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    • 43. 发明申请
    • DETECTION OF VOLATILE CHEMICALS USING AN RFID SENSING SYSTEM
    • 使用RFID感应系统检测挥发性化学物质
    • US20170030843A1
    • 2017-02-02
    • US15289714
    • 2016-10-10
    • Empire Technology Development LLC
    • David Max Roundhill
    • G01N22/00G01N33/00
    • G01N22/00G01N27/025G01N27/122G01N27/416G01N33/0042G01N33/0044G01N33/0075
    • Methods, systems, and apparatuses, including computer programs encoded on computer-readable media, for monitoring volatile chemicals. A system includes an radio-frequency identification (RFID) tag composed of a patterned metal. The patterned metal is configured to absorb a volatile chemical. The RFID tag includes a non-volatile memory configured to store identification data. The RFID tag also includes a receiver that receives a signal at a frequency in a frequency range. The frequency is based upon an amount of the volatile chemical absorbed in the patterned metal. A transmitter of the RFID tag transmits the identification data in response to receiving the signal. The strength of the transmitted identification data is based upon an amount of the absorbed volatile chemical.
    • 方法,系统和装置,包括在计算机可读介质上编码的用于监测挥发性化学物质的计算机程序。 一种系统包括由图案化金属组成的射频识别(RFID)标签。 图案化金属构造成吸收挥发性化学物质。 RFID标签包括被配置为存储识别数据的非易失性存储器。 RFID标签还包括接收频率范围内的频率信号的接收机。 频率基于在图案化金属中吸收的挥发性化学物质的量。 RFID标签的发射器响应于接收到信号而发送识别数据。 所发送的识别数据的强度基于吸收的挥发性化学物质的量。
    • 50. 发明授权
    • Sampling container for collection of fluids
    • 用于收集流体的取样容器
    • US09005528B2
    • 2015-04-14
    • US13419925
    • 2012-03-14
    • Todd ColemanCorben RiceDennis Coleman
    • Todd ColemanCorben RiceDennis Coleman
    • G01N1/22G01N1/40G01N31/22G01N33/00
    • G01N1/2214G01N1/22G01N1/2205G01N1/4044G01N31/224G01N33/0044Y10T436/184
    • A method and apparatus for the collection, transportation and analysis of gas samples which may be required in various scientific, environmental and natural resource contexts is provided. The apparatus comprises a sampling container assembly for sampling a fluid. The container assembly comprises a body defining a sampling chamber having a first end and a second end, a first valve assembly fluidly coupled with the first end and a reactant material positioned within the sampling chamber for reacting with the fluid. After collection of the sample in the sampling container assembly, hazardous fluids are converted to non-hazardous materials that can be transported without additional hazardous material restraints. Further, the flow through design of the sampling container assembly allows for the collection of gases such as H2S at low concentrations by flowing the gas over the reactant materials for longer periods of time.
    • 提供了在各种科学,环境和自然资源环境中可能需要的用于采集,运输和分析气体样品的方法和装置。 该装置包括用于对流体进行取样的取样容器组件。 容器组件包括限定具有第一端和第二端的采样室的主体,与第一端流体连接的第一阀组件和位于采样室内的反应物料,用于与流体反应。 在采样容器组件中收集样品后,有害流体将转化为无危险物质,无需额外的危险物质限制即可运输。 此外,通过设计采样容器组件的流动允许通过使气体在反应物材料上流动较长时间来以低浓度收集诸如H 2 S的气体。