Theoretical and experimental study on the pyrolysis of N-methylpyrrolidone

IF 5.8 2区 化学 Q1 CHEMISTRY, ANALYTICAL Journal of Analytical and Applied Pyrolysis Pub Date : 2024-09-12 DOI:10.1016/j.jaap.2024.106751
Du Wang , Wei-Kang Dai , Zhen-Yu Tian , Ya-Wen Liu , Zhi-Min Wang , Ling-Nan Wu , Jiu-Jie Kuang , Qian-Peng Wang , Qiang Xu , Zhan-Dong Wang
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Abstract

As a widely used organic solvent, N-methylpyrrolidone (NMP) may suffer thermal decomposition during large-scale industrial usage. The complex potential energy surface and corresponding pressure-dependent rate coefficients of NMP and NMP radicals were obtained at a high level of theory. The intermediates and products of NMP pyrolysis within 900–1200 K were identified and measured by synchrotron vacuum ultraviolet photoionization mass spectrometry. Theoretical calculations show that the Keto-enol tautomerization and direct ring-opening channel yielding C2H4, CO, and CH3NCH2 exhibit the highest rate coefficient among NMP unimolecular reactions at low and high temperatures, respectively. However, the fuel decomposition process cannot be exclusively dominated by single low-barrier channel. The ring-opening reaction forming imino aldehyde radical and following decarbonylation reactions are favored channels during the NMP radical decomposition, while the formation of the dihydropyrrolidone via H or CH3 loss competes with them at higher temperatures. Various smaller heterocycle radicals can be produced and act as intermediates for the multi-step isomerization of the ring-opening products with a relatively low energy barrier, changing the position of the functional group and radical site. A variety of nitrogenous and oxygenated species were observed in the experiment, such as ketene, methyl isocyanate, pyrrole, benzene, and different kinds of imines. Among them, C2H4, HCN, and CO are the major products for NMP decomposition. Potential reaction pathways from NMP to the major experimentally observed products were inferred based on the calculated results and existing knowledge on the pyrolysis of nitrogenous and oxygenated compounds. These results shed light on the complex C/H/O/N reaction system. The calculated rate coefficients and extensive mole fractions data could provide good support for the modeling of a detailed reaction mechanism in the future.

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关于 N-甲基吡咯烷酮热解的理论和实验研究
作为一种广泛使用的有机溶剂,N-甲基吡咯烷酮(NMP)在大规模工业使用过程中可能会发生热分解。该研究在高理论水平上获得了 NMP 和 NMP 自由基的复合势能面和相应的随压力变化的速率系数。通过同步辐射真空紫外光离子化质谱法鉴定和测量了 900-1200 K 内 NMP 热解的中间产物和产物。理论计算结果表明,在 NMP 单分子反应中,酮烯醇共聚和直接开环通道生成 C2H4、CO 和 CH3NCH2 在低温和高温下分别表现出最高的速率系数。然而,燃料分解过程不可能完全由单一的低阻通道主导。在 NMP 自由基分解过程中,形成亚氨基醛自由基的开环反应和随后的脱羰基反应是最有利的途径,而在较高温度下,通过 H 或 CH3 损失形成二氢吡咯酮与它们竞争。可以产生各种较小的杂环自由基,作为开环产物多步异构化的中间体,其能障相对较低,可改变官能团和自由基位点的位置。实验中观察到了多种含氮和含氧物种,如烯酮、异氰酸甲酯、吡咯、苯和不同种类的亚胺。其中,C2H4、HCN 和 CO 是 NMP 分解的主要产物。根据计算结果和现有的含氮和含氧化合物热解知识,推断了从 NMP 到实验观察到的主要产物的潜在反应途径。这些结果揭示了复杂的 C/H/O/N 反应体系。计算出的速率系数和大量的分子分数数据可为将来建立详细的反应机理模型提供良好的支持。
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来源期刊
CiteScore
9.10
自引率
11.70%
发文量
340
审稿时长
44 days
期刊介绍: The Journal of Analytical and Applied Pyrolysis (JAAP) is devoted to the publication of papers dealing with innovative applications of pyrolysis processes, the characterization of products related to pyrolysis reactions, and investigations of reaction mechanism. To be considered by JAAP, a manuscript should present significant progress in these topics. The novelty must be satisfactorily argued in the cover letter. A manuscript with a cover letter to the editor not addressing the novelty is likely to be rejected without review.
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