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饶倩  刘新  林於 《光谱实验室》2013,30(5):2577-2581
采用超声法优选都梁凝胶贴剂中白芷、川芎药对的最佳提取工艺.按照L9(34)正交试验设计,以欧前胡素、阿魏酸的转移率及干浸膏得率为综合评价指标,用高效液相色谱法进行含量测定.结果表明,都梁凝胶贴剂中白芷、川芎药对的最佳超声提取工艺为:8倍量的80%乙醇提取2次,每次超声40min;此时浸膏中欧前胡素的平均含量为0.1379%,阿魏酸的平均含量为0.1410%.本实验所建立的高效液相色谱法的准确度、精密度与重现性良好;提取工艺简便,合理.  相似文献   
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A nondestructive determination method of hydrogen peroxide in whitening patches for teeth was developed by using a new portable near-infrared (NIR) spectrometer. Development of the portable NIR spectrometer was based on microchip technologies with photodiode arrays. By using the portable NIR spectrometer, the new determination method is very rapid; it requires less than 1 s. The conventional method for the determination of hydrogen peroxide, redox titration, requires about 2 h of analysis, including the sample extraction time from a sample matrix. The conventional method also uses hazardous and harmful solvents and, furthermore, its samples cannot be used after titration. To find the peak due to the O–H bond vibration of hydrogen peroxide under the existence of water which shows huge absorption O–H absorption around 1450 nm, the NIR spectra of a hydrogen peroxide aqueous solution were investigated. A clear variation of absorption based on the concentration of the hydrogen peroxide due to the O–H bond vibration was found in the standard deviation plot around 1400 nm. In this study, two kinds of whitening patch products, A and B, were used for samples. A partial least squares (PLS) regression was used for calibration and validation in the 1100 to 1720 nm spectral range. For validation results, the standard error of prediction (SEP) was 0.38% for Patch A and 0.37% for Patch B. This study shows the feasibility of using the portable NIR spectrometer with photodiode arrays for the rapid and safe determination of hydrogen peroxide in whitening patches.  相似文献   
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We present a novel multiresolution Vortex-In-Cell algorithm using patches of varying resolution. The Poisson equation relating the fluid vorticity and velocity is solved using Fast Fourier Transforms subject to free space boundary conditions. Solid boundaries are implemented using the semi-implicit formulation of Brinkman penalization and we show that the penalization can be carried out as a simple interpolation. We validate the implementation against the analytic solution to the Perlman test case and by free-space simulations of the onset flow around fixed and rotating circular cylinders and bluff body flows around bridge sections.  相似文献   
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