[1] JIANG B C,ZHANG Y C,ZHOU J X,et al. Effects of chemical modification of petroleum cokes on the properties of the resulting activated carbon[J]. Fuel,2008,87(10):1844-1848. [2] RAMBABU N,AZARGOHAR R,DALAI A K,et al. Evaluation and comparison of enrichment efficiency of physical/chemical activations and functionalized activated carbons derived from fluid petroleum coke for environmental applications[J]. Fuel Processing Technology,2013,106:501-510. [3] RAMIREZ-MUNIZ K,SONG S X,BERBER-MENDOZA S,et al. Adsorption of the complex ion Au onto sulfur-impregnated activated carbon in aqueous solutions[J]. Journal of Colloid and Interface Science,2010,349(2):602-606. [4] LEE S H,RHIM Y J,CHO S P,et al. Carbon-based novel sorbent for removing gas-phase mercury[J]. Fuel,2006,85(2):219-226. [5] 吴诗勇,吴幼青,顾菁,等. 高温煅烧条件下石油焦和沥青焦的物理结构及其CO2 气化特性[J]. 石油学报(石油加工),2009,25(2):258-265. [6] 顾晓利,马旭,李丽鲜,等. 基于 TG-FTIR 分析的木屑热解机理[J]. 石油学报(石油加工),2013(1):174-180. [7] 王贵金,郭大亮,袁洪友,等. 黑液与石油焦共热解及其产物特性研究[J]. 燃料化学学报,2014,42(5):545-551. [8] 李爽,陈静升,冯秀燕,等. 应用 TG-FTIR 技术研究黄土庙煤催化热解特性[J]. 燃料化学学报,2013,41(3):271-276. [9] 何川. 高硫石油焦脱硫技术研究[D]. 长沙:中南大学,2013. [10] WANG M J,HU Y F,WANG J C,et al. Transformation of sulfur during pyrolysis of inertinite-rich coals and correlation with their characteristics[J]. Journal of Analytical and Applied Pyrolysis,2013,104:585-592. [11] 马玲玲,秦志宏,张露,等. 煤有机硫分析中 XPS 分峰拟合方法及参数设置[J]. 燃料化学学报,2014,42(3):277-283. [12] LIU S,WEI M M,QIAO Y,et al. Release of organic sulfur as sulfur-containing gases during low temperature pyrolysis of sewage sludge[J]. Proceedings of the Combustion Institute,2015,35(3):2767-2775. [13] 杨建丽,李允梅,刘振宇. 兖州煤热解预脱硫行为(Ⅰ)热解过程中硫的迁移[J]. 化工学报,2003,54(10):1430-1435. [14] 李梅,杨俊和,张启锋,等. 高硫煤镜质组热解过程中结构变化及有机硫形态变迁规律研究[J]. 燃料化学学报,2014,42(2):138-145. [15] TELFER M,ZHANG D K. The influence of water-soluble and acid-soluble inorganic matter on sulphur transformations during pyrolysis of low-rank coals[J]. Fuel,2001,80(14):2085-2098. |