Reviews and Special Topics

Probing into high-quality development path of CNOOC′s refining and petrochemical industry toward carbon peak and carbon neutrality

  • CHEN Yan ,
  • YANG Xiaobo ,
  • TIAN Puzhou
Expand
  • CNOOC Oil & Petrochemicals Co. ,Ltd. ,Beijing 100010,China

Received date: 2023-02-27

  Online published: 2023-04-13

Abstract

Under the background of “carbon peaking and carbon neutrality”,CNOOC refining and chemical industry is faced with quite considerable transformation pressure.The path of high-quality development of CNOOC′s refining and petrochemical industry was discussed.It was pointed out that CNOOC would i) unswervingly promote the energy revolution,persistently change the development mode,plan the integrated development of upstream,midstream and downstream,and accelerate the industrial upgrading,ii) adhere to the guidance of science and technology,strengthen the drive of innovation,and accelerate the transformation of digitalization and intectualization,iii) deepen practical cooperation with the concept of “win-win”,implement the goal of carbon peak and carbon neutrality,constantly improve the supply chain,extend the industrial chain,and enhance the value chain,and promote the sustainable growth of green,low-carbon and tenacious refining and petrochemical industry.

Cite this article

CHEN Yan , YANG Xiaobo , TIAN Puzhou . Probing into high-quality development path of CNOOC′s refining and petrochemical industry toward carbon peak and carbon neutrality[J]. Inorganic Chemicals Industry, 2023 , 55(4) : 6 -12 . DOI: 10.19964/j.issn.1006-4990.2023-0098

References

1 李明丰,吴昊,李延军,等.我国炼油行业低碳发展路径分析[J].石油炼制与化工202354(1):1-9.
  LI Mingfeng, WU Hao, LI Yanjun,et al.Analysis on the development pathways of low-carbon oil refining industry in China[J].Petroleum Processing and Petrochemicals202354(1):1-9.
2 辛靖,王连英.“双碳”愿景对炼化产业的影响及其路径展望[J].石油学报:石油加工202137(6):1504-1510.
  XIN Jing, WANG Lianying.Impacts of “dual carbon” vision on refining and chemical industry and prospects for its paths[J].Acta Petrolei Sinica:Petroleum Processing Section202137(6):1504-1510.
3 赵元生.关于石化企业“双碳”目标下转型发展的思考[J].中国石化2022(11):63-64.
  ZHAO Yuansheng.Reflections on the transformation and development of petrochemical enterprises under the target of “double carbon”[J].Sinopec Monthly2022(11):63-64.
4 聂向锋.“双碳”目标下全球石油石化企业低碳转型战略与实践[J].当代石油石化202230(8):6-10.
  NIE Xiangfeng.Global petroleum and petrochemical enterprises′ low-carbon transition and strategy under dual-carbon targets[J].Petroleum & Petrochemiacal Today202230(8):6-10.
5 罗佐县, 杨国丰.“双碳”目标下我国氢能产业发展路线研判[J].当代石油石化202230(1):1-8,37.
  LUO Zuoxian, YANG Guofeng.Study of China's hydrogen energy development route under carbon peak and neutralization[J].Petroleum & Petrochemical Today202230(1):1-8,37.
6 张国相.中国海油炼化技术发展策略分析与措施刍议[J].石油化工技术与经济201632(1):1-5.
  ZHANG Guoxiang.Discussion on development strategies and measures of petrochemical technologies for CNOOC[J].Technology & Economics in Petrochemicals201632(1):1-5.
7 汪东进.践行低碳战略的海油路径[J].中国石油石化2021(8):13-15,12.
  WANG Dongjin.Offshore oil path of practicing low-carbon strate-gy[J].China Petrochem2021(8):13-15,12.
8 靳凤英,于海斌,王亚权,等.镍对Pt/γ-Al2O3催化剂稠环芳烃选择性加氢性能的影响[J].无机盐工业202254(10):141-148.
  JIN Fengying, YU Haibin, WANG Yaquan,et al.Effect of Ni on selective hydrodegenation of polyaromatic hydrocarbons of Pt/γ-Al2O3 catalyst[J].Inorganic Chemicals Industry,2022,54(10):141-148.
9 张景成,张国辉,于海斌,等.TH系列高氮焦化馏分油加氢催化剂的开发与工业应用[J].现代化工202141(12):213-217.
  ZHANG Jingcheng, ZHANG Guohui, YU Haibin,et al.Development and commercial application of TH series of hydrogenation catalysts for high-nitrogen coking distillates[J].Modern Chemical Industry202141(12):213-217.
10 李滨,范景新,臧甲忠,等.一种吸附分离柴油中多环芳烃的吸附剂及制备方法:中国,105289466B[P].2019-03-26.
11 臧甲忠,于海斌,范景新,等.一种同时吸附脱除柴油中的硫化物和芳烃的方法:中国,105349175A[P].2016-02-24.
12 于海斌,谢萍,王建平,等.一种生产高品质工业白油的方法:中国,110938458A[P].2020-03-31.
13 臧甲忠,郭春垒,范景新,等.一种由瓦斯油生产低碳芳烃及烯烃的集成工艺的方法:中国,110938464A[P].2020-03-31.
14 FAYISA B A, YANG Youwei, ZHEN Ziheng,et al.Engineered chemical utilization of CO2 to methanol via direct and indirect hydrogenation pathways:A review[J].Industrial & Engineering Chemistry Research202261(29):10319-10335.
15 DU Xianlong, JIANG Zheng, SU Dangsheng,et al.Research progress on the indirect hydrogenation of carbon dioxide to metha- nol[J].ChemSusChem20169(4):322-332.
16 HUANG C H, TAN C S.A review:CO2 utilization[J].Aerosol Air Qual.Res.201414(2):480-499.
17 CUI Yuanyuan, CHEN Xi, DAI Weilin.Continuous heterogeneous hydrogenation of CO2-derived dimethyl carbonate to methanol over a Cu-based catalyst[J].RSC Adv.20166(73):69530-69539.
18 MURATA T, HIYOSHI M, RATANASAK M,et al.Synthesis of silyl formates,formamides,and aldehydes via solvent-free organo-catalytic hydrosilylation of CO2 [J].ChemComm.202056(43):5783-5786.
19 周微,于海斌,马新宾.Cr/SSZ-13催化二氧化碳氧化乙烷脱氢反应的研究[J].无机盐工业202153(12):43-48.
  ZHOU Wei, YU Haibin, MA Xinbin.Oxidative dehydrogenation of ethane with carbon dioxide to ethylene over Cr/SSZ-13 cataly-st[J].Inorganic Chemicals Industry202153(12):43-48.
20 RAZALI N A M, LEE K T, BHATIA S,et al.Heterogeneous catalysts for production of chemicals using carbon dioxide as raw material:A review[J].Renewable and Sustainable Energy Reviews201216(7):4951-4964.
21 XIAO Yongchun, XIE Kui.Active exsolved metal-oxide interfaces in porous single-crystalline ceria monoliths for efficient and durable CH4/CO2 reforming[J].Angewandte Chemie International Edition2022,61.Doi:10.1002/anie.202113079.
22 ZHANG Yimin, ZU Yun, HE Dedong,et al.The tailored role of “defect” sites on γ-alumina:A key to yield an efficient methane dry reforming catalyst with superior nickel utilization[J].Applied Catalysis B:Environmental2022,315.Doi:10.1016/j.apcatb.2022.121539.
23 BAO Jun, YANG Guohui, YONEYAMA Y,et al.Significant advances in C1 catalysis:Highly efficient catalysts and catalytic reactions[J].ACS Catal.20199:3026-3053.
24 DE S, DOKANIA A, RAMIREZ A,et al.Advances in the design of heterogeneous catalysts and thermocatalytic processes for CO2 utilization[J].ACS Catalysis202010(23):14147-14185.
25 YANG Tao, PANG Hongchang, CHEN Zan,et al.Synthesis and enhanced CO2/CH4 selectivity of hyperbranched copolyimide membranes[J].High Performance Polymers202133(6):675-684.
26 严硕,于海斌,陈赞.膜法脱除天然气中二氧化碳的工艺技术发展现状[J].无机盐工业202254(5):38-46.
  YAN Shuo, YU Haibin, CHEN Zan.Technology development status of carbon dioxide removal from natural gas by membrane process[J].Inorganic Chemicals Industry202254(5):38-46.
27 CHEN Zan, ZHANG Peng, WU Hong,et al.Incorporating amino acids functionalized graphene oxide nanosheets into Pebax membranes for CO2 separation[J].Separation and Purification Technology2022,288.Doi:10.1016/j.seppur.2022.120682.
28 CHEN Zan, HONG Zongping, WU Hong,et al.Tr?ger′s base polyimide hybrid membranes by incorporating UiO-66-NH2 nanoparticles for gas separation[J].Industrial & Engineering Chemistry Research202261(9):3418-3427.
29 LI Enshang, CHEN Zan, DUAN Cuijia,et al.Enhanced CO2-capture performance of polyimide-based mixed matrix membranes by incorporating ZnO@MOF nanocomposites[J].Separation and Purification Technology2022,289.Doi:10.1016/j.seppur.2022.120714.
Outlines

/