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Synthesis of multi-walled carbon nanotube in a gas-solid fluidized bed

机译:气固流化床中多壁碳纳米管的合成

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Multi-walled carbon nano-tubes (MWCNTs) were produced by acetylene decomposition on Fe-catalyst in a fluidized bed reactor (0.056 m-IDx 1.0m-high) with a sintered metal distributor (40 μm pore size). The Fe-catalysts were tested in decomposition of the different ratios of acetylene, hydrogen and nitrogen at the temperature range of 823-973 K. The physical properties of the carbon nano-tubes were determined by HR-TEM, SEM and Raman spec-troscopy. The multi-walled carbon nano-tubes produced from the fluidized bed reactor are sub-aggregates and entangled with each other. The synthesized MWCNTs have outer diameters of a few tens of nanometers at 823-973 K. It has been found that the synthesized CNT agglomerates are in good condition with less amorphous carbon with the reaction time of 30 to 60 minutes from the analyses of Raman Spectra, SEM and TEM, The ratio (I_D/I_G) of amorphous carbon (I_D= 1,295 cm~(-1)) and crystalline carbon (I_G=1,590 cm~(-1)) range from 1.15 to 1.49.
机译:多壁碳纳米管(MWCNT)是通过乙炔在具有烧结金属分布器(孔径为40μm)的流化床反应器(0.056 m-IDx 1.0m高)中的铁催化剂上乙炔分解而制得的。在823-973 K的温度范围内测试了Fe催化剂在不同比例的乙炔,氢气和氮气中的分解。通过HR-TEM,SEM和Raman光谱法确定了碳纳米管的物理性质。 。由流化床反应器生产的多壁碳纳米管是子聚集体并且彼此缠结。合成的MWCNT在823-973 K处的外径为几十纳米。从拉曼光谱分析中发现,合成的CNT团聚体状态良好,无定形碳较少,反应​​时间为30至60分钟。 ,SEM和TEM,非晶碳(I_D = 1,295cm〜(-1))与结晶碳(I_G = 1,590cm〜(-1))的比(I_D / I_G)为1.15至1.49。

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