thermochemical sulfur-iodine cycle for'/> Occurrence of the Bunsen side reaction in the sulfur-iodine thermochemical cycle for hydrogen production*
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Occurrence of the Bunsen side reaction in the sulfur-iodine thermochemical cycle for hydrogen production*

机译:用于氢生产的硫 - 碘热化学循环中的Bunsen副反应*

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This study aimed to establish a closed-cycle operation technology with high thermal efficiency in the sulfur-iodine cycle%29&ck%5B%5D=abstract&ck%5B%5D=keyword'>thermochemical sulfur-iodine cycle for large-scale hydrogen production. A series of experimental studies were performed to investigate the occurrence of side reactions in both the H2SO4 and HIx phases from the H2SO4/HI/I2/H2O quaternary system within a constant temperature range of 323–363 K. The effects of iodine content, water content and reaction temperature on the side reactions were evaluated. The results showed that an increase in the reaction temperature promoted the side reactions. However, they were prevented as the iodine or water content increased. The occurrence of side reactions was faster in kinetics and more intense in the H2SO4 phase than in the HIx phase. The sulfur or hydrogen sulfide formation reaction or the reverse Bunsen reaction was validated under certain conditions.
机译:该研究旨在在硫 - 碘循环%29和CK%5B%5D =摘要和CK%5B%5d =关键词'>热化学硫 - 碘循环中建立具有高热效率的闭环运行技术。进行一系列实验研究以研究H 2 SO 4和HIX各副反应的发生在323-363k的恒温范围内的H2SO4 / HI / I2 / H2O季季度。碘含量,水的影响评价副反应的含量和反应温度。结果表明,反应温度的增加促进了副反应。但是,随着碘或水含量增加,它们被预防。副反应的发生在动力学中更快,并且在H 2 SO 4相中比HIX阶段更强烈。在某些条件下验证了硫或硫化氢形成反应或反向孔雀反应。

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