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首页> 外文期刊>Electrochimica Acta >The filter-press FM01-LC laboratory flow reactor and its applications
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The filter-press FM01-LC laboratory flow reactor and its applications

机译:压滤机FM01-LC实验室流动反应器及其应用

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The FM01-LC is a laboratory-scale, electrochemical filter-press cell with a projected electrode area of 64 cm(2) and a rectangular electrolyte flow channel which was originally based on the larger FM21-SP electrolyser of 2100 cm(2) projected electrode area designed for the chlor-alkali industry then diversified to other applications. Many laboratories and industries have utilised this type of controlled flow reactor containing plane parallel electrodes in a rectangular channel for industrial and commercial applications. The diverse range of electrodes possible in such cells is emphasized with examples including 3-D metals and carbon, coated metal electrodes and nanostructured surfaces offering a high surface area. The experimental characterization and computational modelling of its reaction environment are concisely described discussed to appreciate the features of this type of electrochemical reactor. The cell construction and reaction environment are summarized, followed by an illustration of its use for a range of applications that include organic and inorganic electrosynthesis, metal ion removal, energy storage, environmental remediation (e. g., precious metal recycling or anodic destruction of organics) and drinking water treatment. Examples of the cell for energy conversion and storage (flow batteries and proton exchange membrane fuel cells) are briefly illustrated. The use of such a flow cell for the characterization of new electrochemical processes and to provide data enabling scale-up is considered. (C) 2015 Elsevier Ltd. All rights reserved.
机译:FM01-LC是实验室规模的电化学压滤式电池,其预计电极面积为64 cm(2),并且具有矩形电解质流道,该通道最初基于更大的FM21-SP电解槽,预计面积为2100 cm(2)。然后,为氯碱工业设计的电极面积又多元化到其他应用领域。许多实验室和工业已经将这种在平面通道中包含平面平行电极的受控流动反应器用于矩形通道中,以用于工业和商业应用。在这样的电池中可能的电极的多样化范围通过包括3-D金属和碳,涂覆的金属电极和提供高表面积的纳米结构化表面的例子来强调。简明地描述了其反应环境的实验表征和计算模型,以了解这种类型的电化学反应器的特征。总结了电池的构造和反应环境,然后举例说明了其在一系列应用中的用途,包括有机和无机电合成,金属离子去除,能量存储,环境修复(例如,贵金属回收或有机物的阳极破坏)以及饮用水处理。简要说明了用于能量转换和存储的电池(液流电池和质子交换膜燃料电池)的示例。考虑使用这种流动池来表征新的电化学过程并提供能够扩大规模的数据。 (C)2015 Elsevier Ltd.保留所有权利。

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