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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Comparative study of nanopores in activated carbons by HRTEM and adsorption methods
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Comparative study of nanopores in activated carbons by HRTEM and adsorption methods

机译:HRTEM与吸附法研究活性炭中纳米孔的比较研究。

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Detailed analysis of nanopores (IUPAC micropores at pore half-width x < 1 nm) of carbonised porous phenolformaldehyde resin microbeads used as a precursor of activated carbon (AC) and CO2 activated carbon (at 50% burn-off) has been performed on the basis of high-resolution transmission electron microscopy (HRTEM) image analysis and nitrogen adsorption data analysed using several density functional theory (DFT) methods. The results of quenched solid DFT (QSDFT) andnonlocal (NLDFT) are in agreement with the pore size distributions of nanopores based on the HRTEM image analysis. Development of porosity with progressive activation degree in a series of ACs leads to enhancement of the deviation of the pore shape from the used pore models. The TG/DTA data and Raman spectra show nonlinear but weak changes in the AC characteristics with increasing bum-off degree.
机译:在碳纳米管上对用作活性炭(AC)和CO2活性炭前驱体的碳化多孔酚醛树脂微珠的纳米孔(IUPAC微孔的半个宽度x <1 nm)进行了详细分析。高分辨率透射电子显微镜(HRTEM)图像分析和使用几种密度泛函理论(DFT)方法分析的氮吸附数据的基础。基于HRTEM图像分析,淬火固体DFT(QSDFT)和非局部(NLDFT)的结果与纳米孔的孔径分布一致。在一系列AC中,具有逐步激活度的孔隙度的发展导致孔隙形状与所用孔隙模型的偏差增大。 TG / DTA数据和拉曼光谱显示出非线性,但随着烙印度的增加,AC特性变化很小。

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