[1] |
程耀华, 杜尔顺, 田旭, 等. 电力系统中的碳捕集电厂:研究综述及发展新动向[J]. 全球能源互联网, 2020, 3(4):339-343.
|
|
CHENG Yaohua, DU Ershun, TIAN Xu, et al. Carbon capture power plants in power systems: review and latest research trends[J]. Journal of Global Energy interconnection, 2020, 3(4):339-343.
|
[2] |
张九天, 张璐. 面向碳中和目标的碳捕集、利用与封存发展初步探讨[J]. 热力发电, 2021, 50(1):1-6.
|
|
ZHANG Jiutian, ZHANG Lu. Preliminary discussion on development of carbon capture, utilization and storage for carbon neutralization[J]. Thermal Power Generation, 2021, 50(1):1-6.
|
[3] |
时飞, 李奕帆. 混合基质膜在碳捕集领域的研究进展[J]. 化工进展, 2020, 39(6):2453-2462.
|
|
SHI Fei, LI Yifan. Advances of mixed matrix membrane for CO2 capture, Chemical Industry and Engineering Progress 2020, 39(6):2453-2462.
|
[4] |
余子炎. 燃煤电厂CO2捕集、利用和封存与“捕集预留”分析[J]. 全面腐蚀控制, 2019, 33(11):8-10.
|
|
YU Ziyan. Coal-fired power plant carbon capture, use and storage and "trap set aside" analysis[J]. Total Corrosion Control, 2019, 33(11):8-10.
|
[5] |
杨胜, 张显娟, 逯鹏, 等. PBI膜在CO2捕集方面的研究进展[J]. 膜科学与技术, 2019, 39(6):150-156.
|
|
YANG Sheng, ZHANG Xianjuan, LU Peng, et al. Recent advances in polybenzimidazole(PBI) membranes for CO2 capture[J]. Membrane Science and Technology, 2019, 39(6):150-156
|
[6] |
秦积舜, 韩海水, 刘晓蕾. 美国CO2驱油技术应用及启示[J]. 石油勘探与开发, 2015, 42(2):209-216.
|
|
QIN Jishun, HAN Haishui, LIU Xiaolei. Application and enlightenment ofcarbon dioxide flooding in the United States of America[J]. Petroleum Exploration and Development, 2015, 42(2):209-216.
|
[7] |
李士伦, 周守信, 杜建芬, 等. 国内外注气提高石油采收率技术回顾与展望[J]. 油气地质与采收率, 2002, 9(2):1-5.
|
|
LI Shilun, ZHOU Shouxin, DU Jianfen, et al. Review and prospects for the development of EOR by gas injection at home and abroad[J]. Petroleum Geology and Recovery Efficiency, 2002, 9(2):1-5.
|
[8] |
TABER J J, MARTIN F D, SERIGHT R S. EOR screening criteria revisited - Part 1: Introduction to screening criteria and enhanced recovery field projects[J]. SPE Reservoir Engineering, 1997, 12(3):189-198.
doi: 10.2118/35385-PA
|
[9] |
Jarrell P M, Fox C, Michael H. Stein, PRACTICAL ASPECTS OF CO2 FLOODING. Society of Petroleum Engineers Inc., 2002.
|
[10] |
张本艳, 周立娟, 何学文, 等. 鄂尔多斯盆地渭北油田长3储层注CO2室内研究[J]. 石油地质与工程, 2018, 32(3):87-90.
|
|
ZHANG Benyan, ZHOU Lijuan, HE Xuewen, et al. A laboratory study on CO2 injection of Chang 3 reservoir of Weibei oilfield in Ordosbasin[J]. Petroleum Geology & Engineering, 2018, 32(3):87-90.
|
[11] |
廖洪. S油藏注CO2提高采收率技术[D]. 成都:西南石油大学, 2017.
|
|
LIAO Hong. The EOR study of CO2 injection in S reservoir[D]. Chengdu: Southwest Petroleum University, 2017.
|
[12] |
李孟涛, 杨广清, 李洪涛. CO2混相驱驱油方式对榆树林油田采收率影响研究[J]. 石油地质与工程, 2007, 21(4):52-54.
|
|
LI Mengtao, YANG Guangqing, LI Hongtao. Study of the influence of CO2 miscible displacement on enhanced oil recovery in Yushulin oilfield[J]. Petroleum Geology and Engineering, 2007, 21(4):52-54.
|
[13] |
杨勇. 胜利油田特低渗透油藏CO2驱技术研究与实践[J]. 油气地质与采收率, 2015, 22(6):41-46.
|
|
YANG Yong. Research and application of CO2 flooding technology in extra-low permeability reservoirs of Shengli Oilfield[J]. Petroleum Geology and Recovery Efficiency, 2020, 27(1):11-19.
|
[14] |
曹绪龙, 吕广忠, 王杰, 等. 滩坝砂特低渗透油藏CO2驱油技术及应用[J]. 油气藏评价与开发, 2019, 9(3):41-46.
|
|
CAO Xulong, LYU Guangzhong, WANG Jie, et al. Technology and application of CO2 flooding in ultra-low permeability beach-bar sand reservoir[J]. Reservoir Evaluation and Development, 2019, 9(3):41-46.
|
[15] |
曹绪龙, 吕广忠, 王杰, 等. 胜利油田CO2驱油技术现状及下步研究方向[J]. 油气藏评价与开发, 2020, 10(3):51-59.
|
|
CAO Xulong, LYU Guangzhong, WANG Jie, et al. Present situation and further research direction of CO2 flooding technology in Shengli Oilfield[J]. Reservoir Evaluation and Development, 2020, 10(3):51-59.
|
[16] |
陆诗建, 孟晓锋, 高丽娟, 等. 压缩式热泵回收CO2捕集解吸塔废热节能工艺研究[J]. 山东化工, 2019, 48(13):213-217.
|
|
LU Shijian, MENG Xiaofeng, GAO Lijuan, et al. Study on energy-saving technology for recovering waste heat from CO2 capture and desorption tower by compressed heat pump[J]. Shandong Chemical Industry, 2019, 48(13):213-217.
|
[17] |
李志鹏. 东营凹陷高89地区CO2驱油及封存过程中断层纵向安全性评价体系[J]. 油气地质与采收率, 2015, 22(6):41-46.
|
|
LI Zhipeng. Evaluation on vertical safety of fault during carbon dioxide flooding and sequestration in the Gao89 area of Dongying sag[J]. Petroleum Geology and Recovery Efficiency, 2015, 22(6):41-46.
|
[18] |
国殿斌, 徐怀民. 深层高压低渗油藏 CO2驱室内实验研究——以中原油田胡96块为例[J]. 石油实验地质, 2014, 36(1):102-105.
|
|
GUO Dianbin, XU Huaimin. Laboratory experiments of CO2 flooding in deep-buried high-pressure low-permeability reservoirs: Acase study of block Hu96 in Zhongyuan Oilfield[J]. Petroleum Geology & Experiment, 2014, 36(1):102-105.
|
[19] |
姜洪福, 雷友忠, 熊霄, 等. 大庆长垣外围特低渗透扶杨油层CO2非混相驱油试验研究[J]. 现代地质, 2008, 22(4):659-663.
|
|
JIANG Hongfu, LEI Youzhong, XIONG Xiao, et al. An CO2 immiscible displacement experimental study aiming at fuyang extra-low permeability layer at peripheral of daqing placanticline[J]. Geoscience, 2008, 22(4):659-663.
|
[20] |
邓瑞健, 田巍, 李中超, 等. CO2驱动用储层微观界限研究[J]. 特种油气藏, 2019, 26(3):133-137.
|
|
DENG Ruijian, TIAN Wei, LI Zhongchao, et al. Microscopic limits of reservoir producing for carbon dioxide flooding[J]. Special Oil& Gas Reservoirs, 2019, 26(3):133-137.
|