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Process Advantages of Direct CO2 to Methanol Synthesis

机译:直接二氧化碳制甲醇的工艺优势

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摘要

Developing a laboratory scale or pilot scale chemical process into industrial scale is not trivial. The direct conversion of CO2 to methanol, and concomitant production of hydrogen from water electrolysis on large scale, are no exception. However, when successful, there are certain benefits to this process over the conventional process for producing methanol, both economic and environmental. In this article, we highlight some aspects that are unique to the process of converting pure CO2 to methanol. Starting from pure CO2 and a separate pure source of H2, rather than a mixture of CO, CO2, and H2 as is the case with syngas, simplifies the chemistry, and therefore also changes the reaction and purification processes from conventional methanol producing industrial plants. At the core of the advantages is that the reaction impurities are essentially limited to only water and dissolved CO2 in the crude methanol. In this paper we focus on several aspects of the process that direct conversion of CO2 to methanol enjoys over existing methods from conventional syngas. In particular, we discuss processes for removing CO2 from a methanol synthesis intermediate product stream by way of a stripper unit in an overhead stream of a distillation column, as well as aspects of a split tower design for the distillation column with an integrated vapo-condenser and optionally also featuring mechanical vapor re-compression. Lastly, we highlight some differences in reactor design for the present system over those used in conventional plants.
机译:将实验室规模或中试规模的化学过程发展为工业规模并非易事。将CO2直接转化为甲醇,以及随之而来的大规模电解水制氢也不例外。但是,与传统的甲醇生产方法相比,该方法成功后在经济和环境方面均具有某些优势。在本文中,我们重点介绍了将纯二氧化碳转化为甲醇的过程所特有的一些方面。从纯CO2和单独的纯H2原料开始,而不是像合成气那样从CO,CO2和H2的混合物开始,简化了化学反应,因此也改变了常规甲醇生产工业装置的反应和纯化工艺。优点的核心是,反应杂质基本上仅限于水和粗甲醇中溶解的CO2。在本文中,我们着重于过程的几个方面,即直接将CO2转化为甲醇的过程比常规合成气的现有方法具有更多优势。特别是,我们讨论了通过蒸馏塔塔顶物流中的汽提器从甲醇合成中间产物流中除去CO2的方法,以及带有集成式vapo冷凝器的蒸馏塔分馏塔设计的各个方面并可选地还具有机械蒸气再压缩功能。最后,我们强调了本系统的反应堆设计与常规工厂所用反应堆设计之间的一些差异。

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