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首页> 外文期刊>Defence science journal >Effect of Formaldehyde to Phenol Ratio in Phenolic Beads on Pore Structure, Adsorption and Mechanical Properties of Activated Carbon Spheres
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Effect of Formaldehyde to Phenol Ratio in Phenolic Beads on Pore Structure, Adsorption and Mechanical Properties of Activated Carbon Spheres

机译:甲醛对酚醛珠酚珠的影响孔隙结构,活性炭球的吸附和力学性能

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Phenolic beads (PBs) prepared from different formaldehyde to phenol (F/P) molar ratios were used as polymeric precursor for activated carbon. Activated carbon spheres (ACSs) have been produced from PBs via the physical activation process using carbon dioxide (CO2) as activating agent at 950 °C for different burn-off. The prepared ACSs were investigated for nitrogen adsorption, surface morphology and compressive strength by means of BET surface area analyser, scanning electron microscopy (SEM) and carbon and sphere tester techniques. The results indicated that the effects of F/P ratio observed, especially variation in the adsorption and mechanical properties. It was found that ACSs obtained from F/P ratio one showed the superior adsorption properties, possessed a high BET surface area in a range of 836 m2 g-1 to 3694 m2 g-1 with high pore volume (0.47 cm3 g-1 - 2.47 cm3 g-1) and 73-97 per cent microporosity. The BET surface area and pore volume increased, while the microporosity gradually decreased, with increasing the extent of burn-off. Compressive strength decreased with increasing F/P ratio as well as the extent of burn-off. ACSs upheld improved compressive strength (from 160 N mm-2 to 9 N mm-2) than those obtained from F/P ratio 2 and 3 in PBs. SEM studies of ACSs demonstrated well developed pore structure.
机译:用不同甲醛制备给苯酚(F / P)摩尔比的酚珠(PBS)用作活性炭的聚合物前体。通过使用二氧化碳(CO2)在950℃下以950℃的激活剂,通过物理活化方法从PBS产生活性炭球(ACS)。通过BET表面积分析仪,扫描电子显微镜(SEM)和碳和球体测试技术,研究制备的ACSS进行氮吸附,表面形态和抗压强度。结果表明,观察到的F / P比的影响,尤其是吸附和机械性能的变化。结果发现,从F / P比的ACSS显示出优异的吸附性能,具有高孔体积的836m 2 G-1至3694m 2 G-1的高BET表面积(0.47cm 3 G-1 - 2.47 cm3 g-1)和73-97%的微孔。 BET表面积和孔体积增加,而微孔率逐渐降低,随着燃烧的程度而增加。抗压强度随着F / P比的增加而降低,以及烧伤程度。 ACSS对PBS中的F / P比率2和3获得的那些,ACSS得到了改进的抗压强度(从160 n mm-2至9 n mm-2)。 SEM对ACSS的研究表明孔隙结构良好。

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