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    • 22. 发明申请
    • MONITORING A COATING APPLIED TO A METAL SURFACE
    • 监测适用于金属表面的涂料
    • US20080305244A1
    • 2008-12-11
    • US11760029
    • 2007-06-08
    • Ji CuiRodney H. Banks
    • Ji CuiRodney H. Banks
    • C23C16/52
    • B05D5/06B05D7/14G01B11/0658G01N21/643G01N21/8422G01N21/91G01N2021/646G01N2021/8416G01N2021/8427
    • A method of monitoring a coating applied to a metal surface is disclosed. Specifically, the method comprises the following: applying a sol composition to a metal surface, wherein said composition contains one or more alkoxysilyl group containing compounds, a fluorophore, and a solvent; forming a gelled coating on said surface from said composition; measuring the fluorescence of said coating with a fluorometer, wherein said fluorometer is capable of measuring reflective fluorescence emission measurements; correlating the fluorescence of said coating with the thickness or weight of said coating, and/or with the concentration of alkoxysilyl group containing compound in the coating composition; and optionally applying an additional coating to said metal surface when the thickness of the coating is less than a desired amount or adjusting the concentration of the alkoxysilyl group containing compound applied to said surface.
    • 公开了一种监测施加到金属表面的涂层的方法。 具体地说,该方法包括以下步骤:将溶胶组合物施加到金属表面,其中所述组合物含有一种或多种含有烷氧基甲硅烷基的化合物,荧光团和溶剂; 在所述表面上从所述组合物形成凝胶涂层; 用荧光计测量所述涂层的荧光,其中所述荧光计能够测量反射荧光发射测量; 将所述涂层的荧光与所述涂层的厚度或重量相关,和/或与涂料组合物中含烷氧基甲硅烷基的化合物的浓度相关; 并且当涂层的厚度小于所需量或调节施加到所述表面的含烷氧基甲硅烷基的化合物的浓度时,任选地向所述金属表面施加另外的涂层。
    • 24. 发明授权
    • System and method to monitor for fouling
    • 监测污染的系统和方法
    • US6023070A
    • 2000-02-08
    • US55134
    • 1998-04-03
    • Robert L. WetegroveRodney H. Banks
    • Robert L. WetegroveRodney H. Banks
    • G01N21/53G01N5/00
    • G01N21/532
    • A system and a method for monitoring fouling in a fluid stream are provided. A light source generates a light path directed to two distinct portions of a fluid stream, one of which includes a translucent conduit. The conduit experiences fouling on the walls thereof. The light directed towards the conduit is absorbed or scattered to a varying degree as a function of foulant thickness and composition and the wavelength of the light employed. A comparison of foulant contained in the fluid itself may be compared to the foulant in the conduit, and a signal representative thereof can be generated. As a result, dosage of agents added to the fluid stream to control the foulant in the system may be controlled.
    • 提供了一种用于监测流体流中的结垢的系统和方法。 光源产生指向流体流的两个不同部分的光路,其中之一包括半透明导管。 导管在其壁上经历污垢。 指向导管的光作为污垢厚度和组成以及所用光的波长的函数被吸收或散射到不同程度。 可以将流体本身中包含的污垢物与导管中的污垢进行比较,并且可以产生其代表的信号。 因此,可以控制添加到流体流中以控制系统中污垢的剂量。
    • 28. 发明授权
    • Interchangeable tip-open cell fluorometer
    • 可互换尖端开细胞荧光计
    • US07095500B2
    • 2006-08-22
    • US10769631
    • 2004-01-30
    • Rodney H. Banks
    • Rodney H. Banks
    • G01N21/64
    • G01N21/645G01N33/18G01N2021/157G01N2021/6482G01N2201/0221G01N2201/024G01N2201/062G01N2201/064
    • Described and claimed is an interchangeable tip-open cell fluorometer comprising a housing and a fluorometric probe tip interchangeably connected to the housing, the probe tip including a probe tip housing defining an open cell and enclosing a probe optical arrangement, the probe optical arrangement including an excitation source and a fluorescence detector wherein the excitation source is aimed directly into the fluorescence detector such that a sample can be fluorometrically detected. Also claimed is a method of using this interchangeable tip-open cell fluorometer for detecting fluorescent signals emitted by one or more fluorophores from samples from a natural or industrial water system. The fluorometer, when coupled with a controller, is capable of monitoring and optionally controlling an industrial process or system.
    • 描述和要求保护的是可互换的尖端开孔单元荧光计,其包括壳体和可互换地连接到壳体的荧光探针尖端,探针尖端包括限定开放单元并包围探针光学布置的探针尖端壳体,探针光学布置包括 激发源和荧光检测器,其中激发源直接瞄准荧光检测器,使得样品可被荧光测量。 还要求保护的是使用这种可互换的尖端开放式荧光计来从天然或工业水系统的样品中检测由一种或多种荧光团发射的荧光信号的方法。 当与控制器耦合时,荧光计能够监测和可选地控制工业过程或系统。
    • 30. 发明授权
    • Monitoring of rolling oil emulsions
    • 轧制油乳液的监测
    • US5919707A
    • 1999-07-06
    • US884605
    • 1997-06-27
    • Rodney H. BanksCharles C. Payne
    • Rodney H. BanksCharles C. Payne
    • G01N21/49G01N21/27
    • G01N21/49
    • The concentration of the active ingredient in a rolling oil emulsion can be rapidly determined, and correction of the concentration of the active ingredient can be undertaken by measuring the measuring the amount of light reflected from the emulsion at the peak absorbing wavelength of the dye to obtain a first reflectance value and measuring the amount of light reflected from said emulsion at a wavelength other than the peak absorbing wavelength of the dye to obtain a second reflectance value for at least two different concentrations of the rolling oil in the rolling oil emulsion, establishing a calibration curve, and then monitoring the rolling oil emulsion in like manner. The results may be utilized to feed additional additive to the emulsion, or may be used to feed water into the emulsion system.
    • 可以快速测定轧制油乳液中活性成分的浓度,并且可以通过测量在染料的峰值吸收波长处测量从乳液反射的光量来进行有效成分浓度的校正,以获得 第一反射率值,并测量在除了染料的峰值吸收波长之外的波长处从所述乳液反射的光量,以获得轧制油乳液中至少两种不同浓度的轧制油的第二反射率值,建立 校准曲线,然后以类似的方式监测轧制油乳液。 结果可以用于向乳液中加入另外的添加剂,或者可以将其用于将水进料到乳液体系中。