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    • 4. 发明申请
    • METHODS FOR AUTHENTICATION AND IDENTIFICATION OF PETROLEUM PRODUCTS
    • 石油产品认证和鉴定方法
    • US20160187314A1
    • 2016-06-30
    • US14976708
    • 2015-12-21
    • Michael L. BlumenfeldJames T. CareyGary ChristensenThomas G. Dietz
    • Michael L. BlumenfeldJames T. CareyGary ChristensenThomas G. Dietz
    • G01N33/28
    • G01N33/2882
    • A method is provided that associates a taggant with a product to produce a signature product. The taggant, when associated with the signature product, is visually undetectable; and comprises one or more amide compounds (e.g., a taggant array that comprises two or more amide compounds). The method also identifies the taggant in the signature product by an immunoassay specific for the taggant; maps the taggant of the signature product to a batch code of the signature product; obtains a test product to determine authenticity or identity of the test product; identifies the presence or absence of a taggant in the test product by an immunoassay specific for the taggant; and compares results of the immunoassay carried out on the test product with results of the immunoassay carried out on the signature product to determine authenticity or identity of the test product. Lubricating engine oils are provided containing the taggant.
    • 提供了一种将标签牌与产品相关联以产生签名产品的方法。 当与签名产品相关联时,标签牌在视觉上不可检测; 并且包含一种或多种酰胺化合物(例如,包含两种或更多种酰胺化合物的标记剂阵列)。 该方法还通过特定于标签者的免疫测定来鉴定签名产品中的标记物; 将签名产品的标签牌映射到签名产品的批次代码; 获得测试产品以确定测试产品的真实性或身份; 通过特定于标签牌的免疫测定来鉴定测试产品中标签牌的存在或不存在; 并将测试产品上进行的免疫测定结果与在签名产品上进行免疫测定的结果进行比较,以确定测试产品的真实性或身份。 提供含有标签牌的润滑发动机油。
    • 5. 发明申请
    • ANALYTICAL METHOD FOR DETECTING FUEL MARKERS
    • 用于检测燃油标记的分析方法
    • US20160178602A1
    • 2016-06-23
    • US14787521
    • 2014-05-02
    • DOW GLOBAL TECHNOLOGIES LLCROHM AND HAAS COMPANY
    • Ronda L. GrasJim C. LuongWarren E. Smith
    • G01N33/28G01N30/46
    • G01N33/2882C10L1/003G01N30/468G01N2030/047G01N2030/8854
    • A gas chromatographic method for detecting a first marker and a second marker in a fuel in two channels: (i) a first capillary column coated with polysiloxane and a second capillary column coated with polyethylene glycol; and (ii) a third capillary column coated with polymethylphenylsiloxane and a fourth deactivated capillary column. The steps are: (a) introducing a first sample into the first column to produce a first effluent; (b) introducing only a portion of the first effluent into the second column to produce a second effluent; (c) allowing the second effluent to pass through a mass spectrometer; (d) introducing a second sample into the third column to produce a third effluent; (e) introducing only a portion of the third effluent into the fourth column to produce a fourth effluent; (f) allowing the fourth effluent to pass through a mass spectrometer.
    • 一种用于在两个通道中检测燃料中的第一标记和第二标记的气相色谱法:(i)涂覆有聚硅氧烷的第一毛细管柱和涂有聚乙二醇的第二毛细管柱; 和(ii)涂覆有聚甲基苯基硅氧烷的第三毛细管柱和第四失活毛细管柱。 步骤是:(a)将第一样品引入第一塔以产生第一流出物; (b)仅将一部分第一流出物引入第二塔以产生第二流出物; (c)允许第二流出物通过质谱仪; (d)将第二样品引入第三塔以产生第三流出物; (e)仅将一部分第三流出物引入第四塔以产生第四流出物; (f)允许第四流出物通过质谱仪。
    • 6. 发明授权
    • Sensor system for fuel transport vehicle
    • 燃油运输车辆传感器系统
    • US09291609B2
    • 2016-03-22
    • US13787430
    • 2013-03-06
    • UT-Battelle, LLC
    • Dennis Duncan EarlTimothy J. McIntyreDavid L. West
    • G01N33/22C10L1/00G01N33/28
    • G01N33/22C10L1/003G01N33/2882
    • An exemplary sensor system for a fuel transport vehicle can comprise a fuel marker sensor positioned between a fuel storage chamber of the vehicle and an access valve for the fuel storage chamber of the vehicle. The fuel marker sensor can be configured to measure one or more characteristics of one or more fuel markers present in the fuel adjacent the sensor, such as when the marked fuel is unloaded at a retail station. The one or more characteristics can comprise concentration and/or identity of the one or more fuel markers in the fuel. Based on the measured characteristics of the one or more fuel markers, the sensor system can identify the fuel and/or can determine whether the fuel has been adulterated after the marked fuel was last measured, such as when the marked fuel was loaded into the vehicle.
    • 用于燃料运输车辆的示例性传感器系统可以包括位于车辆的燃料存储室和用于车辆的燃料储存室的进入阀之间的燃料标记传感器。 燃料标记传感器可以被配置成测量存在于邻近传感器的燃料中的一个或多个燃料标记的一个或多个特性,例如当标记的燃料在零售站卸载时。 一个或多个特征可以包括燃料中的一个或多个燃料标记物的浓度和/或身份。 基于一个或多个燃料标记的测量特性,传感器系统可以识别燃料和/或可以确定在最后测量标记的燃料之后燃料是否被掺杂,例如当标记的燃料被加载到车辆中时 。
    • 8. 发明授权
    • Method and apparatus for measuring fluorescence in liquids
    • 用于测量液体荧光的方法和装置
    • US08906698B2
    • 2014-12-09
    • US13147519
    • 2010-02-02
    • Vincent Brian CroudDuncan William John McCallienIan Stuart Edworthy
    • Vincent Brian CroudDuncan William John McCallienIan Stuart Edworthy
    • G01N21/76G01N33/28G01N21/64
    • G01N21/643G01N33/2882G01N2021/6432
    • A method of measuring the fluorescence of a fluorescent marker compound dissolved or dispersed in a bulk material includes: (a) measuring a characteristic of the fluorescence of a mixture of said bulk material and said fluorescent marker compound; (b) quenching the fluorescence of the fluorescent marker compound to produce a quenched mixture; (c) measuring the characteristic of the fluorescence of the quenched mixture; (d) comparing the fluorescent characteristic of the mixture with the fluorescent characteristic of the quenched mixture; and (e) correcting the measured fluorescent emission characteristic for the effects of the absorbance of the bulk material. The measurement may be further corrected to account for the absorbance of the material which is also known to have an effect on the measured fluorescence. A method of tagging and identifying a bulk material with a fluorescent marker compound, and an apparatus for carrying out the methods are also described.
    • 溶解或分散在散装材料中的荧光标记化合物的荧光测量方法包括:(a)测量所述散装材料和所述荧光标记化合物的混合物的荧光特性; (b)淬灭荧光标记化合物的荧光以产生淬灭的混合物; (c)测量淬火混合物的荧光特性; (d)将混合物的荧光特性与骤冷混合物的荧光特性进行比较; 和(e)校正测量的荧光发射特性以获得散装材料的吸光度的影响。 可以进一步校正测量以考虑材料的吸光度,其也已知对测量的荧光具有影响。 还描述了用荧光标记化合物标记和鉴定散装材料的方法,以及用于实施方法的装置。
    • 10. 发明申请
    • SENSOR SYSTEM FOR FUEL TRANSPORT VEHICLE
    • 燃油运输车辆传感器系统
    • US20130283893A1
    • 2013-10-31
    • US13787430
    • 2013-03-06
    • UT-BATTELLE, LLC
    • Dennis Duncan EarlTimothy J. McIntyreDavid L. West
    • G01N33/22
    • G01N33/22C10L1/003G01N33/2882
    • An exemplary sensor system for a fuel transport vehicle can comprise a fuel marker sensor positioned between a fuel storage chamber of the vehicle and an access valve for the fuel storage chamber of the vehicle. The fuel marker sensor can be configured to measure one or more characteristics of one or more fuel markers present in the fuel adjacent the sensor, such as when the marked fuel is unloaded at a retail station. The one or more characteristics can comprise concentration and/or identity of the one or more fuel markers in the fuel. Based on the measured characteristics of the one or more fuel markers, the sensor system can identify the fuel and/or can determine whether the fuel has been adulterated after the marked fuel was last measured, such as when the marked fuel was loaded into the vehicle.
    • 用于燃料运输车辆的示例性传感器系统可以包括位于车辆的燃料存储室和用于车辆的燃料储存室的进入阀之间的燃料标记传感器。 燃料标记传感器可以被配置成测量存在于邻近传感器的燃料中的一个或多个燃料标记的一个或多个特性,例如当标记的燃料在零售站卸载时。 一个或多个特征可以包括燃料中的一个或多个燃料标记物的浓度和/或身份。 基于一个或多个燃料标记的测量特性,传感器系统可以识别燃料和/或可以确定在最后测量标记的燃料之后燃料是否被掺杂,例如当标记的燃料被加载到车辆中时 。