CO2 hydrogenation to formic acid using tertiary amine and diol solvents

IF 1.5 4区 工程技术 Q3 ENGINEERING, CHEMICAL Brazilian Journal of Chemical Engineering Pub Date : 2024-07-29 DOI:10.1007/s43153-024-00493-5
Murilo L. Alcantara, Abner Luiz da Silva, Antônio Ésio Bresciani, Rita Maria Brito Alves
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Abstract

Carbon dioxide (CO2) hydrogenation to higher added-value products has been reported as a promising alternative to adapt the current industry to produce high-valuable chemicals via lower CO2 emission processes. The CO2 hydrogenation to formic acid via the tertiary amine & diol route was investigated in the present study. This process requires two reactors, and the tertiary amines’ size strongly influences both reactors’ performances. The present study investigated the thermodynamic influence of tertiary amines in each reactor and presented the most suitable amines’ size on each reactor’s performance. Suitable predictive thermodynamic models were assessed, and the most accurate ones were applied to estimate all species missing properties and systems equilibrium. This set of models is suggested to be used on further developments of similar processes. Eight tertiary amines, ranging from trimethylamine (C1) to tri-octylamine (C8), were studied. The thermochemical evaluation indicated that the amines’ size influences the two reactions inversely: small-sized tertiary amines were more efficient in the first reaction, whereas higher chain ones increased the second reaction’s conversion. Tertiary amines with radicals sized from ethyl (C2) to hexyl (C6) presented the most equilibrated performances in both reactions. Thermodynamic analysis revealed that high pressures and low temperatures favor the first reaction, and low pressures and high temperatures favor the second. Notably, triethylamine (C2) demonstrated high conversions in both reactors, exceeding 90% conversion in both reactions.

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使用叔胺和二元醇溶剂将二氧化碳氢化为甲酸
据报道,二氧化碳(CO2)加氢制取高附加值产品是一种很有前景的替代方法,可使目前的工业通过较低的 CO2 排放工艺生产高价值化学品。本研究调查了通过叔胺& 二元醇路线将二氧化碳氢化为甲酸的过程。该工艺需要两个反应器,叔胺的大小对两个反应器的性能都有很大影响。本研究调查了每个反应器中三级胺的热力学影响,并提出了最适合每个反应器性能的胺的大小。对合适的预测热力学模型进行了评估,并采用最准确的模型来估算所有物种的缺失特性和系统平衡。建议在进一步开发类似工艺时使用这套模型。研究了从三甲胺(C1)到三辛胺(C8)的八种叔胺。热化学评估表明,胺的大小对两个反应的影响成反比:小尺寸的叔胺在第一个反应中更有效,而高链的叔胺则增加了第二个反应的转化率。具有从乙基(C2)到己基(C6)大小自由基的叔胺在两个反应中的表现最为均衡。热力学分析表明,高压和低温有利于第一种反应,而低压和高温有利于第二种反应。值得注意的是,三乙胺(C2)在两个反应器中都表现出很高的转化率,两个反应的转化率都超过了 90%。
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来源期刊
Brazilian Journal of Chemical Engineering
Brazilian Journal of Chemical Engineering 工程技术-工程:化工
CiteScore
2.50
自引率
0.00%
发文量
84
审稿时长
6.8 months
期刊介绍: The Brazilian Journal of Chemical Engineering is a quarterly publication of the Associação Brasileira de Engenharia Química (Brazilian Society of Chemical Engineering - ABEQ) aiming at publishing papers reporting on basic and applied research and innovation in the field of chemical engineering and related areas.
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