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    • 47. 发明申请
    • DETERMINATION OF FRACTIONAL COMPOSITIONS USING NONLINEAR SPECTROPHONOMETRY
    • 使用非线性光谱测定法确定部分成分
    • US20120197545A1
    • 2012-08-02
    • US13322489
    • 2010-05-28
    • David BurnsJonathan Dion
    • David BurnsJonathan Dion
    • G06F19/00G01N31/00
    • G01N29/036G01N29/46G01N2291/011G01N2291/0224
    • Applicants have discovered new methods and apparatuses for determining the fractional composition of a component in a multi-component mixture using multivariate statistical analysis of the ultrasonic frequency profile. Applicants show the use of ultrasonic spectrophonometry to determine the fractional composition of a component in a 3-component solvent mixture comprising water, ethanol and methanol as well as determination of the fractional composition of certain contaminants in water. Applicants provide a method of determining a fractional composition of a component in a multi-component mixture comprising pulsing a mixture with a source of ultrasounds, detecting “non-linear” ultrasonic spectral data propagating through the mixture and computing the fractional composition of the component.
    • 申请人已经发现了使用超声波频率分布的多变量统计分析来确定多组分混合物中组分的分数组成的新方法和装置。 申请人显示使用超声波分光光度法来测定包含水,乙醇和甲醇的3组分溶剂混合物中组分的分数组成,以及测定水中某些污染物的分数组成。 申请人提供了一种确定多组分混合物中组分的分数组成的方法,包括将脉冲与超声波源混合,检测通过混合物传播的“非线性”超声频谱数据并计算组分的分数组成。
    • 48. 发明申请
    • DEVICE TO INFUSE GAS INTO LIQUID
    • 将气体注入液体的装置
    • US20110187011A1
    • 2011-08-04
    • US12746543
    • 2008-12-05
    • David BurnsJason YeoRichard Lonetto
    • David BurnsJason YeoRichard Lonetto
    • B01F3/04
    • B01F3/04517C02F7/00Y02W10/15
    • A device for infusion of gas into fluid, off gassing said fluid and returning said off gassed fluid to a body of fluid, comprises an intake tube having a bottom opening submergable below a body of fluid, gas diffusion means positioned within a bottom portion of said intake tube for infusing gas into fluid within said intake tube, whereby the rising bubbles of infused gas drives the liquid in the intake tube upwardly to a top portion of the intake tube and through a cross tube section in communication with said intake tube portion, said cross tube section extending substantially perpendicularly to said intake tube and above said body of fluid to an off gassing section, said off gassing section extending above the cross tube section and allowing said liquid to have surface exchange with the air and thus removal of gasses from the liquid and being positioned above the body of water, thereby creating a head differential. A discharge tube portion communicates with the cross tube, being positioned below said off gas section and extends downwardly therefrom into the body of fluid, whereby the fluid entering the discharge tube has imparted a downward velocity due to the head differential between the liquid at the top of the off gassing section.
    • 一种用于将气体输入流体的装置,将所述流体排放并将所述排出的流体返回到流体体中的装置包括:进气管,其具有可在流体主体下方浸没的底部开口;气体扩散装置,其位于所述流体的底部内; 吸入管,用于将气体输入到所述进气管内的流体中,由此输入气体的上升气泡将进气管中的液体向上驱动到进气管的顶部并且通过与所述进气管部分连通的横管部分, 横管部分基本上垂直于所述进气管延伸并且在所述流体体上方延伸到脱气部分,所述脱气部分在横管部分的上方延伸,并允许所述液体与空气进行表面交换,从而从气体中除去气体 液体并且位于水体上方,从而产生头差。 放电管部分与横管连通,位于所述废气部分下方并从其向下延伸进入流体体内,由此进入排放管的流体由于顶部液体之间的头部差异而赋予向下的速度 的放气部分。
    • 50. 发明申请
    • Systems and methods for remote monitoring of contaminants in fluids
    • 用于远程监测流体中污染物的系统和方法
    • US20090002704A1
    • 2009-01-01
    • US11823585
    • 2007-06-28
    • David BurnsAnhua MeiMark Scott
    • David BurnsAnhua MeiMark Scott
    • G01N21/47G01N15/02
    • G01N21/53G01N15/0205G01N21/85G01N21/94G01N2001/225G01N2021/4707G01N2021/8411G01N2021/8557
    • A system and method of monitoring contaminant particles in pipelines. The system can include a probe for extending into a pipeline, and sampling fluid in the pipeline to ensure that a representative amount of contaminants within the pipeline can subsequently be measured. An analyzer receives the sampled fluid from the probe, illuminates the sampled fluid with a light source, and collects scattered light from any contaminant particles in the illuminated sampled fluid. A detector receives the scattered light from the analyzer, and converts the scattered light into an electrical signal that is proportional to the contaminant particles size. A processor receives the electrical signal from the detector, converts the electrical signal into digital data pertaining to the contaminant particles, and transmits the digital data on an Ethernet connection, or wireless signal to a communication network for distribution to at least one digital data processor for display and evaluation.
    • 监测管道污染物颗粒的系统和方法。 该系统可以包括用于延伸到管道中的探针和在管道中取样流体,以确保随后可以测量管道内的代表性的污染物量。 分析仪从探测器接收采样的流体,用光源照射采样的流体,并从照射的采样流体中的任何污染物颗粒收集散射光。 检测器接收来自分析器的散射光,并将散射光转换成与污染物颗粒尺寸成比例的电信号。 处理器从检测器接收电信号,将电信号转换为与污染物颗粒有关的数字数据,并将以太网连接上的数字数据或无线信号发送到通信网络,以分配给至少一个数字数据处理器 展示和评估。