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Effect of chemical activation on the cellular structure of biopitch-derived green carbon foam

机译:化学活化对生物源绿碳泡沫细胞结构的影响

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摘要

Current researches pay particular attention to cost-effective and abundant raw materials such as biomass as an alternative to fossil-derived-carbonaceous precursors. The aim of this study is to examine the usability of pyrolytic oil as a biopitch source in the foaming process and to investigate the effect of chemical activation on the characteristics of carbon foam. The elemental analysis of the biopitch supported the fact that the H/C and O/C ratios of wood-tar-based-pitch had high oxygenated and aliphatic carbons in contrast to fossil-pitches. Various basic analysis methods such as elemental analysis, X-ray diffraction, nitrogen sorption isotherms, Raman spectroscopy, scanning and transmission electron microscopy, true/bulk density and compressive strength tests were applied to analyze carbon foams. When the results of nitrogen sorption analysis were examined, it was determined that the surface area of carbon foam increased to about 31 times after activation. According to the pore size distribution graphs, the foams had regular pore distribution; additionally, the pore size in the mesopore region was determined to shift to the micropore region with activation. Compressive strength values were in the range of 0.40-1.97 MPa. Moreover, an increase in porosity values and a decrease in compressive strength values were observed due to enhancing porosity as a result of the activation process.
机译:目前的研究特别注意了成本效益和丰富的原材料,如生物量,作为化石衍生的 - 碳质前体的替代品。本研究的目的是在发泡过程中检测热解油作为生物接口源的可用性,并研究化学活化对碳泡沫特性的影响。 BIoPitch的元素分析支持了木焦油基沥青的H / C和O / C比与化石沥青形成高氧化和脂族碳。各种基本分析方法,如元素分析,X射线衍射,氮吸附等温,拉曼光谱,扫描和透射电子显微镜,真/散装密度和抗压强度试验分析碳泡沫。当检查氮素吸附分析的结果时,确定碳泡沫的表面积增加至活化后的约31次。根据孔径分布图,泡沫常规孔隙分布;另外,确定了中孔区中的孔径,以通过活化转移到微孔区域。压缩强度值在0.40-1.97MPa的范围内。此外,由于活化过程的结果,由于增强孔隙率,观察到孔隙率值的增加和压缩强度值的降低。

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