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    • 72. 发明授权
    • High-sensitivity method and apparatus for monitoring impurities in water
    • 用于监测水中杂质的高灵敏度方法和装置
    • US06911152B2
    • 2005-06-28
    • US10234712
    • 2002-09-05
    • Woo-young KimTae-won LeeJeom-in BaekYu-chan YoonSeung-min Lee
    • Woo-young KimTae-won LeeJeom-in BaekYu-chan YoonSeung-min Lee
    • G01N30/96B01J39/04B01J47/04G01N27/06G01N33/18C02F1/42B01D35/14
    • G01N33/182B01J39/04B01J47/04G01N27/06B01J41/04
    • Disclosed herein are a high-sensitivity method and apparatus for monitoring the concentration or inflow of impurities in circulating water of a circulating water system, which can remarkably improve the measurement sensitivity by converting carbonate ions of low conductivity into chlorine or sulfate ions of increased conductivity, and which can measure the inflow of air or organic substances and the amount of inflow in a simple and efficient manner in real-time. The method of the present invention comprises the steps of: increasing a content of strong acids in sample water and thus increasing equivalent conductivity of the impurities, by utilizing cation exchange resin together with anion exchange resin, in which cations of the sample water are adsorbed on the cation exchange resin to form strong acids while weakly acidic anions of low dissociation degree in the sample water are adsorbed on the anion exchange resin to form strong acids; and measuring the increased conductivity of the impurities.
    • 本发明公开了一种用于监测循环水系统的循环水中杂质浓度或流入的高灵敏度方法和装置,其可以通过将低导电率的碳酸根离子转化为具有增加的导电性的氯或硫酸根离子来显着提高测量灵敏度, 可以实时测量空气或有机物质的流入量和流入量,简单有效。 本发明的方法包括以下步骤:通过利用阳离子交换树脂与阴离子交换树脂一起增加样品水中的强酸含量,从而提高杂质的等效电导率,其中样品水的阳离子吸附在 阳离子交换树脂形成强酸,而样品水中解离度低的弱酸性阴离子吸附在阴离子交换树脂上形成强酸; 并测量杂质的电导率增加。
    • 79. 发明申请
    • FASTENING STRUCTURE
    • 快速结构
    • US20130000089A1
    • 2013-01-03
    • US13635434
    • 2011-03-18
    • Hyung-Gon LeeTae-Won LeeKwang-Sik Park
    • Hyung-Gon LeeTae-Won LeeKwang-Sik Park
    • A44B18/00
    • A63H33/062A44B18/0053F16B5/07G09B1/30Y10T24/2532Y10T24/2534Y10T24/2573Y10T24/45241
    • Disclosed herein is a fastening structure which enables objects to be easily coupled to or removed from each other, and which enables the relative positions between the objects to be changed in the longitudinal position of zipper rails. The fastening structure includes a first zipper rail unit which is provided on a planar portion of a first object and has zipper rails arranged parallel to each other, and a second zipper rail unit which is provided on a planar portion of a second object and has zipper rails arranged parallel to each other. While the zipper rails of the first zipper rail unit are individually coupled to the corresponding zipper rails of the second zipper rail unit in a female-male engagement manner, relative positions between the first object and the second object can be changed in the longitudinal direction of the zipper rails.
    • 本文公开了一种紧固结构,其使得物体能够容易地彼此联接或移除,并且这使得能够在拉链轨道的纵向位置改变物体之间的相对位置。 紧固结构包括:第一拉链轨道单元,其设置在第一物体的平面部分上并且具有彼此平行布置的拉链轨道;以及第二拉链轨道单元,其设置在第二物体的平坦部分上并具有拉链 轨道彼此平行排列。 虽然第一拉链轨道单元的拉链轨道以阴阳接合方式单独地联接到第二拉链轨道单元的相应的拉链轨道,但是可以在第一拉链轨道单元的纵向方向上改变第一物体和第二物体之间的相对位置 拉链轨道。