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Molecular Products from the Thermal Degradation of Glutamic Acid

机译:谷氨酸热降解的分子产物

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The thermal behavior of glutamic acid was investigated in N2 and 4% O2 in N2 under flow reactor conditions at a constant residence time of 0.2 s, within a total pyrolysis time of 3 min at 1 atm. The identification of the main pyrolysis products has been reported. Accordingly, the principal products for pyrolysis in order of decreasing abundance were succinimide, pyrrole, acetonitrile, and 2-pyrrolidone. For oxidative pyrolysis, the main products were succinimide, propiolactone, ethanol, and hydrogen cyanide. Whereas benzene, toluene, and a few low molecular weight hydrocarbons (propene, propane, 1-butene, and 2-butene) were detected during pyrolysis, no polycyclic aromatic hydrocarbons (PAHs) were detected. Oxidative pyrolysis yielded low molecular weight hydrocarbon products in trace amounts. The mechanistic channels describing the formation of the major product succinimide have been explored. The detection of succinimide (major product) and maleimide (minor product) from the thermal decomposition of glutamic acid has been reported for the first time in this study. Toxicological implications of some reaction products (HCN, acetonitrile, and acyrolnitrile), which are believed to form during heat treatment of food, tobacco burning, and drug processing, have been discussed in relation to the thermal degradation of glutamic acid.
机译:在流动反应器条件下,在0.2 s的恒定停留时间下,在1 atm的总热解时间3分钟内,研究了谷氨酸在N2和4%O2在N2中的热行为。已经报道了主要热解产物的鉴定。因此,按照减少的顺序热解的主要产物是琥珀酰亚胺,吡咯,乙腈和2-吡咯烷酮。对于氧化热解,主要产物为琥珀酰亚胺,丙内酯,乙醇和氰化氢。尽管在热解过程中检测到苯,甲苯和一些低分子量烃(丙烯,丙烷,1-丁烯和2-丁烯),但未检测到多环芳烃(PAH)。氧化热解产生痕量的低分子量烃产物。已探索了描述主要产物琥珀酰亚胺形成机理的途径。这项研究首次报道了从谷氨酸热分解中检测到琥珀酰亚胺(主要产物)和马来酰亚胺(次要产物)。已经讨论了与谷氨酸的热降解有关的某些反应产物(HCN,乙腈和酰腈)的毒理学含义,这些产物在食品热处理,烟草燃烧和药物加工过程中形成。

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