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首页> 外文期刊>Journal of Chemical Engineering of Japan >Synthesis of 2-Amino-ε-caprolactam by Cyclodehydration of Lysine in Subcritical Water
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Synthesis of 2-Amino-ε-caprolactam by Cyclodehydration of Lysine in Subcritical Water

机译:亚临界水中赖氨酸的环去水合反应合成2-氨基-ε-己内酰胺

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摘要

References(8) Cited-By(5) Water near the critical temperature has been focused as a novel reaction medium. We observed that nylon 6 can be easily depolymerized in sub- or supercritical water to produce ε-caprolactam in our previous work. This indicates that the cyclodehydration reaction proceeds in water near the critical temperature. In this work, we investigated synthesis of 2-aminocaprolactam from L-lysine by cyclodehydration in subcritical water. The reaction was carried out in a batch reactor (5.4 ml in volume) in a temperature range from 573 to 633 K. The reaction time was changed from 5 to 60 min to obtain kinetic data of the reaction. The reaction products were analysed by using LC-MS and HPLC (mobile phase: 0.01 N NaOH solution). As the reaction time increased, the reaction product coloured yellow more deeply. At higher temperature, an yellow or green coloured oil phase was observed. In the products, 2-aminocaprolactam was identified by LC-MS. Lysine was cyclodehydralyzed to 2-aminocaprolactam and then further reacted to by-products in subcritical water. Lysine was completely reacted in 30 min at 633 K. The highest yield of 2-aminocaprolactam was 51% in 20 min at 603 K. For a longer reaction, the yield of 2-aminocaprolactam decreased due to secondary reaction. Subcritical water was found to be an excellent reaction medium for cyclodehydration.
机译:参考文献(8)被引证依据(5)临界温度附近的水已被用作新型反应介质。我们观察到,在我们以前的工作中,尼龙6可以很容易地在亚临界或超临界水中解聚生成ε-己内酰胺。这表明环脱水反应在接近临界温度的水中进行。在这项工作中,我们研究了在亚临界水中通过环脱水从L-赖氨酸合成2-氨基己内酰胺。该反应在间歇反应器(5.4ml体积)中在573至633K的温度范围内进行。反应时间从5至60分钟改变以获得反应的动力学数据。通过使用LC-MS和HPLC(流动相:0.01N NaOH溶液)分析反应产物。随着反应时间的增加,反应产物的颜色更深地呈黄色。在较高温度下,观察到黄色或绿色油相。在产物中,通过LC-MS鉴定了2-氨基己内酰胺。赖氨酸被环水解为2-氨基己内酰胺,然后在亚临界水中进一步反应生成副产物。赖氨酸在633 K下于30分钟内完全反应。2-氨基己内酰胺的最高产率在603 K在20分钟内为51%。对于更长的反应,由于二次反应,2-氨基己内酰胺的产率降低。发现亚临界水是用于环脱水的极好的反应介质。

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