In situ Raman spectroscopy to monitor the hydrolysis of acetal in microreactors

被引:0
作者
Guenter Rinke
Angela Ewinger
Sigrid Kerschbaum
Monika Rinke
机构
[1] Karlsruhe Institute of Technology (KIT),
[2] Institute for Micro Process Engineering,undefined
[3] Karlsruhe Institute of Technology (KIT),undefined
[4] Institute for Materials Research I,undefined
来源
Microfluidics and Nanofluidics | 2011年 / 10卷
关键词
Micromixer; Microreactor; Microchannel; Raman spectroscopy; Acid-catalyzed hydrolysis; Online analysis;
D O I
暂无
中图分类号
学科分类号
摘要
In order to obtain a better understanding of the physical and chemical processes within micromixers or microreactors and to optimize these devices it is necessary to monitor the concentrations within the microchannels. To get chemical information, laser Raman spectroscopy can be used. This method is very selective for individual chemical compounds, allows a spatial resolution of 10 μm within fluids and a quantitative analysis. We examined the hydrolysis of the acetal 2,2-dimethoxypropane to acetone and methanol in the presence of hydrogen ions as catalyst. This reaction can be used to characterize micromixers. The aim of this work is the in situ monitoring of concentrations of acetal and its products, acetone and methanol, during the hydrolysis of acetal within a T-shaped micromixer with a channel width of 0.4 mm and a channel depth of 0.2 mm. In these experiments a continuous-wave argon ion laser was used as an excitation source. The laser radiation was coupled into a microscope and into the micromixer covered with a quartz plate. A special microscope objective was used. It allows the correction of optical aberrations resulting from quartz plates up to a thickness of 2 mm. Concentration profiles of acetal, methanol, and acetone were measured across the width of the microchannel.
引用
收藏
页码:145 / 153
页数:8
相关论文
共 117 条
[21]  
Kubler DG(2007)Laminar elliptic flow in the entrance region of tubes J Braz Soc Mech Sci Eng 29 233-39
[22]  
Shepard D(2001)Microstructure devices for applications in thermal and chemical process engineering Microscale Thermophys Eng 5 17-80
[23]  
Fletcher PD(2010)Reaction mechanism and in situ ATR spectroscopic studies of the 1-Decene ozonolysis in micro- and semibatch reactors Ind Eng Chem Res 49 72-1547
[24]  
Haswell SJ(2007)A reproducible surface-enhanced raman spectroscopy approch. Online SERS measurements in a segmented microfluidic system Anal Chem 79 1542-6102
[25]  
Floyd TM(2005)Scale-up methods for fast competitive chemical reactions in pipeline mixers Ind Eng Chem Res 44 6095-1354
[26]  
Schmidt MA(2008)On-chip Raman analysis of heterogeneous catalytic reaction in supercritical CO Analyst 133 1352-3386
[27]  
Jensen KF(2004): phase behaviour monitoring and activity profiling Anal Chem 76 3373-467
[28]  
Hessel V(2007)Micro total analysis systems. Recent developments Chem Commun 5 443-undefined
[29]  
Löwe H(undefined)Recent advances in synthetic micro reaction technology undefined undefined undefined-undefined
[30]  
Schönfeld F(undefined)undefined undefined undefined undefined-undefined