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    • 5. 发明授权
    • Water impurity analyzer
    • 水杂质分析仪
    • US6123904A
    • 2000-09-26
    • US49629
    • 1998-03-27
    • Paul George WrightCurtis W. NichollsClifford LaRue McDonald, Jr.
    • Paul George WrightCurtis W. NichollsClifford LaRue McDonald, Jr.
    • G01N21/75G01N31/00G01N33/18G01N27/08
    • G01N33/1846G01N21/75G01N21/85G01N31/005Y10T436/204998Y10T436/235
    • To determine the total organic carbon content of a flowing liquid in a continuous process, water and oxidizing agents enter lower ports in a multi-stage column and flow upwardly through residence chambers as they are mixed. Spaced apart along the upper path of the liquid, there are helical reaction grooves relatively shallow and containing at least one helical groove to cause rapid motion of the liquid. An ultraviolet lamp extends downwardly through the center of the column so that the outer confining surface of the helical grooves is the outer surface of the ultraviolet lamp, causing the liquid to move rapidly in intimate contact with the ultraviolet lamp to receive intense radiation. The stages are separate and interchangeable so that selected sizes may interconnect. The residence chambers may have different sizes to permit different lengths of residence time and thus permit tailoring of the reaction to the expected organic carbon content and possible side reactions with other impurities in the water.
    • 为了确定连续过程中流动液体的总有机碳含量,水和氧化剂进入多级塔的下端口,并在混合时向上流过住宅室。 沿着液体的上部路径分开,存在相对较浅并且包含至少一个螺旋槽的螺旋反应槽,以引起液体的快速运动。 紫外灯向下延伸穿过柱的中心,使得螺旋槽的外限制表面是紫外灯的外表面,使得液体快速移动,与紫外灯紧密接触以接收强烈辐射。 这些阶段是分开的和可互换的,使得所选择的尺寸可以互连。 居住室可以具有不同的尺寸以允许不同长度的停留时间,从而允许将反应定制为预期的有机碳含量和与水中的其它杂质的可能的副反应。
    • 8. 发明授权
    • Remote installation method and tool
    • 远程安装方法和工具
    • US06263747B1
    • 2001-07-24
    • US08502560
    • 1995-07-14
    • Douglas Timothy CarsonPaul George WrightJohn D. Hull
    • Douglas Timothy CarsonPaul George WrightJohn D. Hull
    • B08B900
    • E03F7/00F16L55/26
    • To insert an instrument into a flow stream of a sewer pipe from the street, the instrument is fastened to a holder, which in turn is fastened to a portion of an expansion ring opposite its two opened edges. A cord is fastened to one of the edges of the expansion ring and passes over a curved post mounted to the other edge of the expansion ring and extended upwardly in a direction parallel to the edges of the expansion ring so that it can be pulled to compress the expansion ring to a small diameter cylinder and released to expand it against the wall of a pipe. A post is mounted to the expansion ring to permit a long tool to grip the post and move the expansion ring into a sewer pipe where it is expanded and released.
    • 为了将仪器从街道插入下水道的流动流中,仪器被固定到保持器上,固定器又固定在与两个开口边缘相对的一部分膨胀环上。 绳索被固定到膨胀环的一个边缘上,并且穿过安装到膨胀环的另一边缘上的弯曲柱,并且沿着平行于膨胀环的边缘的方向向上延伸,使得其可被拉动以压缩 膨胀环到一个小直径的气缸并释放以将其膨胀到管道的壁上。 支柱安装到膨胀环上,以允许长的工具夹紧柱,并将膨胀环移动到其被扩展和释放的下水管中。
    • 10. 发明授权
    • Water impurity analysis method
    • 水分杂质分析法
    • US5733789A
    • 1998-03-31
    • US634007
    • 1996-04-15
    • Paul George WrightCurtis W. NichollsClifford LaRue McDonald, Jr.
    • Paul George WrightCurtis W. NichollsClifford LaRue McDonald, Jr.
    • G01N21/75G01N31/00G01N33/18
    • G01N33/1846G01N21/75G01N21/85G01N31/005Y10T436/204998Y10T436/235
    • To determine the total organic carbon content of a flowing liquid in a continuous process, water and oxidizing agents enter lower ports in a multi-stage column and flow upwardly through residence chambers as they are mixed. Spaced apart along the upper path of the liquid, there are helical reaction grooves relatively shallow and containing at least one helical groove to cause rapid motion of the liquid. An ultraviolet lamp extends downwardly through the center of the column so that the outer confining surface of the helical grooves is the outer surface of the ultraviolet lamp, causing the liquid to move rapidly in intimate contact with the ultraviolet lamp to receive intense radiation. The stages are separate and interchangeable so that selected sizes may interconnect. The residence chambers may have different sizes to permit different lengths of residence time and thus permit tailoring of the reaction to the expected organic carbon content and possible side reactions with other impurities in the water.
    • 为了确定连续过程中流动液体的总有机碳含量,水和氧化剂进入多级塔的下端口,并在混合时向上流过住宅室。 沿着液体的上部路径分开,存在相对较浅并且包含至少一个螺旋槽的螺旋反应槽,以引起液体的快速运动。 紫外灯向下延伸穿过柱的中心,使得螺旋槽的外限制表面是紫外灯的外表面,使得液体快速移动,与紫外灯紧密接触以接收强烈辐射。 这些阶段是分开的和可互换的,使得所选择的尺寸可以互连。 居住室可以具有不同的尺寸以允许不同长度的停留时间,从而允许将反应定制为预期的有机碳含量和与水中的其它杂质的可能的副反应。