1 |
曹湘洪. 推进炼油与汽车行业协同发展战略研究[J]. 中国工程科学, 2019, 21(3): 61-69.
|
|
CAO Xianghong. Strategic research on promoting coordinated development of refining and automobile industries[J]. Strategic Study of CAE, 2019, 21(3): 61-69.
|
2 |
曹湘洪. 车用燃料清洁化——我国炼油工业面临的挑战和对策[J]. 石油炼制与化工, 2008, 39(1): 1-8.
|
|
CAO Xianghong. The challenge and strategy of refining indusdry in China for producing clean transportation fuel[J]. Petroleum Processing and Petrochemicals, 2008, 39(1): 1-8.
|
3 |
XU Youhao, CUI Shouye. A novel fluid catalytic cracking process for maximizing iso-paraffins: From fundamentals to commercialization[J]. Frontiers of Chemical Science and Engineering, 2018, 12(1): 9-23.
|
4 |
许友好, 阳文杰, 王新. 支撑我国汽油质量持续升级的核心技术及技术路线开发与应用 1.催化裂化汽油烯烃含量控制理论基础与工业实践[J]. 石油炼制与化工, 2022, 53(9): 1-9.
|
|
XU Youhao, YANG Wenjie, WANG Xin. Development and application of core technologies and technical routes supporting the continuous upgrading of gasoline quality in China 1. Theoretical basis and industrial practice of olefin content control in FCC gasoline[J]. Petroleum Processing and Petrochemicals, 2022, 53(9): 1-9.
|
5 |
许友好, 王新, 张登前, 等. 支撑我国汽油质量持续升级的核心技术及技术路线开发与应用 2.催化裂化汽油降烯烃与脱硫分步集成工艺路线创建、深度开发与工业应用[J]. 石油炼制与化工, 2022, 53(10): 1-8.
|
|
XU Youhao, WANG Xin, ZHANG Dengqian, et al. Development and application of core technologies and technical routes supporting the continuous upgrading of gasoline quality in China 2. Establishment, deep development and industrial application of step-by-step integrated process route for olefin reduction and desulfurization of FCC gasoline[J]. Petroleum Processing and Petrochemicals, 2022, 53(10): 1-8.
|
6 |
中华人民共和国生态环境部. 中国移动源环境管理年报[R]. 2021.
|
|
Ministry of Ecology and Environment of the People’s Republic of China. China Mobile Source Environmental Management Annual Report[R]. 2021.
|
7 |
王人洁. 电动车和天然气车能源环境影响的燃料生命周期评价研究[D]. 北京: 清华大学, 2015.
|
|
WANG Renjie. Study on fuel life cycle assessment of energy and environmental impact of electric vehicles and natural vehicles[D].Beijing: Tsinghua University, 2015.
|
8 |
中华人民共和国生态环境部. 中国机动车污染防治年报[R]. 2012.
|
|
Ministry of Ecology and Environment of the People’s Republic of China. China Vehicle Emission Control Annual Report[R]. 2012.
|
9 |
processing’s Hydrocarbon 2011 refining processes handbook[M]. Houston, Texas: Gulf Publishing Company, 2011.
|
10 |
TREESE Steven A, PUJADÓ Peter R, JONES David S J. Handbook of petroleum processing[M]. 2nd ed. Berlin: Springer, 2015.
|
11 |
LI J H, KWAUK M. Particle-fluid two-phase flow: The energy-minimization multi-scale method[M]. Beijing: Metallurgical Industry Press, 1994.
|
12 |
汪燮卿. 中国炼油技术[M]. 4版. 北京: 中国石化出版社, 2021.
|
|
WANG Xieqing. China refining technology[M]. 4th ed. Beijing: China Petrochemical Press, 2021.
|
13 |
汪进, 国庆, 丁丽颖. Prime-G+工艺在40万t/a汽油加氢装置改造中的应用[J]. 石化技术与应用, 2018, 36(4): 264-266.
|
|
WANG Jin, GUO Qing, DING Liying. Application of Prime-G+ process in 0.4Mt/a gasoline hydrogenation unit[J]. Petrochemical Technology & Application, 2018, 36(4): 264-266.
|
14 |
李天明, 李俊奎, 任凯, 等. M-PHG催化裂化汽油加氢改质技术特点及其工业应用效果[J]. 石油炼制与化工, 2020, 51(6): 98-101.
|
|
LI Tianming, LI Junkui, REN Kai, et al. Characteristics of FCC gasoline hydrogenation technology M-PHG and its application[J]. Petroleum Processing and Petrochemicals, 2020, 51(6): 98-101.
|
15 |
胡晓荣, 张岩, 向永生, 等. GARDES-II器外完全硫化催化剂在催化裂化汽油加氢脱硫装置的工业应用[J]. 石油炼制与化工, 2019, 50(9): 59-63.
|
|
HU Xiaorong, ZHANG Yan, XIANG Yongsheng, et al. Commercial application of GARDES- Ⅱ ex-situ presulfided catalyst in FCC gasoline hydrodesulfuration unit[J]. Petroleum Processing and Petrochemicals, 2019, 50(9): 59-63.
|
16 |
LU Bona, NIU Yan, CHEN Feiguo, et al. Energy-minimization multiscale based mesoscale modeling and applications in gas-fluidized catalytic reactors[J]. Reviews in Chemical Engineering, 2019, 35(8): 879-915.
|
17 |
许友好, 鲁波娜, 何鸣元. 变径流化床反应器理论与实践[M]. 北京: 中国石化出版社, 2019.
|
|
XU Youhao, LU Bona, HE Mingyuan. Theory and practice of variable diameter fluidized bed reactor[M]. Beijing: China Petrochemical Press, 2019.
|