the cap body (3) to a mating engagement feature on a spout of the fluid container (1) to hermetically close a spout opening, at least one LED (7a) adapted to emit light in the UV-C range, electronic circuitry (15) for driving the LED(s) (7a), and a power supply for the electronic circuitry (15). The LED(s) (7a) is/are arranged in said cap body (3) so as to be separated from the environment by an UV-transparent window (6) provided in the cap body (3) such that light emitted from said LED(s) (7a) enters the opening of the spout when the cap (2) is attached to the spout of the container (1).
    • 一种用于流体容器(1)的杀生物流体净化帽(2),优选地存储用于实验室环境中的纯净水,特别是用于细胞培养的纯化水和用于分子生物学的水。 净化盖(2)包括盖主体(3),其包括用于将盖体(3)可移除地附接到流体容器(1)的喷口上的配合接合特征的接合特征(20),以密封地关闭喷口 ,适于在UV-C范围内发光的至少一个LED(7a),用于驱动LED(7a)的电子电路(15)和用于电子电路(15)的电源。 LED(7a)被布置在所述盖体(3)中,以便通过设置在盖主体(3)中的UV透明窗(6)与环境分离,使得从所述盖体 当帽(2)附接到容器(1)的喷口时,LED(7a)进入喷口的开口。
    • 84. 发明申请
    • Ultraviolet Disinfection Apparatus and Disinfection Method
    • 紫外线消毒装置及消毒方法
    • US20150284266A1
    • 2015-10-08
    • US14436696
    • 2013-10-24
    • TOKUYAMA CORPORATION
    • Shingo Matsui
    • C02F1/32A61L2/10
    • C02F1/325A61L2/10C02F2201/3222C02F2201/3227C02F2201/3228
    • Provided is an ultraviolet sterilizer which uses as a light source a deep ultraviolet light-emitting diode which has low power consumption and long life compared to mercury lamps, wherein this compact and easily maintainable sterilizer is capable of irradiating a body to be sterilized with high-intensity deep ultraviolet light for efficient sterilization. This ultraviolet sterilizer sterilizes by irradiating deep ultraviolet light onto the body to be sterilized which flows through a flow path (140) having the periphery composed of a UV-transparent material, wherein units (130) are formed and arranged on the periphery of the light path, said units comprising a light source, which comprises multiple ultraviolet light-emitting elements arranged and formed into a module (110), and a condenser (120), which condenses deep ultraviolet light emitted from the ultraviolet light-emitting elements in the module, and the body to be sterilized is irradiated with deep ultraviolet light condensed by the condensers.
    • 本发明提供一种紫外线消毒器,其与水银灯相比,具有低功耗,寿命长的深紫外线发光二极管作为光源,其中,该紧凑且容易维护的灭菌器能够高效地照射待消毒的身体, 强度深紫外线有效灭菌。 该紫外线消毒器通过将深紫外光照射到流过具有紫外线透明材料的周边的流路(140)的被灭菌体上进行灭菌,其中,单元(130)形成并配置在光的周边 所述单元包括光源,所述光源包括布置和形成为模块(110)的多个紫外发光元件,以及冷凝器(120),其将从所述模块中的紫外发光元件发射的深紫外光 并且被灭菌的身体照射由冷凝器冷凝的深紫外光。
    • 85. 发明授权
    • Electricity-less water disinfection
    • 无电水消毒
    • US09150434B2
    • 2015-10-06
    • US13673520
    • 2012-11-09
    • International Business Machines Corporation
    • Anirban BasuStephen W. BedellDevendra K. Sadana
    • C02F1/32A61L2/00A61L9/00
    • C02F1/325A61L2/00A61L9/00C02F2201/009C02F2201/3222C02F2201/3227C02F2303/04C02F2307/02C02F2307/04Y02A20/212
    • Disinfecting a sample of water includes generating a current using an array of photovoltaic cells, using the current to power an array of light emitting diodes, wherein the array of light emitting diodes emits a germicidal wavelength of radiation, and exposing the sample of water to the radiation. Another method for disinfecting a sample of water includes placing the sample of water within a container, wherein the container includes an array of photovoltaic cells encircling an exterior wall of the container and an array of light emitting diodes encircling an interior wall of the container, placing the container in a location exposed to solar radiation, converting the solar radiation to a current using the array of photovoltaic cells, and powering the array of light emitting diodes using the current, wherein the array of light emitting diodes emits a germicidal wavelength of radiation sufficient to disinfect the sample of water.
    • 消毒水样包括使用光伏电池阵列产生电流,使用电流为发光二极管阵列供电,其中发光二极管阵列发射杀菌波长的辐射,并将水样品暴露于 辐射。 用于对水样品进行消毒的另一种方法包括将水样品放置在容器内,其中容器包括围绕容器外壁的光伏电池阵列和环绕容器内壁的发光二极管阵列,放置 所述容器处于暴露于太阳辐射的位置,使用所述光伏电池阵列将所述太阳辐射转换成电流,以及使用所述电流对所述发光二极管阵列供电,其中所述发光二极管阵列发射足够的辐射的杀菌波长 对水样进行消毒。
    • 89. 发明授权
    • UV irradiation apparatus
    • 紫外线照射装置
    • US08970125B2
    • 2015-03-03
    • US13512589
    • 2009-12-02
    • Tsuyoshi InuiHideo Kado
    • Tsuyoshi InuiHideo Kado
    • H05B41/36B41F23/04B41J11/00H01L25/075C02F1/32H01L25/16
    • B41J11/002B41F23/0409B41F23/0453C02F1/325C02F2201/3222C02F2201/326H01L25/0753H01L25/167H01L2924/0002H01L2924/00
    • In a memory unit 6, there is stored a correction table for each candidate value of an output set value of each of LED units 2. If UV rays have ever been emitted so far by the LED units 2, each of which is formed of a plurality of LED chips 8, then a PLC 5 acquires, upon setting of a output set value by an operation unit 53, a correction value corresponding to a cumulative emission time up to a previous emission, from the correction table of the output set value. Thereafter, the PLC 5 sets the magnitude of the power supplied to each of the LED units 2 using the acquired correction value. If an output set value different from a previous output set value is set, the PLC 5 obtains the correction value starting from the cumulative emission time upon modification. As a result, the UV irradiation apparatus enables power consumption necessary for emission of UV rays to be reduced, and UV ray output to be kept constant regardless of the cumulative emission time, even if the output set value is modified.
    • 在存储器单元6中存储有用于每个LED单元2的输出设定值的每个候选值的校正表。如果LED单元2迄今已经发射了紫外线,每个LED单元2由 多个LED芯片8,则PLC5从输出设定值的校正表中获取通过操作单元53设置输出设定值的与累积发射时间相对应的校正值。 此后,PLC5使用所获取的校正值来设定提供给每个LED单元2的功率的大小。 如果设定与先前的输出设定值不同的输出设定值,则PLC5从变更后的累积发光时间求出修正值。 结果,即使输出设定值被修改,紫外线照射装置能够降低紫外线的发射所需的功率消耗,并且使紫外线输出保持恒定,而与累积发光时间无关。