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    • 1. 发明授权
    • Bipolar assembly for filter-press electrolyzer
    • 用于压滤式电解槽的双极组件
    • US06998030B2
    • 2006-02-14
    • US10466782
    • 2002-02-28
    • Dario OldaniPeter FabianFulvio FedericoAntonius FischerLeonello Carrettin
    • Dario OldaniPeter FabianFulvio FedericoAntonius FischerLeonello Carrettin
    • C25B9/20C25B1/26C25B1/08
    • C25B9/203Y02E60/366
    • A bipolar assembly for filter-press type electrolyzers is described comprising a single sheet, whose two faces work respectively as anodic and cathodic wall, characterised by a design of perimetral flanges which greatly simplifies its construction enhancing its reliability. The peripheral flanges are made of a first flange obtained by folding the peripheral portion of the single sheet and of a second flange formed by a rod or a tube with quadrangular section or, alternatively, the first and second flange are pre-formed by folding of adequate strips subsequently fixed to the single sheet. The electrolyser resulting from the assemblage of a multiplicity of assemblies of the invention is particularly suited to the process of electrolysis of hydrochloric acid solutions carried out with chlorine-evolving anodes and oxygen-consuming cathodes.
    • 描述了用于压滤式电解器的双极组件,其包括单个片材,其两个面分别作为阳极和阴极壁工作,其特征在于周边凸缘的设计,其大大简化了其结构,从而提高了其可靠性。 周边凸缘由通过折叠单个片材的周边部分和由具有四边形部分的杆或管形成的第二凸缘而获得的第一凸缘制成,或者,第一和第二凸缘通过折叠 随后将适当的条固定在单张纸上。 由本发明的多个组件的组合产生的电解器特别适用于用氯气放出的阳极和耗氧阴极进行的盐酸溶液的电解过程。
    • 6. 发明授权
    • Monitoring apparatus
    • 监控装置
    • US4448660A
    • 1984-05-15
    • US389285
    • 1982-06-17
    • Peter Fabian
    • Peter Fabian
    • C25B15/04C25C7/00
    • C25B15/04
    • A monitoring and control apparatus for flowing mercury electrolytic cells by measurement of the voltage drop in the shunted feed line of each electrode group comprising taps at the ends of a measured section of electrical bus bars for each electrode group electrically connected to a measuring means whereby the measured voltage drop is fed as an amplified signal to the measuring means, a control means set for a value from the total cell current divided by the number of taps comparing the actual measured values at various feed lines and a signal means activated when a set excess current is exceeded and to actuate the adjusters for a group of electrodes to lift the electrodes stepwise by an adjustable amount until excess current is not measured by comparison indicating that the feed line is no longer overloaded and a method of monitoring electric current in a mercury cell.
    • 一种用于通过测量每个电极组的分流进料管线中的电压降的监测和控制装置,每个电极组包括在与测量装置电连接的每个电极组的电汇集条的测量部分的端部处的抽头,由此 将测量的电压降作为放大信号馈送到测量装置,控制装置设置来自总电池电流的值除以抽头数目的数值,比较各种供电线路处的实际测量值,以及当设定的过量时激活的信号装置 驱动一组电极的调节器,以逐步提升电极一个可调整的量,直到通过比较来测量过剩电流,指示进料线不再过载,以及监测汞电池中的电流的方法 。
    • 9. 发明授权
    • Electrodes for electrolytic cells
    • 电解电极用电极
    • US4364811A
    • 1982-12-21
    • US212570
    • 1980-12-03
    • Peter FabianKarlheinz EisenhuthErnst JedlitschkaHelmut Krebs
    • Peter FabianKarlheinz EisenhuthErnst JedlitschkaHelmut Krebs
    • C25B1/40C25B9/00C25B9/02C25B9/14C25B11/02C25B9/04
    • C25B11/02
    • This invention relates to electrodes for electrolytic cells. More particularly, this invention relates to electrodes for an electrolytic cell comprising:(a) means for supplying electric current;(b) a main current distributor;(c) rectangular-sectioned conductors having flat activated electrode faces and arranged standing upright, the ratio of the width to height of a cross-section being from about 1:5 to about 2:3; and(d) flat, rectangular-sectioned current distributors arranged perpendicularly to the conductors (c) and spaced from about 30 to about 150 mm apart, the ratio of the width to height of a cross-section being smaller than that for the cross-section of conductors (c), the ratio of free passage area to projected area in the zone of the conductors (c) being from about 20:30 to about 60:80 and conductors (c) being connected to current distributors (d), which are in turn connected to main current distributor (b).
    • 本发明涉及电解槽电极。 更具体地说,本发明涉及一种电解槽电极,包括:(a)供电电流; (b)主要分销商; (c)具有平坦的激活电极面并且直立放置的矩形截面导体,横截面的宽度与高度之比为约1:5至约2:3; 和(d)平行的矩形截面的电流分配器,其垂直于导体(c)布置并且间隔开约30至约150mm,横截面的宽度与高度之比小于横截面的横截面积, 导体(c)的截面,导体(c)区域中的自由通过面积与投影面积的比例为约20:30至约60:80,导体(c)连接到电流分布器(d), 它们又连接到主电流分布器(b)。