以蔗糖为炭源,磷酸为活化剂,采用真空浸渍法经炭化、活化制得膨胀石墨基C/C复合材料.采用SEM、氮气吸脱附法、TG和TEM等测试手段,研究了磷酸/蔗糖质量比(Xp)、蔗糖浓度对复合材料孔结构和比表面积的影响,利用FTIR和Boehm滴定法对复合材料表面的化学官能团进行表征,并考察了C/C复合材料对甲醛的吸附能力.结果表明:膨胀石墨基C/C复合材料含有大量的微孔、一定量的介孔和大孔,表面含有丰富的含氧官能团,有利于对甲醛极性分子的吸附.在Xp=1.0、蔗糖溶液浓度为30%(质量分数)时所制得的膨胀石墨基C/C复合材料比表面积最高,达到2112m2/g,孔容为1.08 mL/g,其对甲醛的吸附量为854mg/g,较同工艺制备的活性炭提高了26.9%.
参考文献
[1] | 封跃鹏,张太生.室内空气污染概述[J].环境监测管理与技术,2002,14(3):17-20.Feng Yuepeng,Zhang Taisheng.Outline of indoor air pollution[J].The Administration and Technique of Environmental Monitoring,2002,14(3):17-20. |
[2] | Kim Doo Il,Park Jong Hwa,Kim Shin Do,et al.Comparison of removal ability of indoor formaldehyde over different materials functionalized with various amine groups[J].Journal of Industrial and Engineering Chemistry,2011,508(1):1-5. |
[3] | 付猛,龚利云,张婷婷,等.EG/Na-X型沸石复合材料的制备及其对苯气体的吸附[J].复合材料学报,2011,28(4):162-166.Fu Meng,Gong Liyun,Zhang Tingting.Preparation of EG/Na-X zeolite composite and its adsorptive properties on benzene gas[J].Acta Materiae Compositae Sinica,2011,28(4):162-166. |
[4] | Ma Chanjuan,Li Xinghua,Zhu Tianle.Removal of lowconcentration formaldehyde in air by adsorption on activated carbon modified by hexamethylene diamine[J].Carbon,2011,49(8):2873-2875. |
[5] | Khan F I,Ghoshal A K.Removal of volatile organic compounds from polluted air[J].Journal of Loss Prevention in the Process Industries,2000,13(6):527-545. |
[6] | 沈昊宇,赵永刚,胡美琴,等.高分子聚羧酸-纳米Fe3O4磁性复合颗粒的制备及其对水中对羟基苯甲酸酯类化合物的吸附作用[J].复合材料学报,2009,26(4):68-73.Shen Haoyu,Zhao Yonggang,Hu Meiqin,et al.Preparation and adsorption properties of polycarboxylate nano-Fe3O4magnetic composite particles[J].Acta Materiae Compositae Sinica,2009,26(4):68-73. |
[7] | Tang Xiaojiang,Bai Yang,Duong Anh,et al.Formaldehyde in China:Production,consumption,exposure levels,and health effects[J].Environment International,2009,35(8):1210-1224. |
[8] | Biloe S,Goetz V,Mauran S.Characterization of adsorbent composite blocks for methane storage[J].Carbon,2001,39(11),1653-1662. |
[9] | Marêché J F,Bégin D,Furdin G,et al.Monolithic activated carbons from resin impregnated expanded graphite[J].Carbon 2001,39(5):771-785. |
[10] | Chen X,Zheng Y P,Kang F.Preparation and structure analysis of carbon/carbon composite made from phenolic resin impregnation into exfoliated graphite[J].Journal of Physics and Chemistry of Solids,2006,67(5/6):1141-1144. |
[11] | Baquero M C,Giraldo L,Moreno J C,et al.Activated carbons by pyrolysis of coffee bean husks in presence of phosphoric acid[J].J Anal Appl Pyrol,2003,70(2):779-784. |
[12] | Liu C B,Chen Z G,Chen H,et al.Preparation of expanded graphite-based composites by one step impregnation[J].Journal of Wuhan University of Technology:Materials Science Edition,2011,26(2):254-257. |
[13] | McKay G,Blair H S,Garden J R J.Adsorption of dyes on chitin Ⅰ:Equilibrium studies[J].Appl Polym Sci,1982,27(8):3043-3057. |
[14] | Balbuena P B,Lostoskie C,Keith E G,et al.Fundamental of adsorption[M].Suzuki M.Tokyo:Kodansha Ltd,1993. |
[15] | Boehm H P.Surface oxides on carbon and their analysis:A critical assessment[J].Carbon,2002,40(2):145-149. |
[16] | 汤进华,梁晓怿,龙东辉,等.活性炭孔结构和表面官能团对吸附甲醛性能影响[J].炭素技术,2007,26(3):21-25.Tang Jinhua,Liang Xiaoyi,Long Donghui,et al.Effects of micropore and functional groups of activated carbon on adsorption behavior of formaldehyde[J].Carbon Techniques,2007,26(3):21-25. |
[17] | Beck N V,Meech S E,Norman P R.Characterisation of surface oxides on carbon and their influence on dynamic adsorption[J].Carbon,2002,40(4):531-540. |
[18] | 付猛,王荣飞,赵晓兵,等.膨胀石墨的表面修饰及其对甲醛吸附性能研究[J].功能材料,2009,40(8):1322-1325.Fu Meng,Wang Rongfei,Zhao Xiaobing,et al.Modification of expanded graphite and itsadsorptive properties on formaldehyde gas[J].Functional Materials,2009,40(8):1322-1325. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%