期刊文献+

连续化微反应技术在香料、香精和化妆品合成中的应用 被引量:4

Application of Continuous Microreaction Technology in the Synthesis of Flavour Fragrance and Cosmetics
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摘要 作为一项全新的过程强化技术,连续化微反应技术在香料、香精和化妆品合成中的应用与日俱增。综述了近年来微反应技术在香料合成研发和生产方面的进展。与传统的间歇式反应器不同,连续化微通道反应器的主要特点是连续进料、传质换热能力大大加强以及可以精确控制反应参数等。该技术在许多香料合成常用的反应中都体现出了常规反应器无法比拟的优势,同时在合成香料工业应用的成功范例也展示了微反应技术可以预见的广阔前景。 As a novel process intensification technology,continuous microreaction technology(MRT) has shown more and more applications in the field of flavour,fragrance and cosmetics.The recent progress of MRT and its application in perfume synthesis is overviewed.In contrast to a conventional batch reactor,continous microchannel reactor is recognized by its merits of contiuous operation,intensified capability of mass/heat transfer and precise control of reaction parameters etc.The advantages of MRT was demonstrated in many reaction types mostly utilized for perfume synthesis,and successful examples of MRT in flavour fragrance industry forecast its promising and broad outlook.
作者 赵东波
出处 《香料香精化妆品》 CAS 2010年第6期42-48,共7页 Flavour Fragrance Cosmetics
关键词 微反应技术 微反应器 微通道 连续化 香料香精化妆品 瞬间混和 精确控制 合成香料 microreaction technology(MRT) microreactor microchannel continuous flavour fragrance and cosmetics instant mixing precise control synthetic perfume
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参考文献8

  • 1Ehrfeld W,Hessel V,Loewe H.Microreactors[M].Weinheim:Wiley-VCH,2000.
  • 2Thomas Wirth.Microreactors in Organic Synthesis and Catalysis[M],Weinheim:Wiley-VCH,2008.
  • 3Brian P.Mason,Kristin E.Price,Jeremy L.Steinbacher,Andrew R.Bogdan,and D.Tyler McQuade.Greener Approaches to Organic Synthesis Using Microreactor Technology[J].Chemical Reviews,2007,107:2 300-2 318.
  • 4刘涛.欧洲微反应器技术的发展与应用现状[J].现代化工,2007,27(10):66-68. 被引量:12
  • 5Karolin Geyer,Jeroen D.C.Code,and Peter H.Seeberger,Microreactors as Tools for Synthetic Chemists-The Chemists Round-Bottomed Flask of the 21st Century[J].Chem.Eur.J.,2006,12:8434-8442.
  • 6李斌.微反应器技术在精细化工中的应用[J].精细化工,2006,23(1):1-7. 被引量:35
  • 7Volker Hessel,Christoph Knobloch and Holger L we Review on Patents in Microreactor and Micro Process Engineering Recent[J].Patents on Chemical Engineering,2008,1:1-16.
  • 8Volker Hessel,Christoph Knobloch and Holger L we Review on Patents in Microreactor and Micro Process Engineering Recent[J].Chem.& Engineering News[J].2010,88(9):10.

二级参考文献30

  • 1郑亚锋,赵阳,辛峰.微反应器研究及展望[J].化工进展,2004,23(5):461-467. 被引量:57
  • 2黑瑟尔.沃尔克,勒韦.霍尔格.微反应器研究与应用新进展[J].现代化工,2004,24(7):9-16. 被引量:13
  • 3骆广生,陈桂光,徐建鸿,汪家鼎.微混合技术——颗粒材料制备的关键之一[J].现代化工,2004,24(7):17-19. 被引量:17
  • 4李斌.微反应器技术在精细化工中的应用[J].精细化工,2006,23(1):1-7. 被引量:35
  • 5Roberge D M, Ducry L, Bieler N,et al. Microreactor technology : a revolution for the fine chemical and pharmaceutical industries?[ J ]. Chem Eng Technol,2005,28 ( 3 ) :318 - 323.
  • 6Kawaguchi T,Miyata H, Ataka K,et al. Room-temperature Swern oxidations by using a microscale flow system [J]. Angew Chem Int Ed,2005,44:2413 -2416.
  • 7Hessel V, Hofmann C, Lowe H ,et al. Selectivity gains and energy savings for the industrial phenyl boronic acid process using micromixer/tubular reactors [J]. Org Pro Res & Dev, 2004,8 :511 -523.
  • 8Koch M, Wehle D, Scherer S, et al. Process for preparing arylboron and alkylboron compounds in microreactors [P]. US:2003/0100792.
  • 9Pennemann H, Watts P, Haswell S J, et al. Benchmarking of microreactor applications [J]. Org Pro Res & Dev ,2004,8:422 - 439.
  • 10Bogaert-Alvarez R J, Demena P, Kodersha G, et al. Continuous processing to control a potentially hazardous process: conversion of aryl 1,1-dimethyl propargyl ethers to 2,2-dimethylchromenes(2,2-dimethyl-2H-l-benzopyrans) [J]. Org Pro Res & Dev,2001,5:636 -645.

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