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首页> 外文期刊>Chemical Engineering Science >A one-step production of fine chemicals using supercritical water: an environmental benign application to the synthesis of monoterpene alcohol
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A one-step production of fine chemicals using supercritical water: an environmental benign application to the synthesis of monoterpene alcohol

机译:使用超临界水一步生产精细化学品:对单萜醇合成的环境友好应用

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A one-step synthesis of monoterpene alcohols such as lavandulol (Scheme3, 5), linalool(8), and geraniol(7)erol(10) and a-terpineol(6) from hemiterpene alcohols proceeds efficiently in supercritical water (scH(2)O) without any catalyst. Our device of a microreaction (mu-reaction) system that can heat up very quickly an ambient substrate solution to the scH(2)O state and then can quench rapidly to sufficiently low temperatures after the reaction achieves the selectivity to (5) and the yield reached 82 % and 59 %, respectively; even at a short reaction time of 7.7 s at 30 MPa and 375degreesC in the near-critical region. The yield was superior to the conventional method promoted by organometallic catalysts in which the reaction time of 7.25 h is needed to obtain 54 % yield. When the reaction was carried out at a lower temperature of 300degreesC in hot water, we obtained only 15 % yield even at a reaction time of 38 s. The acidic ability of H2O peculiar to supercritical conditions is thus considered to promote the desired pathway alone, and so the scH(2)O p-reaction system could conveniently prevent side reactions such as dehydration and hydrolysis. It is further noteworthy that the presence of methanol in a high-temperature water medium completely suppresses the (5) production. This seems to be due to its own acidic ability peculiar to scH(2)O state. (C) 2004 Elsevier Ltd. All rights reserved.
机译:从半萜烯醇中一步法合成单萜醇,例如lavandulol(Scheme3,5),linalool(8)和geraniol(7)/ nerol(10)和α-萜品醇(6),可在超临界水(scH( 2)O),无需任何催化剂。我们的微反应(mu-reaction)系统装置,可以将周围的底物溶液非常快速地加热到scH(2)O状态,然后在反应达到对(5)的选择性后,可以迅速淬灭至足够低的温度产率分别达到82%和59%。即使在近临界区域在30 MPa和375°C下短时7.7 s的反应时间。收率优于有机金属催化剂促进的常规方法,在传统方法中,需要7.25小时的反应时间才能获得54%的收率。当反应在300℃的较低温度下在热水中进行时,即使在38 s的反应时间下,我们也仅获得15%的产率。因此,H2O在超临界条件下的酸性能力被认为可以单独促进所需的途径,因此scH(2)O p反应系统可以方便地防止诸如脱水和水解之类的副反应。进一步值得注意的是,在高温水介质中甲醇的存在完全抑制了(5)的产生。这似乎是由于scH(2)O状态所特有的其自身的酸性能力。 (C)2004 Elsevier Ltd.保留所有权利。

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