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首页> 外文期刊>Separation and Purification Technology >Carbon dioxide absorption in a technical-scale-plant utilizing an imidazolium based ionic liquid
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Carbon dioxide absorption in a technical-scale-plant utilizing an imidazolium based ionic liquid

机译:利用咪唑基离子液体在工业规模工厂中吸收二氧化碳

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In order to decrease the carbon dioxide (CO2) content of gas streams to reach environmental or sales gas requirements, a series of different techniques have been established over the years. For example, in natural gas processing, aqueous amine solutions are commonly used as a washing media. A category of new fluids, ionic liquids (ILs), shows certain advantages compared to standard technologies, like non-volatile character and the absence of aqueous solutions. A great amount of research into CO2 solubility in ILs in general has been performed over the last years, fewer in high pressure solubility. Nearly none have reached a state beyond laboratory scale. This paper presents the final experiments from a feasibility study, namely high pressure absorption of CO2 from an inert component and the respective desorption by using columns at technical scale. The used IL is non-toxic, stable to hydrolysis and can practicably and reasonably be produced industrially with a novel high quality synthesis route. Measuring the pressure equilibrium data at different temperatures and generation of the corresponding diagrams was the basis for the column experiments. A fundamental point was to identify which phase flows disperse together with the consequent impact on the process. The investigation of the recycling behavior, as a sequence of absorption and desorption cycles, was a very important part of the project. Hence, it was possible to improve the balance point and the load line. The results promise the application of the novel process on an industrial scale soon.
机译:为了降低气流中的二氧化碳(CO2)含量以达到环境或销售用气的要求,多年来建立了一系列不同的技术。例如,在天然气加工中,胺水溶液通常用作洗涤介质。与标准技术相比,一类新型液体离子液体(ILs)具有某些优势,例如不挥发特性和不存在水溶液。过去几年中,人们对ILs中的CO2溶解度进行了大量研究,而高压溶解度却很少。几乎没有人达到超出实验室规模的状态。本文介绍了一项可行性研究的最终实验,即从惰性组分中高压吸收CO2以及使用工业规模的色谱柱进行相应的脱附。所用的IL是无毒的,对水解稳定,并且可以通过新颖的高质量合成途径在工业上切实可行地合理生产。在不同温度下测量压力平衡数据并生成相应图表是色谱柱实验的基础。基本要点是确定哪个相流分散在一起,以及对过程的影响。作为吸收和解吸循环的顺序,对回收行为的研究是该项目非常重要的一部分。因此,可以改善平衡点和负载线。结果有望在工业规模上应用该新方法。

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