Schuur Boelo, Nijland Mart, Blahušiak Marek, Juan Alberto
Sustainable Process Technology Group, University of Twente, Meander building 221, P.O. Box 217, 7500AE Enschede, The Netherlands.
Biomolecular Nanotechnology Group, MESA+ institute, University of Twente, Carré building 4326, P.O. Box 217, 7500AE Enschede, The Netherlands.
ACS Sustain Chem Eng. 2018 Aug 6;6(8):10429-10435. doi: 10.1021/acssuschemeng.8b01771. Epub 2018 Jun 29.
CO-switchable solvents, typically neutral solvents that switch with CO into ionic species, were investigated for use as entrainer in fluid separations such as extractive distillation. Their switchable nature was investigated, which may facilitate liquid-liquid extraction or extractive distillation as ionic liquid (IL), whereas during regeneration their decarboxylation into the amine form prevents temperature shoot-up. Studied elements included a property screening and detailed mechanistic and kinetic studies on the switching of 2-ethylhexylamine and ,benzyl methylamine. Decarboxylation of a 50 vol % switchable solvent, 25 vol % heptane, and 25 vol % toluene mixture at 1.00 × 10 Pa showed a 40% CO release before reaching the operational pressure, and total decarboxylation took over 2 h. An effective increase of the relative volatility of heptane/toluene was found, showing that, indeed, CO-switchable solvents can be applied for extractive distillation. However, low pressure in combination with elevated temperature will lead to quick decarboxylation, limiting the operational window of this class of solvents. Their use in low temperature application such as C-distillations or liquid-liquid extraction appears more suited.
CO 可切换溶剂,通常是指能与 CO 反应转变为离子型物种的中性溶剂,被研究用作萃取精馏等流体分离过程中的夹带剂。对其可切换性质进行了研究,这种性质在作为离子液体(IL)时可能有助于液 - 液萃取或萃取精馏,而在再生过程中,它们脱羧转化为胺形式可防止温度骤升。研究内容包括对 2 - 乙基己胺和苄基甲胺切换过程的性质筛选以及详细的机理和动力学研究。在 1.00×10 Pa 下,对由 50 体积%的可切换溶剂、25 体积%的庚烷和 25 体积%的甲苯组成的混合物进行脱羧反应,结果表明在达到操作压力之前有 40%的 CO 释放,且完全脱羧耗时超过 2 小时。研究发现庚烷/甲苯的相对挥发度有了有效提高,这表明 CO 可切换溶剂确实可用于萃取精馏。然而,低压与高温相结合会导致快速脱羧,限制了这类溶剂的操作窗口。它们在低温应用(如 C 蒸馏或液 - 液萃取)中似乎更适用。