Enhancement in Dibenzothiophene Reactive Adsorption from Liquid Fuel via Incorporation of Sulfur Heteroatoms into the Nanoporous Carbon Matrix

被引:48
作者
Seredych, Mykola [1 ]
Khine, Monmon [2 ]
Bandosz, Teresa J. [1 ]
机构
[1] CUNY City Coll, Dept Chem, New York, NY 10031 USA
[2] CUNY City Coll, Dept Chem Engn, New York, NY 10031 USA
基金
美国国家科学基金会;
关键词
carbon; dibenzothiophene; liquid fuel; reactive adsorption; sulfur; ACTIVATED CARBON; DIESEL FUEL; DEEP DESULFURIZATION; SURFACE-PROPERTIES; REMOVAL; CAPACITY; ACID; SELECTIVITY; CHEMISTRY; MECHANISM;
D O I
10.1002/cssc.201000366
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Adsorption of dibenzothiophene (DBT) and 4,6-dimethyl-dibenzothiophene (DMDBT) from simulated diesel fuel was investigated with polymer-derived carbon matrices. Sulfur was incorporated to the carbon surface via a high-temperature hydrogen sulfide reduction of oxygen-containing groups. The resultant carbons were characterized by nitrogen adsorption, thermal analysis, potentiometric titration, and elemental analysis. The selectivities for DBT and DMDBT adsorption were calculated with reference to naphthalene. The carbon matrices studied had comparable structures, hence, the effects of the sulfur functionalities were evident in an increase in dibenzothiophenes selectivity and the breakthrough capacity; this was especially visible at a breakthrough point where small pores are expected to be active in the adsorption process. Incorporation of sulfur atoms into the aromatic rings of the carbon matrix increases the ability of the surface to attract dibenzothiophenes via dispersive interactions (sulfur-sulfur bridges). Sulfur and sulfur-oxygen groups present in larger pores enhance the amount of adsorbed dibenzothiophenes via specific acid-base and polar interactions. They also contribute to the reactive adsorption of DBT and DMDBT (oxidized) and their chemisorption on the carbon surface.
引用
收藏
页码:139 / 147
页数:9
相关论文
共 38 条
[1]   Sulfur removal from model diesel fuel using granular activated carbon from dates' stones activated by ZnCl2 [J].
Alhamed, Yahia A. ;
Bamufleh, Hisham S. .
FUEL, 2009, 88 (01) :87-94
[2]   Metal-loaded polystyrene-based activated carbons as dibenzothiophene removal media via reactive adsorption [J].
Ania, C. O. ;
Bandosz, T. J. .
CARBON, 2006, 44 (12) :2404-2412
[3]   Importance of structural and chemical heterogeneity of activated carbon surfaces for adsorption of dibenzothiophene [J].
Ania, CO ;
Bandosz, TJ .
LANGMUIR, 2005, 21 (17) :7752-7759
[4]  
Bandosz TJ, 2006, INTERFACE SCI TECHNO, V7, P159
[5]   The characterization of activated carbons with oxygen and nitrogen surface groups [J].
Biniak, S ;
Szymanski, G ;
Siedlewski, J ;
Swiatkowski, A .
CARBON, 1997, 35 (12) :1799-1810
[6]   Sulfurization of a carbon surface for vapor phase mercury removal - II: Sulfur forms and mercury uptake [J].
Feng, Wenguo ;
Borguet, Eric ;
Vidic, Radisav D. .
CARBON, 2006, 44 (14) :2998-3004
[7]   XPS DATA FOR LINEAR 3-CENTER, 4-ELECTRON BONDING IN SULFUR SPECIES [J].
GASSMAN, PG ;
CALLSTROM, MR ;
MARTIN, JC ;
RONGIONE, JC .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1988, 110 (26) :8724-8725
[8]   Surface properties of porous carbon obtained from polystyrene sulfonic acid-based organic salts [J].
Hines, D ;
Bagreev, A ;
Bandosz, TJ .
LANGMUIR, 2004, 20 (08) :3388-3397
[9]   STABLE NUMERICAL-SOLUTION OF THE ADSORPTION INTEGRAL-EQUATION USING SPLINES [J].
JAGIELLO, J .
LANGMUIR, 1994, 10 (08) :2778-2785
[10]   CARBON SURFACE CHARACTERIZATION IN TERMS OF ITS ACIDITY CONSTANT DISTRIBUTION [J].
JAGIELLO, J ;
BANDOSZ, TJ ;
SCHWARZ, JA .
CARBON, 1994, 32 (05) :1026-1028