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《中国工程科学》 >> 2019年 第21卷 第3期 doi: 10.15302/J-SSCAE-2019.03.005

推进炼油与汽车行业协同发展战略研究

中国石油化工集团有限公司,北京 100127

收稿日期: 2019-05-06 修回日期: 2019-05-10

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摘要

电动车、燃料电池车等新能源汽车快速发展开启了汽车动力革命的大幕。内燃机汽车制造行业和油品生产行业通过满足最新排放限值要求、提升油品质量、推进内燃机技术不断进步等积极应对汽车动力革命。新能源汽车优势与劣势并存,短期内不具备全面替代内燃机汽车的条件。采用高效内燃机的油电混合动力汽车可大幅度降低污染物排放和碳排放,是符合我国国情的动力汽车。面向2050 年,内燃机汽车、油电混合动力汽车、燃料电池车、纯电动车等将发挥各自的技术优势,多元共存,但内燃机动力车会占据主体地位,汽车动力对液体燃料的依赖度还将会超过60%。炼油、汽车行业要推进协同发展,从分子层面研究内燃机中燃料的燃烧机理,研究车用燃料组成、馏程与颗粒物排放的关系并开发简化模型、开发并推广高品质燃料及高档润滑油,以适应汽车动力多元化时代新的低碳减排要求。

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参考文献

[ 1 ] International Energy Agency. Global EV outlook 2018 [R]. Paris: International Energy Agency, 2018.

[ 2 ] Information Trends LLC. Hydrogen fuel cell vehicles—A global analysis [R]. Washington D.C.: Information Trends LLC, 2018.

[ 3 ] 《中国公路学报》编辑部. 中国汽车工程学术研究综述: 2017 [J]. 中国公路学报, 2017, 30(6): 1–197. Editorial Department of China Journal of Highway and Transport. Review on China’s automotive engineering research progress: 2017 [J]. China Journal of Highway and Transport, 2017, 30(6): 1–197.
Editorial Department of China Journal of Highway and Transport. Review on China’s automotive engineering research progress: 2017 [J]. China Journal of Highway and Transport, 2017, 30(6): 1–197. Chinese. 链接1

[ 4 ] 苏万华, 张众杰, 刘瑞林, 等. 车用内燃机技术发展趋势 [J]. 中 国工程科学, 2018, 20(1): 97–103. Su W H, Zhang Z J, Liu R L, et al. Development trend for technology of vehicle internal combustion engine [J]. Strategic Study of CAE, 2018, 20(1): 97–103.
Su W H, Zhang Z J, Liu R L, et al. Development trend for technology of vehicle internal combustion engine [J]. Strategic Study of CAE, 2018, 20(1): 97–103. Chinese. 链接1

[ 5 ] 赵福全. 应理性评估内燃机的挑战、潜力与机遇 [N]. 中国汽车 报, 2019-03-07(004). Zhao F Q. Rational assessment of the challenges, potentials and opportunities of internal combustion engines [N]. China Automotive News, 2019-03-07(004).
Zhao F Q. Rational assessment of the challenges, potentials and opportunities of internal combustion engines [N]. China Automotive News, 2019-03-07(004). Chinese.

[ 6 ] Krishna V S, Hari O B, Dheerendra S. A comprehensive review on hybrid electric vehicles: Architectures and components [J]. Journal of Modern Transportation, 2019, doi.org/10.1007/s40534-019- 0184-3. 链接1

[ 7 ] 胡信国. 电动汽车用先进电池技术 [M]. 北京: 化学工业出版社, 2018. Hu X G. Advances in battery technologies for electric vehicles [M]. Beijing: Chemical Industry Press, 2018.
Hu X G. Advances in battery technologies for electric vehicles [M]. Beijing: Chemical Industry Press, 2018. Chinese.

[ 8 ] Timmers V R J H, Achten P A J. Non-exhaust PM emissions from electric vehicles [J]. Atmospheric Environment, 2016, 134: 10–17. 链接1

[ 9 ] 张笑笑, 王鸯鸯, 刘媛, 等. 废旧锂离子电池回收处理技术与资 源化再生技术进展 [J]. 化工进展, 2016, 35(12): 4026–4032. Zhang X X, Wang Y Y, Liu Y, et al. Recent progress in disposal and recycling of spent lithium-ion batteries [J]. Chemical Industry and Engineering Progress, 2016, 35(12): 4026–4032.
Zhang X X, Wang Y Y, Liu Y, et al. Recent progress in disposal and recycling of spent lithium-ion batteries [J]. Chemical Industry and Engineering Progress, 2016, 35(12): 4026–4032. Chinese. 链接1

[10] Zheng X H, Zhu Z W, Lin X, et al. A mini-review on metal recycling from spent lithium ion batteries [J]. Engineering, 2018 (4): 361–370. 链接1

[11] Kalghatgi G T. The outlook for transport fuels: Part 1 [J]. Petroleum Technology Quarterly, 2016 (Q1): 23–31.

[12] Kalghatgi G T, Gosling C, Wier M J. The outlook for transport fuels: Part 2 [J]. Petroleum Technology Quarterly, 2016 (Q2): 17–23.

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