[1] 王世昌. 中国燃煤发电1993—2008年CO 2 减排研究[J]. 中国电力,2012,45(7):53-56. WANG Shi-chang. Study on CO 2 reduction by chinese coal-fired power generation between 1993 and 2008[J]. Electric Power, 2012, 45(7): 53-56. [2] 候建朝,谭忠福. 电力生产CO 2 排放变化影响因素分解[J]. 中国电力,2011,44(11):39-41. HOU Jian-zhao, TAN Zhong-fu. The factor decomposition of CO 2 emission changes in electricity production in China[J]. Electric Power, 2011, 44(11): 39-41. [3] 王世昌,王盛,叶冠南. 我国电站燃煤锅炉CO 2 排放状况及减排措施[J]. 热力发电,2012,41(12):1-4. WANG Shi-chang, WANG Sheng, YE Guan-nan. CO 2 emission status of domestic coal fired boiler and its mitigation measures [J]. Thermal Power Generation, 2012, 41(12): 1-4. [4] 周颖,蔡博峰,刘兰翠,等. 我国火电行业二氧化碳排放空间分布研究[J]. 热力发电,2011,40(10):1-3. ZHOU Ying, CAI Bo-feng, LIU Lan-cui, et al . Study on spatial distribution of CO 2 emission from thermal power industry of China[J]. Thermal Power Generation, 2011, 40(10): 1-3. [5] 李星涛,郭肖,王万彬. 低渗透油藏注CO 2 提高采收率技术探讨[J]. 重庆科技学院学报,2010,12(1):27-29. LI Xing-tao, GUO Xiao, WANG Wan-bin. Technical discussionon CO 2 EOR of low permeability reservoir[J]. Journal of Chongqing University of Science and Technology, 2010, 12(1): 27-29. [6] 黄斌,刘练波,许世森. 二氧化碳的捕获和封存技术进展[J]. 中国电力,2007,40(3):14-17. HUANG Bin, LIU Lian-Bo, XU Shi-sen. Evolution of CO 2 capture and sequestration technology [J]. Electric Power, 2007, 40(3): 14-17. [7] 赵毅,沈艳梅,倪世清,等. 燃煤电厂CO 2 捕集分离技术研究现状及其展望[J]. 热力发电,2011,40(6):9-12. ZHAO Yi, SHEN YAN-mei, NI Shi-qing, et al . Status quo of research in CO 2 capture and separation technology for coal-fired power plants and prospects thereof [J]. Thermal Power Generation, 2011, 40(6): 9-12. [8] FERON P H M, HENDRIKS C A. CO 2 capture process principles and costs[J]. Oil & Gas Science and Technology, 2005, 60(3): 451-459. [9] GAO Lan-yu, FANG Meng-xian, LI Hai-long, et al . Cost analysis of CO 2 transportation: Case study in China[C]// Proceedings of GHGT 10 Conference. Amsterdam, 2010. [10] RICHARD SVENSSON, MIKAEL ODENBERGER, FILIP JOHNSSON, et al . Transportation infrastructure for CCS- experiences and expected development[C]// Proceedings of GHGT 7 Conference. Vancouver, 2004. [11] ESSANDOH-YEDDU J, GÜLEN G. Economic modeling of carbon dioxide integrated pipeline network for enhanced oil recovery and geologic sequestration in the Texas Gulf Coast region[J]. Energy Procedia, 2009, 1(1): 1603-1610. [12] 喻西崇,李志军,郑晓鹏,等. CO 2 地面处理、液化和运输技术[J]. 天然气工业,2008,28(8):99-101. YU Xi-chong, LI Zhi-jun, ZHENG Xiao-peng, et al . Carbon dioxide ground processing, storage and transportation[J]. Natural Gas Industry, 2008, 28(8): 99-101. [13] ALLINSON G, CINAR Y, HOU W, et al . The costs of CO 2 transport and injection in australia [R]. School of Petroleum Engineering, the University of New South Wales, Sydney, 2009. [14] 罗彩霞,田俊杰. 填料塔塔径的优化[J]. 科技情报开发与经济,2005,15(7):158-159. LUO Cai-xia, TIAN Jun-jie. Optimization of packed tower’s diameter [J]. Tech Information Development & Economy, 2005, 15(7): 158-159. [15] MCCOLLUM D L, OGDEN J M. Techno-economic models for carbon dioxide compression, transport, and storage & correlations for estimating carbon dioxide density and viscosity [R]. Institute of Transportation Studies, UC Davis, 2006. |