[1] BP. BP世界能源展望2023 [M]. 北京: BP中国对外事务部, 2023.

BP. Launch of BP energy outlook 2023 edition [M]. Beijing: Ministry of Foreign Affairs of BP China, 2023.
[2] BP. BP世界能源统计年鉴2022 [M]. 北京: BP中国对外事务部, 2022.

BP. BP statistical review of world energy 2022 edition [M]. Beijing: Ministry of Foreign Affairs of BP China, 2022.
[3] IEA. CO2 emissions in 2022 [R]. Paris: IEA, 2023.
[4] 郭嘉懿, 何育荣, 马晶晶, 等. 二氧化碳催化加氢制甲醇研究进展 [J]. 洁净煤技术, 2023, 29(4): 49-64. DOI:  10.13226/j.issn.1006-6772.RM22092601.

GUO J Y, HE Y R, MA J J, et al. Research progress on catalytic hydrogenation of carbon dioxide to methanol [J]. Clean coal technology, 2023, 29(4): 49-64. DOI:  10.13226/j.issn.1006-6772.RM22092601.
[5] ZHONG J W, YANG X F, WU Z L, et al. State of the art and perspectives in heterogeneous catalysis of CO2 hydrogenation to methanol [J]. Chemical society reviews, 2020, 49(5): 1385-1413. DOI:  10.1039/c9cs00614a.
[6] LEONZIO G. State of art and perspectives about the production of methanol, dimethyl ether and syngas by carbon dioxide hydrogenation [J]. Journal of CO2 utilization, 2018, 27: 326-354. DOI:  10.1016/j.jcou.2018.08.005.
[7] 李庆勋, 王宗宝, 娄舒洁, 等. 二氧化碳加氢制甲醇研究进展 [J]. 现代化工, 2019, 39(5): 19-23. DOI:  10.16606/j.cnki.issn0253-4320.2019.05.005.

LI Q X, WANG Z B, LOU S J, et al. Research progress in methanol production from carbon dioxide hydrogenation [J]. Modern chemical industry, 2019, 39(5): 19-23. DOI:  10.16606/j.cnki.issn0253-4320.2019.05.005.
[8] ATSONIOS K, PANOPOULOS K D, KAKARAS E. Thermocatalytic CO2 hydrogenation for methanol and ethanol production: process improvements [J]. International journal of hydrogen energy, 2016, 41(2): 792-806. DOI:  10.1016/j.ijhydene.2015.12.001.
[9] KISS A A, PRAGT J J, VOS H J, et al. Novel efficient process for methanol synthesis by CO2 hydrogenation [J]. Chemical engineering journal, 2016, 284: 260-269. DOI:  10.1016/j.cej.2015.08.101.
[10] 郑可昕, 高啸天, 范永春, 等. 支撑绿氢大规模发展的氨、甲醇技术对比及应用发展研究 [J]. 南方能源建设, 2023, 10(3): 63-73. DOI:  10.16516/j.gedi.issn2095-8676.2023.03.007.

ZHENG K X, GAO X T, FAN Y C, et al. Comparison and application prospects of ammonia and methanol technologies supporting large-scale development of green hydrogen energy [J]. Southern energy construction, 2023, 10(3): 63-73. DOI:  10.16516/j.gedi.issn2095-8676.2023.03.007.
[11] NYÁRI J. Techno-economic feasibility study of a methanol plant using carbon dioxide and hydrogen [D]. Helsinki: Aalto University, 2018.
[12] 陈升华. 2021-2022年度中国甲醇行业市场分析报告(上) [J]. 广州化工, 2022, 50(3): 1-6.

CHEN S H. China methanol industry market analysis report between 2021-2022 (Part 1) [J]. Guangzhou chemical industry, 2022, 50(3): 1-6.
[13] 郑伟中. 氮肥协会顾理事长针对氮肥、甲醇行业碳减排、碳中和的讲话摘要 [J]. 氮肥与合成气, 2021, 49(9): 54.

ZHENG W Z. The president of the nitrogen fertilizer association for nitrogen fertilizer, methanol industry carbon reduction, carbon neutral speech abstract [J]. Nitrogenous fertilizer & syngas, 2021, 49(9): 54.
[14] LI S Z, WANG Y, YANG B, et al. A highly active and selective mesostructured Cu/AlCeO catalyst for CO2 hydrogenation to methanol [J]. Applied catalysis a: general, 2019, 571: 51-60. DOI:  10.1016/j.apcata.2018.12.008.
[15] XIONG S H, LIAN Y, XIE H, et al. Hydrogenation of CO2 to methanol over Cu/ZnCr catalyst [J]. Fuel, 2019, 256: 115975. DOI:  10.1016/j.fuel.2019.115975.
[16] WANG Y H, GAO W G, LI K Z, et al. Strong evidence of the role of H2O in affecting methanol selectivity from CO2 hydrogenation over Cu-ZnO-ZrO2 [J]. Chem, 2020, 6(2): 419-430. DOI:  10.1016/j.chempr.2019.10.023.
[17] 马晓锋, 张舒涵, 何勇, 等. PEM电解水制氢技术的研究现状与应用展望 [J]. 太阳能学报, 2022, 43(6): 420-427. DOI:  10.19912/j.0254-0096.tynxb.2022-0360.

MA X F, ZHANG S H, HE Y, et al. Research status and application prospect of PEM electrolysis water technology for hydrogen production [J]. Acta energiae solaris sinica, 2022, 43(6): 420-427. DOI:  10.19912/j.0254-0096.tynxb.2022-0360.
[18] MILLER H A, BOUZEK K, HNAT J, et al. Green hydrogen from anion exchange membrane water electrolysis: a review of recent developments in critical materials and operating conditions [J]. Sustainable energy & fuels, 2020, 4(5): 2114-2133. DOI:  10.1039/C9SE01240K.
[19] TENHUMBERG N, BÜKER K. Ecological and economic evaluation of hydrogen production by different water electrolysis technologies [J]. Chemie ingenieur technik, 2020, 92(10): 1586-1595. DOI:  10.1002/cite.202000090.
[20] 林海周, 罗志斌, 裴爱国, 等. 二氧化碳与氢合成甲醇技术和产业化进展 [J]. 南方能源建设, 2020, 7(2): 14-19. DOI:  10.16516/j.gedi.issn2095-8676.2020.02.002.

LIN H Z, LUO Z B, PEI A G, et al. Technology and industrialization progress on methanol synthesis from carbon dioxide and hydrogen [J]. Southern energy construction, 2020, 7(2): 14-19. DOI:  10.16516/j.gedi.issn2095-8676.2020.02.002.