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固化和炭化条件对酚醛树脂基球形活性炭机械强度与吸附性能的影响 被引量:6
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作者 杨骏兵 凌立成 刘朗 《炭素技术》 CAS CSCD 1999年第4期10-14,共5页
讨论了不同固化温度、固化时间以及炭化升温速率对酚醛树脂基球形活性炭机械强度与吸附性能的影响。结果表明,随着固化温度的升高,酚醛树脂基球形活性炭的机械强度先升后降,吸附能力先降后升。随着固化时间的延长,其机械强度增大,... 讨论了不同固化温度、固化时间以及炭化升温速率对酚醛树脂基球形活性炭机械强度与吸附性能的影响。结果表明,随着固化温度的升高,酚醛树脂基球形活性炭的机械强度先升后降,吸附能力先降后升。随着固化时间的延长,其机械强度增大,吸附能力下降。随着炭化升温速率的上升,机械强度下降。 展开更多
关键词 固化 炭化 酚醛树脂基 球形 活性炭强度 吸附
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Role of Ni(NO_3)_2 in the preparation of a magnetic coal-based activated carbon 被引量:18
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作者 ZhangJun Xie Qiang Liu Juan Yang Mingshun Yao Xing 《Mining Science and Technology》 EI CAS 2011年第4期599-603,共5页
The role of Nil(NO3)2 in the preparation of a magnetic activated carbon is reported in this paper. Magnetic coal-based activated carbons (MCAC) were prepared from Taixi anthracite with low ash content in the prese... The role of Nil(NO3)2 in the preparation of a magnetic activated carbon is reported in this paper. Magnetic coal-based activated carbons (MCAC) were prepared from Taixi anthracite with low ash content in the presence of Ni(NO3)2. The MCAC materials were characterized by a vibrating sample magnetometer (VSM), X-ray diffraction (XRD), a scanning electric microscope (SEM), and by N2 adsorption. The cylindri- cal precursors and derived char were also subjected to thermogravimetric analysis to compare their behavior of weight losses during carbonization. The results show that MCAC has a larger surface area (1074 m21g) and a higher pore volume (0.5792 cm3/g) with enhanced mesopore ratio (by about 10~). It also has a high saturation magnetization (1.6749 emu/g) and low coercivity (43.26 Oe), which allows the material to be magnetically separated. The MCAC is easily magnetized because the nickel salt is con- vetted into Ni during carbonization and activation. Metallic Ni has a strong magnetism on account of electrostatic interaction. Added Ni(NO3)2 catalyzes the carbonization and activation process by accelerat- ing burn off of the carbon, which contributes to the development of mesopores and macropores in the activated carbon. 展开更多
关键词 Magnetic coal-based activated carbon Ni(NO3)2 Magnetic properties Pore structure
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