[1] 陈鹏. 中国煤炭性质、分类和利用[M]. 北京:化学工业出版社,2011. [2] TYLECOTE R F. A history of metallurgy [M]. London:Metals Society,1978. [3] 郭树才. 煤化工工艺学[M]. 北京:化学工艺出版社,2010. [4] 郭树才. 煤化学工程[M]. 北京:冶金工业出版社,1991. [5] 郭树才,罗长齐,张代佳,等. 褐煤固体热载体干馏新技术工业性试验[J]. 大连理工大学学报,1995,35(1):51-56. [6] 姚昭章主编. 炼焦学[M]. 北京:冶金工业出版社,1983. [7] VAN HEEK K H. Progress of coal science in the 20th century[J]. Fuel,2000,79(1):1-26. [8] ELLIOTT A M.Chemistry of coal utilization 2nd sup[M]. John Wiley &Sons,1981. [9] ANNE-GAELLE Collot. Matching gasification technologies to coal properties[J]. International Journal of Coal Geology,2006,65 (5):191-212. [10] 贺永德. 现在煤化工技术手册[M]. 北京:化学工艺出版社,2004. [11] COLLOT A G. Clean fuels from coal[M]. London,UK:IEA Clean Coal Centre,2004,. [12] COLLOT A G. Matching gasifiers to coals (CCC/65) [M]. London,UK:IEA Clean Coal Centre,2002. [13] DENG Zhongyi,XIAO Rui,JIN Baosheng,et al.. Computational fluid dynamics modeling of coal gasification in a pressurized spout-fluid Bed[J]. Energy & Fuels ,2008,22:1560-1569. [14] 王辅臣,于广锁,龚欣,等. 大型煤气化技术的研究与发展[J]. 化工进展,2009,28(2):173-180. [15] 赵锦波,王玉庆. 煤气化技术的现状及发展趋势[J]. 石油化工,2014,43(2):125-131. [16] ANDERSON. R A The Fisher-Tropsch synthesis[M]. Academic Press,1984. [17] ROMEYI,et al. Synthetic fuels from coal[M]. London:Graham & Trotman,1987:117-372. [18] 舒歌平,史士东,李克健. 煤炭液化技术[M]. 北京:煤炭工业出版社,2003. [19] 朱成章.影响煤炭使用的主要因素是环境政策[J]. 煤炭经济研究,2003,1:26-28. [20] JOSEPH J Helble,WAHAB Mojtahedi T,JUSSI Lyyriinen,et al. Trace element partitioning during coal gasification[J]. Fuel,1996,75(8):931-939. [21] 联合国环境规划署工业与环境中心,国际钢铁协会. 钢铁工业与环境技术和管理问题[M]. 北京:中国环境科学出版社,1992. [22] 王绍文,钱雷,秦华,等. 焦化废水无害化处理与回用技术[M]. 北京:冶金工业出版社,2005. [23] 任源,韦朝海,吴超飞,等. 焦化废水水质组成及其环境学与生物学特性分析[J]. 环境科学学报,2007,27(7):1094-1100. [24] 韦朝海,朱家亮,吴超飞,等. 焦化行业废水水质变化影响因素及污染控制化[J]. 化工进展,2011,30(1):225-232. [25] 高晋生,鲁军,王杰. 煤化工过程中的污染与控制[M]. 北京:化学工业出版社,2010. [26] JOHNSON K D,MARTIN C D,DAVIS T G. Treatment of wastewater effluent from a natural gas compressor station[J]. Water Science and Technology,1999,40(3):51-56. [27] GAI Hengjun,JIANG Yanbin,ANDRZEJ Kraslawski. Conceptual design and retrofitting of the coal-gasification wastewater treatment process[J]. Chemical Engineering Journal,2008,138(3): 84-94. [28] ANDRÉ Faaij,RENÉ van Ree,LARS Waldheim,et al. Gasification of biomass wastes and residues for electricity production[J]. Biomass and Bioenergy,1997,12(6):387-407. [29] FANG Rong,DAVID G Victor. Coal liquefaction policy in China:explaining the policy reversal since 2006[J]. Energy Policy,2011,39(12):8175-8184. [30] LI Jun,YANG Jianli,LIU Zhenyu. Hydro-treatment of a direct coal liquefaction residue and its components[J]. Catalysis Today,2008,130(5):389-394. [31] 朱银惠. 煤化学[M]. 北京:化学工业出版社,2010. [32] GOODARZI F,HUGGINS F E,SANEI H. Assessment of elements,speciation of As,Cr,Ni and emitted Hg for a Canadian power plant burning bituminous coal[J]. International Journal of Coal Geology,2008,74 (4):1-12. [33] 韦朝海,贺明和,吴超飞,等. 生物三相流化床A/O2组合工艺在焦化废水处理中的工程应用[J]. 环境科学学报,2007,27(7):1107-1112. [34] 韦朝海. 煤化工中焦化废水的污染、控制原理与技术应用[J]. 环境化学,2012,31(10):1465-1472. [35] ZHANG M,TAY J H. Coke plant wastewater treatment by fixed biofilm system for COD and NH3-N removal [J]. Water Research,1998,32:519-527. [36] 张万辉,韦朝海,吴超飞,等. 焦化废水中有机物的识别、污染特性及其在废水处理过程中的降解[J]. 环境化学,2012,10(10):1480-1486. [37] 张万辉,韦朝海,晏波,等. 焦化废水中溶解性有机物组分的特征分析[J]. 环境化学,2012,31(5): 608-702. [38] 任源,韦朝海,吴超飞. 生物流化床A/O2工艺处理焦化废水过程中机组分的GC/MS分析[J]. 环境科学学报,2006,26(11):1785-1791. [39] 张伟,韦朝海,彭平安,等. A/O/O生物流化床处理焦化废水中酚类组成及降解特性分析[J]. 环境工程学报,2010,4(2):253-238. [40] OLESZEK-KUDLAK S,SHIBATA E,NAKAMURA T. Solubilities of selected PCDDs and PCDFs in water and various chloride solutions[J]. Chemical Engineering Data,2007,52(5):1824- 1829. [41] 蔡英,任曼,彭平安,等. 焦化废水处理过程中溴代二噁英类化合物的去除途径与生成机理[J]. 科学通报,2013,58(4): 313-320. |