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    • 2. 发明授权
    • Method and apparatus for analyzing vapors generated from explosives
    • 分析爆炸物产生的蒸气的方法和装置
    • US06770877B2
    • 2004-08-03
    • US10457426
    • 2003-06-10
    • Toshihiko OhtaKenji KusumotoYasuaki TakadaHisashi Nagano
    • Toshihiko OhtaKenji KusumotoYasuaki TakadaHisashi Nagano
    • H01J4910
    • H01J49/145
    • A method and apparatus for analyzing vapors generated from explosives in which vapors containing nitrogen monoxide and/or nitrogen dioxide are generated by decomposing explosives by increasing the temperature of the explosives, primary ions and neutral molecules are generated from air. The generated primary ions and the nitrogen monoxide and/or nitrogen dioxide contained in the generated vapors are allowed to react with each other in an area inhibited or prevented from being penetrated by the generated neutral molecules, and the nitrogen monoxide and/or nitrogen dioxide contained in the generated vapors is ionized. The ionized nitrogen monoxide and/or nitrogen dioxide is subjected to mass spectrometry, and an amount of the nitrogen monoxide and/or nitrogen dioxide contained in the generated vapors by decomposing the explosives is determined.
    • 用于分析由爆炸物产生的蒸汽的方法和装置,其中通过从空气中产生爆炸物,初级离子和中性分子的温度来分解包含一氧化氮和/或二氧化氮的蒸气而产生的蒸气。 产生的初级离子和产生的蒸气中含有的一氧化氮和/或二氧化氮在被产生的中性分子渗透的区域中彼此反应,并且含有一氧化氮和/或二氧化氮 在产生的蒸气中电离。 对离子化的一氧化氮和/或二氧化氮进行质谱分析,并确定通过分解爆炸物而产生的蒸汽中所含的一氧化氮和/或二氧化氮的量。
    • 6. 发明授权
    • Mass analyzer and mass analyzing method
    • 质量分析仪和质量分析方法
    • US08164053B2
    • 2012-04-24
    • US12039306
    • 2008-02-28
    • Masuyuki SugiyamaYuichiro HashimotoHideki HasegawaYasuaki Takada
    • Masuyuki SugiyamaYuichiro HashimotoHideki HasegawaYasuaki Takada
    • B01D59/44
    • H01J49/0045
    • There has been a problem that both detection sensitivity and throughput cannot be improved simultaneously by a conventional MS/MS analysis method.A mass analyzer having an ion trap for ejecting ions in a specific mass range, a collisional dissociation part for causing ions ejected from the ion trap to be dissociated, a mass analyzing part for performing a mass analysis of ions ejected from the collisional dissociation part, and a control part including a list in which measurement conditions for each ion are stored selectively resonance-ejects ions introduced into and accumulated in the ion trap based on masses. A scanning operation is a repetition of an operation of ejecting specific precursor ions in a direction of the collisional dissociation part and an operation of ejecting nothing, and each ion can be measured under optimal measurement conditions by controlling an output voltage of each part with reference to list information, realizing a mass analyzer that can perform an MS/MS measurement with high throughput and high sensitivity.
    • 存在通过常规MS / MS分析方法不能同时改善检测灵敏度和通过量的问题。 1.一种质量分析装置,具有用于将特定质量范围的离子排出的离子阱,用于使从离子阱排出的离子离解的碰撞解离部,用于进行从碰撞解离部喷出的离子的质量分析的质量分析部, 以及包括其中存储每个离子的测量条件的列表的控制部分选择性地基于质量共振 - 喷射引入和积聚在离子阱中的离子。 扫描操作是重复在碰撞解离部分的方向上排出特定的前体离子的操作和不喷射的操作,并且可以在最佳测量条件下测量每个离子,通过参考每个部分的输出电压 列表信息,实现能够以高吞吐量和高灵敏度执行MS / MS测量的质量分析器。
    • 7. 发明申请
    • ADHERING MATTER INSPECTION EQUIPMENT AND METHOD FOR INSPECTING ADHERING MATTER
    • 加装检验设备及检查附件的方法
    • US20110278469A1
    • 2011-11-17
    • US13189812
    • 2011-07-25
    • Hideo KASHIMAYasuaki TakadaIzumi Waki
    • Hideo KASHIMAYasuaki TakadaIzumi Waki
    • G01N21/01
    • G01N1/2205G01N1/4022G01N2001/028G01N2001/4027
    • A technology for collecting a granular substance adhering to a baggage with high rate without touching the substance and inspecting whether a dangerous or specific sample material is adhered to the baggage. A method for simplifying or automating such an inspection is also provided. An adhering matter inspection equipment (1) is characterized in that the equipment comprises a collecting section (5) for collecting a sample material peeled off from an inspection object (25) whereupon the sample material is adhered by blowing compression gas through a capturing filter (52), and an inspecting section (2) for analyzing the sample material captured by the capturing filter (52), and further characterized in that the inspection equipment comprises a section (3) for delivering a baggage to the inspecting section (2), and a carrying section (4) for carrying the capturing filter (52) from the capturing section (5) to the inspecting section (2).
    • 一种用于以高速率收集附着在行李上的颗粒物质而不接触物质并检查是否将危险的或具体的样品材料粘附在行李上的技术。 还提供了一种用于简化或自动化这种检查的方法。 附着物检查设备(1)的特征在于,该设备包括:收集部分(5),用于收集从检查对象(25)剥离的样品材料,然后通过吹扫压缩气体通过捕获过滤器( 52)和用于分析由捕获过滤器(52)捕获的样品材料的检查部(2),其特征还在于,所述检查设备包括用于将行李传送到检查部(2)的部分(3) 以及用于将捕获过滤器(52)从捕获部分(5)运送到检查部分(2)的运送部分(4)。
    • 9. 发明申请
    • ANALYTICAL INSTRUMENT
    • 分析仪器
    • US20090065688A1
    • 2009-03-12
    • US12037148
    • 2008-02-26
    • Yuichiro HashimotoHideki HasegawaMasuyuki SugiyamaYasuaki Takada
    • Yuichiro HashimotoHideki HasegawaMasuyuki SugiyamaYasuaki Takada
    • B01D59/44
    • H01J49/0036
    • The present invention achieves accurate quantitative determination without reducing measurement throughput and also without having to add a multi-component reference standard. An analytical instrument of the present invention for determining the concentration of a target compound contained in a target sample includes: a means for ionizing a mixture having a specific compound added to the target sample; a means for performing mass analysis on resulting ions; and a database that stores dependence of signal intensity on the concentration of a specific matrix component for each of the target compound and the addition compound, wherein the database is used to calibrate the concentration of the target compound from a signal derived from the target compound and a signal derived from the addition compound, each signal obtained by the mass analysis means. The present invention achieves a multi-component analyzer using low-cost, high-throughput mass analysis, as compared to conventional technique.
    • 本发明可以在不降低测量吞吐量的情况下实现准确的定量测定,而且不必添加多组分参考标准。 本发明的用于测定目标样品中包含的目标化合物浓度的分析仪包括:将具有特定化合物的混合物电离于目标样品的装置; 对所得离子进行质量分析的手段; 以及数据库,其存储信号强度对于每种目标化合物和加成化合物的特定基质成分的浓度的依赖性,其中所述数据库用于从源自目标化合物的信号校准目标化合物的浓度,以及 来自加成化合物的信号,通过质量分析装置得到的各信号。 与现有技术相比,本发明实现了使用低成本,高吞吐量质量分析的多分量分析仪。