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Generation of sodium oxide and discharge of carbon by the electrolysis of multi-component molten salt systems: A recycle process for kraft pulping chemicals.

机译:通过多组分熔融盐系统的电解生成氧化钠并排放碳:牛皮纸制浆化学品的再循环过程。

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摘要

The electrochemistry for a novel electrolytic recycle process for the recycling of used wood pulping chemicals, mixtures of sodium carbonate, sodium sulfide and sodium sulfate, into mixtures containing sodium oxide (a pre-cursor to sodium hydroxide) and sodium sulfide in the molten state (820 to 860°C) has been investigated and feasibility confirmed. In the mixtures, the reaction limits at the potential window are sulfate reduction to sulfide and oxide and carbonate oxidation to carbon dioxide and oxygen. Oxide and sulfide oxidation occur at potentials less positive than carbonate oxidation, therefore separation of the anolyte and catholyte are necessary. A sulfur and sodium balance is maintained on the melt during electrolysis experiments indicating sulfate oxidation to sulfur trioxide and oxygen does not occur. Literature, thermodynamic calculations of standard potentials of electrochemical reactions, cyclic voltammetry, gas analysis during electrolysis experiments and post-electrolysis analysis of dissolved inorganics confirm the electrolytic generation of sodium oxide and sulfide while simultaneously cleaning the molten salts by electrolytic production of carbon-containing gas.
机译:新型电解循环工艺的电化学,用于将废木浆化学制品,碳酸钠,硫化钠和硫酸钠的混合物回收到含有熔融状态下的氧化钠(前体为氢氧化钠)和硫化钠的混合物中(已经研究了820至860°C),并证实了可行性。在混合物中,潜在窗口的反应极限是硫酸盐还原成硫化物和氧化物,碳酸盐氧化成二氧化碳和氧气。氧化物和硫化物的氧化电位低于碳酸根的氧化电位,因此需要分离阳极电解液和阴极电解液。在电解实验期间,熔体上的硫和钠平衡保持不变,这表明硫酸盐氧化为三氧化硫和氧气不会发生。文献,电化学反应的标准电势的热力学计算,循环伏安法,电解实验期间的气体分析以及溶解的无机物的电解后分析证实了氧化钠和硫化物的电解生成,同时通过电解生产含碳气体来净化熔融盐。

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