首页|Highly-efficient separation of pyromellitic acid and trimellitic acid mixtures via forming deep eutectic solvents:Experiment and calculation

Highly-efficient separation of pyromellitic acid and trimellitic acid mixtures via forming deep eutectic solvents:Experiment and calculation

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Highly-efficient separation of pyromellitic acid and trimellitic acid mixtures via forming deep eutectic solvents:Experiment and calculation
Pyromellitic acid(PMA)and trimellitic acid(TMA)are significant chemical raw materials and in-termediates.They simultaneously exist in the industry processes of synthesis and are difficult to be separated.In this work,several kinds of biodegradable compounds were chosen as hydrogen bond ac-ceptors(HBAs)to separate PMA and TMA mixtures from acetone solutions via forming deep eutectic solvent(DES).It has been found that all these compounds can separate PMA and TMA mixtures to obtain pure PMA or TMA.However,the interaction between HBAs and PMA or TMA is quite different.Choline chloride cannot extract TMA but can form a DES with PMA in acetone.Hexamethylenetetramine(HA)and L-carnitine(L-car)can form DESs with both PMA and TMA in acetone solution.But when L-car or HA is added,the extraction rate of PMA is larger than that of TMA until the extraction rate of PMA reach 100%,and pure TMA is left in the acetone solution.The selective separation mechanism was explored by infrared spectroscopy combined with quantum chemistry calculation,and the strength and site of the interaction between extractants with PMA and TMA were calculated.

SeparationPyromellitic acidTrimellitic acidDeep eutectic solventQuantum chemistry calculation

Wanxiang Zhang、Lixia Ji、Yucui Hou、Shuhang Ren、Weize Wu

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State Key Laboratory of Chemical Resource Engineering,Beijing University of Chemical Technology,Beijing 100029,China

Department of Chemistry and Materials,Taiyuan Normal University,Shanxi 030619,China

Separation Pyromellitic acid Trimellitic acid Deep eutectic solvent Quantum chemistry calculation

2024

中国化学工程学报(英文版)
中国化工学会

中国化学工程学报(英文版)

CSTPCDEI
影响因子:0.818
ISSN:1004-9541
年,卷(期):2024.76(12)