首页> 外文期刊>The Canadian Journal of Chemical Engineering >EQUILIBRIUM CONVERSION AND REACTION ANALYSIS IN SULFUR-IODINE THERMOCHEMICAL HYDROGEN PRODUCTION CYCLE
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EQUILIBRIUM CONVERSION AND REACTION ANALYSIS IN SULFUR-IODINE THERMOCHEMICAL HYDROGEN PRODUCTION CYCLE

机译:硫碘热化学制氢循环中的平衡转化和反应分析

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摘要

Equilibrium conditions of the main reactions of the SI cycle were studied in this paper. The extent of reaction for two main reactions of this cycle including sulfuric acid decomposition and hydrogen iodide decomposition was evaluated as a function of temperature, pressure, and initial mole number of reactants. In the reaction modelling of sulfuric acid and sulfur trioxide decompositions, two models including simple and multiple reaction models were considered. In the simple model, it was assumed that two decomposition reactions proceeded independently. However, in the multiple reaction model, both reactions were considered simultamneously. It was shown that the Bunsen reaction completely proceeded in the range of operating conditions of the Bunsen reactor. Also, sulfuric acid was demonstrated to be decomposed at a higher rate when the reaction temperature and initial concentration of the sulfuric acid and sulfur trioxide increased. Furthermore, the operating pressure had to be maintained at lower values and the generated sulfur dioxide had to be withdrawn from the reactor in order to have a higher yield of product in this reactor. Finally, in the hydrogen iodide decomposition, the operating pressure, temperature, and concentration of hydrogen iodide had to be maintained at higher values to have a complete reaction. Moreover, the generated hydrogen was shown to be withdrawn from the hydrogen iodide reactor to prevent from backward reaction.
机译:本文研究了SI循环主要反应的平衡条件。评估该循环的两个主要反应的反应程度,包括硫酸分解和碘化氢分解,其作为温度,压力和反应物初始摩尔数的函数。在硫酸和三氧化硫分解的反应模型中,考虑了两个模型,包括简单和多重反应模型。在简单模型中,假设两个分解反应独立进行。然而,在多重反应模型中,两个反应被同时考虑。结果表明,本生反应在本生反应器的操作条件范围内完全进行。同样,当硫酸和三氧化硫的反应温度和初始浓度增加时,硫酸分解速率更高。此外,必须将操作压力保持在较低的值,并且必须从反应器中排出生成的二氧化硫,以便在该反应器中获得更高的产物收率。最后,在碘化氢的分解中,必须将操作压力,温度和碘化氢的浓度保持在较高的值,以使反应完全。此外,显示产生的氢从碘化氢反应器中排出以防止逆反应。

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