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首页> 外文期刊>International journal of hydrogen energy >Measurements of the solubility of sulphur dioxide in water for the sulphur family of thermochemical cycles
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Measurements of the solubility of sulphur dioxide in water for the sulphur family of thermochemical cycles

机译:测量二氧化硫在水中的溶解度,用于热化学循环的硫族

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In recent years, the Hybrid Sulphur (HyS) and Sulphur Iodine (SI) cycles have emerged as promising routes for the massive scale thermochemical production of Hydrogen from water. Common to these two cycles is a high temperature stage involving the decomposition of sulphuric acid to sulphur dioxide, water and oxygen. The work considered here focuses on the oxygen separation stage of the process where, in order for a science based design approach to be taken, thermodynamic data are required for multicomponent phase equilibrium relationships between the decomposition products; H_2O-SO_2-O_2. A method of making flash calculations, useful in the separation equipment design, has been proposed and coded into Mathematica®. Further, a vapour-liquid equilibrium still has been designed and built to make measurements of the multicomponent solubility of sulphur dioxide and oxygen in water. The experiments presented here concentrate on the binary SO_2-H_2O system, covering a wider range of pressures than that found in the literature. Solubility, expressed in molality, was obtained at 25 and 40 ℃ and pressures ranging from 0.2 to 3.6 atm. Good agreement is seen between the experimental data and the model at lower pressures, however improvements are needed at higher pressure. Preliminary data for the ternary system at 40 ℃ is presented, showing good agreement with the multicomponent model. Future work will focus on the three component system.
机译:近年来,杂化硫(HyS)和硫碘(SI)循环已经成为从水中大规模热化学生产氢的有前途的途径。这两个循环共有一个高温阶段,该阶段涉及将硫酸分解为二氧化硫,水和氧气。这里考虑的工作集中在过程的氧气分离阶段,为了采用科学的设计方法,分解产物之间的多组分相平衡关系需要热力学数据。 H_2O-SO_2-O_2。已经提出了一种在分离设备设计中有用的闪蒸计算方法,并将其编码为Mathematica®。此外,还已经设计并建立了蒸气-液体平衡来测量二氧化硫和氧气在水中的多组分溶解度。这里介绍的实验集中在二元SO_2-H_2O系统上,涵盖的压力范围比文献中的范围更大。以摩尔浓度表示的溶解度是在25和40℃,压力为0.2至3.6 atm的条件下获得的。在较低压力下,实验数据和模型之间可以看到很好的一致性,但是在较高压力下,仍需要改进。给出了40℃三元体系的初步数据,与多组分模型吻合较好。未来的工作将集中在三个组成部分上。

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