欢迎登录材料期刊网

材料期刊网

高级检索

通过水蒸气活化法制备了聚苯乙烯基球形活性炭,并研究了其对二苯并噻吩(DBT)的吸附性能.采用扫描电镜(SEM)、N2吸附、热重分析(TG)以及液相吸附试验考察了球形活性炭的结构特征.结果表明:以苯乙烯离子交换树脂为原料,通过水蒸气活化法,可以得到比表面积979m2/g~1672m2/g的球形活性炭.其中,BET比表面积和孔容随活化时间和水蒸气流量的增加而增大,而孔径小于0.7 nm的窄微孔却减小.球形活性炭对DBT的吸附量可达109.36mg/g,吸附量与比表面积和总孔容关系不大,而与小于0.7nm的窄微孔成正比.球形活性炭在对DBT的吸附过程中存在不可逆吸附.球形活性炭所含窄微孔的孔容越大,脱附所需要的温度越高,不可逆吸附量越大.

Polystyrene-based activated carbon spheres (PACS) were prepared by steam activation and their adsorption performance to a sulfur-containing dibenzothiophene (DBT) was studied. The textural structure of PACS was characterized by scanning electron microscopy, N2 adsorption, thermal gravimetric, and aqueous adsorption. Results showed that PACS with BET surface areas up to 979-1672m2/g were obtained. The BET surface areas and pore volumes increased with activation time and steam flow rate except for the volume of narrow micropores (<0.7 nm). The maximum adsorption capacity of PACS to DBT was 109.36mg/g and the adsorption capacity was related to the volume of narrow micropores, independent of surface area and total pore volume. Irreversible adsorption existed between DBT and PACS The larger the volume of the narrow micropores, the higher the desorption temperature and the larger the amount of sulfur retained after heating.

参考文献

[1] Choi KH;Korai Y;Mochida I et al.Impact of removal extent of nitrogen species in gas oil on its HDS performance:an efficient approach to its ultra deep desulfuriztion[J].Applied Catalysis B:Environmental,2004,50:9-16.
[2] Ma X;Sprague M;Song C .Deep desulfurization of gasoline by selective adsorption over nickel-based adsorption for fuel cell applications[J].Industrial and Engineering Chemistry Research,2005,44:5768-5775.
[3] Yang RT.;Hernandez-Maldonado AJ.;Yang FH. .Desulfurization of transportation fuels with zeolites under ambient conditions[J].Science,2003(5629):79-81.
[4] Shaker Haji;Can Erkey .Removal of dibenzothiophene from model diesel by adsorption on carbon aerogels for fuel cell application[J].Lad Eng Chem Res,2003,42:6933-6937.
[5] Arturo J. Hernandez-Maldonado;Ralph T. Yang .Desulfurization of Commercial Liquid Fuels by Selective Adsorption via π-Complexation with Cu(I)-Y Zeolite[J].Industrial & Engineering Chemistry Research,2003(13):3103-3110.
[6] 解强,张香兰,李兰廷,金雷.活性炭孔结构调节:理论、方法与实践[J].新型炭材料,2005(02):183-190.
[7] Kim J H;Ma X;Zhou A et al.Ultra-decp desulfurization and denitrogenation of diesel fuel by selective adsorption over three different adsorbents:A study on adsorptive selectivity and mechanism[J].Catalysis Today,2006,111:74-83.
[8] Sano Y;Choi K;Korai Y et al.Adsorptive removal of sulfur and nitrogen species from a straight mn gas oil over activated carbons for its deep hydrodesulfurization[J].Applied Catalysis B:Environmental,2004,49:219-225.
[9] Zhou A;Ma X;Song C .Liquid-phase adorption of multi-ring thiophenic sulfur compounds on carbon materials with different surface properties[J].Journal of Physical Chemistry B,2006,110:4699-4707.
[10] Wang YH;Yang RT .Desulfurization of liquid fuels by adsorption on carbon-based sorbents and ultrasound-assisted sorbent regeneration[J].Langmuir: The ACS Journal of Surfaces and Colloids,2007(7):3825-3831.
[11] Ania C O;Bandosz T J .Importance of structural and chemical heterogeneity of activated carbon surfaces for adsorption of Dibenzothiophene[J].Langmuir,2005,21:7752-7759.
[12] Jae Hyung Kim;Xiaoliang Ma;Anning Zhou;Chunshan Song .Ultra-deep desulfurization and denitrogenation of diesel fuel by selective adsorption over three different adsorbents:A study on adsorptive selectivity and mechanism[J].Catalysis Today,2006(1/2):74-83.
[13] C.O. Ania;T.J. Bandosz .Metal-loaded polystyrene-based activated carbons as dibenzothiophene removal media via reactive adsorption[J].Carbon: An International Journal Sponsored by the American Carbon Society,2006(12):2404-2412.
[14] Jiang ZX.;Liu Y.;Sun XP.;Tian FP.;Sun FX.;Liang CH.;You WS.;Han CR. Li C. .Activated carbons chemically modified by concentrated H2SO4 for the adsorption of the pollutants from wastewater and the dibenzothiophene from fuel oils[J].Langmuir: The ACS Journal of Surfaces and Colloids,2003(3):731-736.
[15] 宋燕,凌立成,乔文明.沥青基球状活性炭对肌酐及维生素B12吸附行为的研究[J].新型炭材料,1998(04):19-22.
[16] 刘植昌,凌立成,吕春祥,乔文明,樊彦贞,刘朗.沥青基球状活性炭对胆红素吸附性能的初步研究[J].新型炭材料,1999(02):44-48.
[17] 吕春祥,李开喜,吕永根,梁晓怿,宋燕,凌立成,王占仁,国建琴.沥青基球状活性炭的医用性能评价[J].新型炭材料,2002(03):11-14.
[18] 吕春祥,凌立成,袁淑霞,梁栋,李永红.硝苯地平在球状活性炭中的吸附及缓释行为[J].新型炭材料,2007(01):17-22.
[19] 滕娜,梁晓怿,刘朝军,刘小军,张睿,乔文明,凌立成.沥青基球状活性炭对几种生理分子的吸附性能[J].新型炭材料,2006(04):326-330.
[20] Liu Z;Ling L;Qiao W et al.Effect of hydrogen on the mesopore development of pitch-based spherical activated carbon containing iron during activation by steam[J].Carbon,1999,37(12):2063-2066.
[21] Zhichang Liu;Licheng Ling;Wenming Qiao .Effects of various metals and their loading methods on the mesopore formation in pitch-based spherical activated carbon[J].Carbon: An International Journal Sponsored by the American Carbon Society,1999(8):1333-1335.
[22] Liu Zhichang;Ling Licheng;Qiao Wenming .Preparation of pitch-based spherical activated carbon with developed mesopore by the aid of ferrocene[J].Carbon: An International Journal Sponsored by the American Carbon Society,1999(4):663-667.
[23] Jun-Bing Yang;Li-Cheng Ling;Lang Liu;Fei-Yu Kang;Zheng-Hong Huang;Hui Wu .Preparation and properties of phenolic resin-based activated carbon spheres with controlled pore size distribution[J].Carbon: An International Journal Sponsored by the American Carbon Society,2002(6):911-916.
[24] Liu, CJ;Liang, XY;Liu, XJ;Wang, Q;Teng, N;Zhan, L;Zhang, R;Qiao, WM;Ling, LC .Wettability modification of pitch-based spherical activated carbon by air oxidation and its effects on phenol adsorption[J].Applied Surface Science,2008(9):2659-2665.
[25] Olivier JP. .Improving the models used for calculating the size distribution of micropore volume of activated carbons from adsorption data[J].Carbon: An International Journal Sponsored by the American Carbon Society,1998(10):1469-1472.
[26] Li L;Quinlivan P A;Knappe D R U .Effects of activated carbon surface chemistry and pore structure on the adsorption of organic contaminants from aqueous solution[J].Carbon,2002,40:2085-2100.
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:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%