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Selective Hydrogen Evolution on Manganese Oxide Coated Electrodes: New Cathodes for Sodium Chlorate Production

机译:氧化锰涂层电极的选择性氢气进化:用于氯酸钠生产的新阴极

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摘要

The safety and feasibility of industrial electrochemical production of sodium chlorate, an important chemical in the pulp and paper industry, depend on the selectivity of the electrode processes. The cathodic reduction of anodic products is sufficiently suppressed in the current technology by the addition of chromium(VI) to the electrolyte, but due to the high toxicity of these compounds, alternative pathways are required to maintain high process efficiency. In this paper, we evaluate the electrochemical hydrogen evolution reaction kinetics and selectivity on thermally formed manganese oxide-coated titanium electrodes in hypochlorite and chlorate solutions. The morphology and phase composition of manganese oxide layers were varied via alteration of the annealing temperature during synthesis, as confirmed by scanning electron microscopy, X-ray diffraction, synchrotron radiation X-ray photoelectron spectroscopy, and near-edge X-ray absorption fine structure spectroscopy measurements. As shown in mass spectroscopy coupled electrochemical measurements, the hydrogen evolution selectivity in hypochlorite and chlorate solutions is dictated by the phase composition of the coating. Importantly, a hydrogen evolution efficiency of above 95% was achieved with electrodes of optimized composition (annealing temperature, thickness) in hypochlorite solutions. Further, these electrode coatings are nontoxic and Earth-abundant, offering the possibility of a more sustainable chlorate production.
机译:工业电化学生产的安全性和可行性氯酸钠,纸浆和造纸工业中重要的化学品取决于电极工艺的选择性。通过将铬(VI)加入电解质,在电解质中充分抑制阳极产品的阴极还原,但由于这些化合物的高毒性,因此需要替代的途径以保持高的过程效率。在本文中,我们评估了电化学氢进化反应动力学和在氯酸盐溶液中热形成的锰氧化物涂层钛电极的选择性。通过合成期间的退火温度改变,通过扫描电子显微镜,X射线衍射,同步辐射X射线光电子能谱和近边缘X射线吸收精细结构来改变氧化锰层的形态和相组合物变化。光谱学测量。如质谱耦合电化学测量所示,次氯酸盐和氯酸盐溶液中的氢进化选择性由涂层的相组合物决定。重要的是,用次氯酸盐溶液中的优化组合物(退火温度,厚度)的电极实现了95%以上的氢进化效率。此外,这些电极涂层是无毒的和土坯,提供更可持续的氯酸盐产生的可能性。

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  • 作者单位

    Applied Electrochemistry School of Engineering Sciences in Chemistry Biotechnology and Health KTH Royal Institute of Technology;

    Applied Electrochemistry School of Engineering Sciences in Chemistry Biotechnology and Health KTH Royal Institute of Technology;

    Department of Chemistry School of Engineering Science in Chemistry Biotechnology and Health KTH Royal Institute of Technology;

    Nouryon Pulp and Performance Chemicals AB F?rjev?gen;

    Nouryon Pulp and Performance Chemicals AB F?rjev?gen;

    Faculty of Science Health Education and Engineering University of the Sunshine Coast;

    Department of Chemistry School of Engineering Science in Chemistry Biotechnology and Health KTH Royal Institute of Technology;

    Applied Electrochemistry School of Engineering Sciences in Chemistry Biotechnology and Health KTH Royal Institute of Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Cathode selectivity; HER; Industrial electrochemistry; Chemical technology; Dichromate;

    机译:阴极选择性;她;工业电化学;化学技术;分解官;

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