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    Treatment of Strongly Oxidized Water by Three-cell Electrodialysis Stack
    三槽隔膜式强酸性水的制备
    Studies on Three-Cell Typed Electrolysis Oxidized Water Production Equipment and Processing Parameters
    三槽型强酸性水制备机理及设备的研究
    A method of producing strong acid water using three-cell electrodialysis stack by membrane electrodialysis was proposed. Structure of equipment and preparation method were also elucidated. Authors of this paper discussed systematically the selection of equipment component materials and electrolysis potential.
    针对现行的二槽隔膜式强酸性水制取设备的结构和缺点提出了三槽隔膜式强酸性水制取设备的结构和方法,描述了三槽隔膜式强酸性水制取设备的结构及其工作原理,系统地讨论了三槽隔膜式强酸性水制取设备的单元材料和电解电压的选择。
    Basic Structure and Parameters of Batch Typed Three-cell Electrodialysis Stack for Strong Oxidized Water Making
    三槽型批式制取强酸性水设备的结构及参数
    Mechanism and Structure of Continuous-Typed Three-cell Electrodialysis Stack for Strong Oxidized Ionized Water Making
    连续式三槽型电解槽结构设计及强酸性离子水制备工艺参数研究
    Processing charaeteristic in preloaration of strong acid water with three-cell electrodialysis stack
    三槽隔膜式设备制取强酸性水的工艺特性
    Making of Strong Oxidized Water with Three-cell Electrodialysis Stack
    三槽型电解槽连续制备强酸性离子水机理
    MECHANISM AND STRUCTURE OF CONTINUOUS- TYPED THREE- CELL ELECTRODIALYSIS STACK FOR STRONG OXIDIZED IONIZED WATER MAKIN
    连续式三槽型电解槽结构设计及强酸性离子水制备工艺参数研究
    MECHANISM OF ALKALINE IONIZED WATER PRODUCTION BY THREE-CELL ELECTRODIALYSIS STACK
    三槽隔膜式弱碱性水的制备
    Therefore according to the principle and mechanism of electrolysis theory, three-cell structure was proposed, The design of three-cell structure, the electrode material, antion and cation exchange membrane, the calibration and measuring principles of the electric potential of oxidizing and reducing were analyzed.
    本研究根据电化学原理,首先设计了三槽型电解槽的结构,对电极材料、阴阳离子膜等单元材料进行了分析和选择。 在以上研究的基础上,成功制做了间歇式三槽型电解槽,利用该电解槽进行了强酸性水的制备并对制备强酸性水的电压、电极距离、盐水浓度等工艺参数进行了试验研究。
    Depended on the research of the model typed three-cell electrolyzer, the mechanism of strong oxidized water making with
    最后,将此流动式三槽型电解槽与电路连结,设计并组装出制取强酸性水的设备雏形,该设备通过手动控制可连续、高效地生产出强
    Experiment-al results indicated that three-cell electrodialysis is a prosperous method for strong acid water preparation by electrolysis.
    三槽隔膜式强酸性水制取方法是一种有应用前景的制备强酸性水的方法。
    A method of producing strong oxidized water using flowing three-cell electrodialysis stack was proposed compared with the fixing three-cell electrodialysis stack which need mixing and producing discontinously 。
    在三槽定容积式制取强酸性水设备的结构和方法的分析研究基础上,针对其需要搅拌及不能够实现连续生产等问题,提出了三槽流动型电解槽制备强酸性水的设备。
    Results indicated that this method was practicable to control the stability of the electric current,the stability of the products and respect of continuity in the electrolytic course through the design of three-cell of flowing type electrodialysis stack and qualitative analysis of the experiment,
    三槽流动型电解槽的原理及定性实验分析表明,三槽流动型电解槽的电解电流稳定,所制出的产品—强酸性水的稳定性较好且能够实现连续生产,因而具有良好的实用前景。
    The analysis of the mechanism of three-cell of flowing typed electrodialysis stack andqualitatively analysical experiments indicated that this typed equipment can be used to produce strong oxidized water steadily,continuouly and with stable quality.
    通过对该设备的工作原理的分析及定性实验研究,表明连续式三槽型电解槽强酸性离子水制取设备的电解电流稳定,所制出的强酸性离子水的产品值两稳定,具有良好的生产连续性。
    The analysis of the mechanism of three- cell of flowing typed electrodialysis stack and qualitative-ly analysical experiments indicate that this typed equipment can be used to produce strong oxidizedwater steadily, continuily and with table quality.
    通过对该设备的工作原理的分析及定性实验研究,表明连续式三槽型电解槽强酸性离子水制取设备的电解电流稳定,所制出的强酸性离子水的产品值量稳定,具有良好的生产连续性。
    The main functions of alkaline ionized water was dicussed, and the structure and operation principles of ionized water equipment with three-cell electrodialysis stack for alkaline ionized water production and the materials for the electrodes of this kind equipment were experimentally studied.
    在对弱碱性离子水的主要功效的讨论基础上,为解决目前常用的二槽隔膜式弱碱性离子水制取设备存在的问题提出了三槽隔膜式离子水制取设备。 在对三槽隔膜式离子水设备的结构及工作原理的研究基础上,系统的讨论了该设备的单元材料的选择。
    The results indicate that this method is practical to produce alkaline ionized water by three-cell electrolysis.
    实验结果证明三槽隔膜式弱碱性水制取方法具有很好的应用前景。
 

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