Auteur Jie-Xin Wang
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Documents disponibles écrits par cet auteur (7)
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Liang - Liang Zhang, Auteur ; Jie-Xin Wang, Auteur ; Yang Xiang, Auteur |Using ionic liquids for CO2 capture is of great interest due to their unique characteristics. However, low gas―liquid mass transfer rates in conventional gas-liquid contactors due to the high viscosities of ionic liquids lead to the significant [...]![]()
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Qing Yang, Auteur ; Jie-Xin Wang, Auteur ; Lei Shao, Auteur |A microporous tube-in-tube microchannel reactor (MTMCR) was successfully adopted to prepare hydroxyapatite (HAP) nanoparticles. The rodlike HAP nanoparticles with a mean size of 58 nm, a specific surface area of 49.32 m2/g, and a narrow size dis[...]![]()
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Qi-An Wang, Auteur ; Jie-Xin Wang, Auteur ; Wen Yu, Auteur |This article presents a new microporous tube-in-tube microchannel reactor (MTMCR) with high throughput and excellent micromixing performance. In the MTMCR, one liquid from the inner tube is divided into many liquid fragments through the microsca[...]![]()
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Hai-Xia Zhang, Auteur ; Jie-Xin Wang, Auteur ; Lei Shao, Auteur |In this work, monodispersed pharmaceutical colloidal spheres of atorvastatin calcium (AC) with tunable sizes have been synthesized in a microfluidic system at continuous flow conditions. The influences of the key parameters, including the concen[...]![]()
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Zhi-Bing Zhang, Auteur ; Zhi-Gang Shen, Auteur ; Jie-Xin Wang, Auteur |The purpose of this study was to prepare megestrol acetate (MA) nanoparticles via a liquid precipitation technique. Several experimental parameters, such as the stabilizer combination, the volume ratio of antisolvent to drug solution, the temper[...]![]()
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Qing Yang, Auteur ; Jie-Xin Wang, Auteur ; Fen Guo, Auteur |Hydroxyapatite (HAP) nanoparticles were successfully prepared without using organic modifiers by the combination of high-gravity reactive precipitation and hydrothermal method. The influences of the high-gravity level, the total reactant flow ra[...]![]()
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Na-Na Gao, Auteur ; Jie-Xin Wang, Auteur ; Lei Shao, Auteur |In this article, preliminary experimental results are presented on the absorption of carbon dioxide (CO2) in a novel high-throughput microporous tube-in-tube microchannel reactor (MTMCR), with an aqueous solution of monoethanolamine (MEA) and a [...]


