外文翻译--超声波辐照法制备三维贯通多孔碳整体柱
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1、PDF外文:http:/ 中文 1960字 出处: Carbon, 2005, 43(13): 2808-2811 中文 3D interconnected macroporous carbon monoliths preparedby ultrasonic irradiation Nattaporn Tonanon , Adisak Siyasukh , Yunyong Wareenin , Tawatchai Charinpanitkul , Wiwut Tanthapanichakoon , Hirotomo Nishihara , Shin R. Mukai ,
2、 Hajime Tamon Abstract: A new method in preparation of 3D interconnected macroporous carbon monolith has been introduced. Ultrasonic irradiation(ultrasonic intensity 78 W/cm2) and low catalyst concentration (C/W = 10 mol/m3) of RF solution are used as an interesting and unique preparation method for
3、 3D interconnected macroporous sonogel (gel irradiated by ultrasound at gelation stage) and/or3D interconnected macroporous carbon monolith without using templates. Keywords: Porous carbon; Pyrolysis; Adsorption; Scanning electron microscopy; Porosity Macroporous monolith is an interesting structure
4、 that has interconnected skeletons in a single column, and this unique structure allows flow paths (throughpores)through the monolithic columns . Carbon monolith has high potential to be good candidates for applications such as columns for chromatography, catalyst supports, adsorbents and porous ele
5、ctrodes under continuous flow conditions. Macroporous carbon monoliths are mostly prepared by using carbon precursors and macroscopic shape templates . In general, macroscopic shape templates are interconnected skeleton such as silica template, zeolite, stable emulsions, polymer latex and the inters
6、titial volume of other porous structures. Carbon precursors are polymeric materials or precursor of polymeric materials such as sucrose, some thermoplastics, phenolic resin, copolymerization of resorcinol Fe(II) complex and other thermosettings. There are some reports on macroporous carbon aerogels
7、prepared by using metal catalyst or acid catalyst. In this work, a new method in preparation of 3D interconnected macroporous carbon monolith has been introduced. In general, ultrasonic irradiation has outstanding effects in many chemical reactions such as increasing reaction rates and yields
8、of products, shortening reaction time, altering the reaction path and making milder reaction conditions possible. An interesting role of ultrasonic irradiation on mesoporous properties of RF carbon gel when the ratio of catalyst to water C/W or pH is high was also reported 10. To the best of our kno
9、wledge, this study is the first to report on the work of ultrasonic irradiation (ultrasonic intensity 78W/cm2) together with low catalyst concentration (C/W = 10 mol/m3) of RF solution as an interestingand unique preparation method for 3D interconnected macroporous sonogel (gel irradiated by ultraso
10、und at gelation stage) and/or carbon monoliths without using templates. Macroporous sonogel monolith, precursors for macroporous carbon monolith, were prepared from resorcinol formaldehyde (RF) solutions which were composed of resorcinol (C6H4(OH)2) (R), formaldehyde (HCHO) (F), sodium carbonate (Na
11、2CO3) (C) and distilled water (W). All chemicals were research grades from Wako Pure Chemical Industries. Na2CO3 and distilled water were used as a basic catalyst and a diluent respectively. The ratios of resorcinol to formaldehyde (R/F), resorcinol to water (R/W) and catalyst to water (C/W) were fi
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