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Kinetics of reaction between CO2 and ionic liquid-carbon dioxide binding organic liquid hybrid systems: Analysis of gas-liquid absorption and stopped flow experiments

机译:二氧化碳与离子液 - 二氧化碳的反应动力学与二氧化碳结合有机液体杂交系统:气液吸收分析及停止流动实验

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It is generally accepted that CO2 emissions from point sources - such as thermal power plants - can be controlled by gas-liquid absorption where the process is intensified significantly by introducing a reactant into solvent. In this work, blends of 1-ethyl-3-methyl imidazolium bis (trifluoromethylsulfonyl) imide ([emim][Tf2N]) with 1,8-diazabicyclo[5.4.0]undec-7-ene (DBU) (or 1,1,3,3-tetramethylguanidine (TMG)) in 1-hexanol were studied. Gas absorption experiments were carried out in a gas-liquid mini reactor for the hybrid systems containing different weight concentrations of organic bases while keeping the ionic-liquid weight percentage constant. Total amount of absorbed CO2 was measured as function of time and the absorption (or loading) capacities and the initial absorption rates have been obtained at 313 K. It was found that increasing the amount of the organic base increased the loading capacity of CO2. Also, reusability and performance loss of hybrid solutions were investigated by using Fourier transform infrared spectrometry under sequential absorption-desorption cycles. The intrinsic reaction rates were measured in a stopped flow equipment for a temperature range of 283-303 K. The empirical power law reaction orders with respect to DBU and TMG were found to be between 1.0 and 2.0 at different temperatures and the kinetic data could be interpreted satisfactorily by a modified termolecular reaction mechanism.
机译:通常接受来自点来源的二氧化碳排放 - 例如火电厂 - 可以通过气液吸收来控制,其中通过将反应物引入溶剂中的显着加剧该方法。在这项工作中,用1,8-二氮杂双环[5.4.0] UNDEC-7-ENE(DBU)(或1,研究了1,3,3-四甲基胍(TMG)在1-己醇中进行。在含有不同重量浓度的有机碱基的杂种系统的气体型迷你反应器中进行气体吸收实验,同时保持离子液体重量百分比恒定。测量吸收的CO2的总量作为时间的函数,并且在313k下获得了吸收(或加载)容量和初始吸收率。发现增加有机碱的量增加了CO 2的负载能力。此外,通过在顺序吸收 - 解吸循环下使用傅里叶变换红外光谱法研究了混合溶液的可重用性和性能丧失。在283-303k的温度范围内测量内在反应速率。发现与DBU和TMG相对于DBU和TMG的经验动力法反应令在不同温度下,动力学数据可以是通过改性的术后反应机制令人满意地解释。

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