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Optimization of Boron-Doped Diamond Thin-Layer Cell for Chemical Oxygen Demand Sensor Based on Anodic Oxidation of Organics

机译:基于阳极氧化有机物的化学需氧量传感器优化硼掺杂金刚石薄层电池

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The advanced electrochemical oxidation process (AEOPs) has been considered as an appealing approach to overcome problems associated with the conventional water treatment methods. The use of expensive and toxic chemical oxidizing reagents in chemical oxygen demand, for example, can lead to environmental concerns of the production of secondary pollution. Anodic oxidation, one of the most popular AEOPs, offers a rapid and straightforward COD determination by removing the need for chemical oxidants. The process mainly relies on the anode material to degrade the organic molecules; thus, choosing the appropriate material is one of the keys to a successful electrochemical oxidation.
机译:先进的电化学氧化过程(AEOP)被认为是克服与传统水处理方法相关的问题的吸引力方法。 例如,在化学需氧中使用昂贵和有毒的化学氧化试剂,可以导致次要污染的产生环境问题。 阳极氧化是最受欢迎的AEOP之一,通过去除对化学氧化剂的需要提供了快速和直接的COD测定。 该方法主要依赖于阳极材料来降解有机分子; 因此,选择合适的材料是成功电化学氧化的键之一。

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