Source Jouranl of CSCD
Source Journal of Chinese Scientific and Technical Papers
Included as T2 Level in the High-Quality Science and Technology Journals in the Field of Environmental Science
Core Journal of RCCSE
Included in the CAS Content Collection
Included in the JST China
Indexed in World Journal Clout Index (WJCI) Report
Volume 43 Issue 12
Dec.  2025
Turn off MathJax
Article Contents
GUO Yuting, WANG Haofan, LI Lin, MA Jinfeng, WANG Zhe, YIN Yisheng. A carbon emission reduction calculation method for carbon dioxide capture and storage technology[J]. ENVIRONMENTAL ENGINEERING , 2025, 43(12): 222-236. doi: 10.13205/j.hjgc.202512024
Citation: GUO Yuting, WANG Haofan, LI Lin, MA Jinfeng, WANG Zhe, YIN Yisheng. A carbon emission reduction calculation method for carbon dioxide capture and storage technology[J]. ENVIRONMENTAL ENGINEERING , 2025, 43(12): 222-236. doi: 10.13205/j.hjgc.202512024

A carbon emission reduction calculation method for carbon dioxide capture and storage technology

doi: 10.13205/j.hjgc.202512024
  • Received Date: 2024-09-20
  • Accepted Date: 2024-11-23
  • Rev Recd Date: 2024-11-02
  • Available Online: 2026-01-09
  • As China and its industries accelerate to achieve net zero carbon emission, carbon capture and storage (CCS) technology will play a key role, however, the development of CCS projects is facing many challenges, the development of a carbon reduction accounting method applicable to CCS projects in China is of great significance for incorporating CCS into the CCER carbon trading system and obtaining carbon subsidies. This paper focused on the whole process carbon dioxide capture geological storage (CCS) projects, learned from global existing methodology experience, proposed a set of carbon emission reduction accounting methodology for CCS projects, clarified the application conditions of this method and the argumentation of additionality, presented the boundary and emission source of CCS projects in the whole process, the identification of project baseline scenarios and the calculation method of baseline emissions, and put forward the calculation method of carbon emission reduction of CCS projects in detail, clarified the project counting period and data monitoring and management requirements. It proposed a detailed calculation method for carbon emission reduction in CCS projects, which can provides support for the accurate calculation of net emission reduction in the whole process of CCS projects in various scenarios. China should accelerate the establishment of the CCS project carbon emissions accounting system and incorporate CCS projects into its carbon emission market as soon as possible, to promote the rapid development of CCS projects and help China achieve the carbon peaking and carbon neutrality goals at an earlier date.
  • loading
  • [1]
    Anonymity. Opinions of the central committee of the communist party of China and the state council on fully,accurately and comprehensively implementing the new development concept and doing a good job in carbon peaking and carbon neutrality[N]. People's Daily,2021,10-25(001). 中共中央国务院关于完整准确全面贯彻新发展理念做好碳达峰碳中和工作的意见[N]. 人民日报,2021-10-25(001).
    [2]
    WU Z T,PANG X B,HAN Z L,et al. Progress and trend of carbon dioxide capture,utilization and storage technology[J]. Ecological Environment Monitoring of the Three Gorges,2022,7(4):12-22. 吴振涛,庞小兵,韩张亮,等. 二氧化碳捕集、利用与储存技术进展及趋势[J]. 三峡生态环境监测,2022,7(4):12-22.
    [3]
    ZHANG L Y,SONG Y F,SHI J L,et al. Frontiers of CO2 capture and utilization(CCU)towards carbon neutrality[J]. Advances in Atmospheric Sciences,2022,39(08):1252-1270.
    [4]
    CROWLEY B. Statistical review of world energy[J]. Hydrocarbon Processing,2000,79(11):23.
    [5]
    IPCC. Intergovernmental panel on climate change:climate change 2014[R]. synthesis report summary for policymakers. IPCC,2014.
    [6]
    ZHANG X L,MA J F,LIANG X,et al. Road map update for carbon capture,utilization,and storage demonstration and deployment in the People's Republic of China[M]. Beijing. Asian Development Bank(ADB),2022.
    [7]
    WANG X P,TANTG R,MENG M,et al. Research on CCUS business model and policy incentives for coal-fired power plants in China[J]. International Journal of Greenhouse Gas Control,2023,125:1750-5836.
    [8]
    SUN H Q. Carbon emission reduction path of oil and gas industry[J]. China Petroleum and Petrochemical Industry,2022,18:14-17. 孙焕泉. 油气行业碳减排路径[J]. 中国石油石化,2022(18):14-17.
    [9]
    ZHANG S T,YUAN Z G,SONG G G,et al. Countermeasures for oil and gas enterprises to develop CCUS business[J]. China Petroleum Enterprises,2024(8):96-99. 张书通,院振刚,宋国光,等. 油气企业发展CCUS业务的对策[J]. 中国石油企业,2024(8):96-99.
    [10]
    PENG X T,LV H D,ZHANG X. IPCC AR6 Report:Assessment of global Carbon Capture,Utilization and Storage(CCUS)technology development[J]. Climate Change Research,2022,18(5):580-590. 彭雪婷,吕昊东,张贤. IPCC AR6报告解读:全球碳捕集利用与封存(CCUS)技术发展评估[J]. 气候变化研究进展,2022,18(05):580-590.
    [11]
    DOU L R,SUN L D,LÜ W F,et al. The development trend of global carbon dioxide capture,utilization and storage industry and the challenges and countermeasures faced by China[J]. Petroleum Exploration and Development,2023,50(5):1083-1096. 窦立荣,孙龙德,吕伟峰,等. 全球二氧化碳捕集、利用与封存产业发展趋势及中国面临的挑战与对策[J]. 石油勘探与开发,2023,50(5):1083-1096.
    [12]
    ZAHNG X,LI K,MA Q,et al. Development orientation and prospect of CCUS technology under carbon neutrality[J]. China Population Resources and Environment,2021,31(9):29-33. 张贤,李凯,马乔,等. 碳中和目标下CCUS技术发展定位与展望[J]. 中国人口·资源与环境,2021,31(9):29-33.
    [13]
    JIA L Q,CHEN X J,LIU Y,et al. Progress in carbon capture,utilization and storage of China geological survey and other geological exploration entities[J]. China Geology,2023,6(3):541-544.
    [14]
    WANG H F,WANG Z,MA J F,et al. Effective pressure prediction from 4D seismic AVO data during CO2-EOR and storage[J]. International Journal of Greenhouse Gas Control,2022,113,103525.
    [15]
    MA J F,LI L,WANG H F,et al. Carbon capture and storage:history and the road ahead[J]. Engineering,2022,14(7):33-43.
    [16]
    WANG Y S. Post-assessment study on Environmental Risk of carbon dioxide capture and geological Storage Project in deep brackish water bed of coal-to-oil in the deep sea,China[J]. Environmental Engineering,2018,36(2):21-26. 王永胜. 中国神华煤制油深部咸水层二氧化碳捕集与地质封存项目环境风险后评估研究[J]. 环境工程,2018,36(2):21-26.
    [17]
    CABRERA G,DICKSON A,NIMUBONA A,et al. Carbon capture,utilisation and storage:incentives,effects and policy[J]. International Journal of Greenhouse Gas Control,2022,120:1750-5836
    [18]
    LI Y,WANG R,ZHAO Q M,et al. Application status and prospect of carbon capture,utilization and storage technology in China[J]. Petroleum Science Bulletin,2023,8(4):391-397. 李阳,王锐,赵清民,等. 中国碳捕集利用与封存技术应用现状及展望[J]. 石油科学通报,2023,8(4):391-397.
    [19]
    YANG J. Carbon footprint calculation and emission reduction strategy of carbon dioxide products[J]. Energy& Chemical Industry,2022,43(6):12-17. 杨继. 二氧化碳产品碳足迹计算及减排策略[J]. 能源化工,2022,43(6):12-17.
    [20]
    LI S S,WANG M H,XU C H,et al. CCUS-EGR whole industry chain economic evaluation method[J]. Natural Gas Technology and Economics,2023,17(6):34-43. 李森圣,王盟浩,徐程浩,等. CCUS-EGR全产业链经济评价方法[J]. 天然气技术与经济,2023,17(6):34-43.
    [21]
    LI D S Y. 237 million tons of carbon emission quotas have been traded across the country,and 300 CCER collection methodology proposals have been submitted[N]. 21st Century Business Herald,2023-07-17. 李德尚玉. 全国碳排放配额已成交2.37亿吨CCER收集方法学建议300余项[N]. 21世纪经济报道,2023-07-17.
    [22]
    SONG Y,HE S L,XUE H,et al. Research on environmental management of carbon dioxide capture,geological utilization and storage projects[J]. Environmental Management in China,2022,14(5):28-36. 宋阳,何少林,薛华,等. 二氧化碳捕集、地质利用与封存项目环境管理研究[J]. 中国环境管理,2022,14(5):28-36.
    [23]
    NIE H Y,CAO Y,LIU X X,et al. Challenges and countermeasures to realize the value of CCUS industry in China[J]. Modern Chemical Industry,2023,43(12):11-15. 聂浩宇,曹勇,刘潇潇,等. 中国CCUS产业价值实现面临的挑战与对策[J]. 现代化工,2023,43(12):11-15.
    [24]
    WU H J. The development experience,difficulties and significance of CCUS carbon emission reduction methodology[J]. China's National Conditions and National Strength,2021(11):16-19. 吴宏杰. CCUS碳减排方法学开发经历、难点及意义[J]. 中国国情国力,2021(11):16-19.
    [25]
    LIANG X,YU X J,XIA C Y,et al. Evaluation of climate benefit and economic feasibility of carbon dioxide utilization path[J]. Southern Energy Construction,2024,11(5):1-14. 梁希,余晓洁,夏菖佑,等. 二氧化碳利用路径气候效益与经济可行性评估[J]. 南方能源建设,2024,11(5):1-14.
    [26]
    CHENG QIANG. China's CCUS industrial system is accelerating the establishment[N]. China Petrochemical News,2023-03-22. 程强. 我国CCUS产业体系正加快建立[N]. 中国石化报,2023-03-22.
    [27]
    IETA. High level criteria for crediting carbon geostorage activities[R]. IETA,2022.
    [28]
    Global CCS Institute. The Global Status of CCS Report 2021[R]. Global CCS Institute,Australia,2021.
    [29]
    SONG D D,JIANG T,RAO C P. Review of policy framework for the development of carbon capture,utilization and storage in China[J]. Int J Environ Res Public Health,2022,19(24):16853-16853.
    [30]
    Global CCS Institute. Global Status of CCS 2022 Report[R]. Global CCS Institute,2022.
    [31]
    Global CCS Institute. State of the Art:CCS Technologies 2022[R]. Global CCS Institute,2022.
    [32]
    Global CCS Institute. Scaling up through 2030,Global Status of CCS 2023[R]. Global CCS Institute,2023.
    [33]
    SCHRAG D P. Making carbon capture and storage work[J]. Science,2009,325(5948):1644-1645..
    [34]
    Clean Energy Technology Observatory. Carbon capture utilisation and storage in the European Union,Status report on technology development,trends,value chains& markets[R]. Clean Energy Technology Observatory,2023:1831-9424.
    [35]
    CAO K,WU L Q,WANG J Q,et al. Research progress and prospect of Marine geological carbon sequestration in China[J]. Geological Survey of China,2023,10(2):72-76. 曹珂,吴林强,王建强,等. 我国海洋地质碳封存研究进展与展望[J]. 中国地质调查,2023,10(2):72-76.
    [36]
    YANG G,LI B F,LI Z M,et al. Progress and prospect of carbon dioxide geological storage and utilization technology[C]// Proceedings of International Conference on Oil and Gas Field Exploration and Development III,2023:9. 杨光,李宾飞,李兆敏,等. 二氧化碳地质封存与利用技术进展与展望[C]// 油气田勘探与开发国际会议论文集Ⅲ,2023:9.
    [37]
    CAO L,LEI S,GUAN Y X,et al. CCUS industry under target of carbon-peak and carbon-neutrality:progress and challenges[J]. Frontiers in Energy Research,2022,10:2296-598 X.
    [38]
    DOU L R,SUN L D,LYU,et al. Trend of global carbon dioxide capture,utilization and storage industry and challenges and countermeasures in China[J]. Petroleum Exploration and Development,2023,50(5):1246-1260.
    [39]
    FRANCES B. Carbon capture and storage as a corporate technology strategy challenge[J]. Energy Policy,2011,39(5):2256-2264.
    [40]
    SONG X M,WANG F,MA D S,et al. Technology progress and prospects of carbon dioxide capture,oil displacement and storage in China[J]. Petroleum Exploration and Development,2023,50(1):206-218. 宋新民,王峰,马德胜,等. 中国石油二氧化碳捕集、驱油与埋存技术进展及展望[J]. 石油勘探与开发,2023,50(1):206-218.
    [41]
    LI Y H,WANG Y,SHI Y,et al. Grading evaluation and ranking of CO2 sequestration capacity in place(CSCIP)in China's major oil basins:theoretical,effective,practical and CCUS-EOR[J]. Acta Geologica Sinica,2023,97(3):873-888.
    [42]
    HILL L B,LI X C,WEI N. CO2-EOR in China:a comparative review[J]. International Journal of Greenhouse Gas Control. 2020,103:103173.
    [43]
    ZHANG X,YANG X L,LU X,et al. China Carbon Dioxide Capture,Utilization and Storage(CCUS)Annual Report(2023)[R]. China Center for Agenda 21 Management,Global Carbon Capture and Storage Research Institute,Tsinghua University,2023. 张贤,杨晓亮,鲁玺,等. 中国二氧化碳捕集利用与封存(CCUS)年度报告(2023)[R]. 中国21世纪议程管理中心,全球碳捕集与封存研究院,清华大学,2023.
    [44]
    YANG Y,MA J F,LI L. Progress of four-dimensional multi-component seismic monitoring technology for CO2 geological storage[J]. Advance in Earth Science,2015,30(10):1119-1126. 杨扬,马劲风,李琳. CO2地质封存四维多分量地震监测技术进展[J]. 地球科学进展,2015,30(10):1119-1126.
    [45]
    WU X Z. The first large-scale exploration of carbon dioxide capture and geological storage in China[M]. Beijing:Science Press,2013. 吴秀章. 中国二氧化碳捕集与地质封存首次规模化探索[M]. 北京:科学出版社,2013.
    [46]
    CAI B F,LI Q,ZHANG X,et al. China carbon dioxide capture,utilization and storage(CCUS)annual report(2021)--China CCUS pathway study[R]. China Center for Agenda 21 Management,Institute of Environmental Planning,Ministry of Ecology and Environment,Wuhan Institute of Rock and Soil Mechanics,Chinese Academy of Sciences,2021. 蔡博峰,李琦,张贤,等. 中国二氧化碳捕集利用与封存(CCUS)年度报告(2021):中国CCUS路径研究[R]. 生态环境部环境规划院,中国科学院武汉岩土力学研究所,中国21世纪议程管理中心,2021.
    [47]
    LIU G Z,FANG R R,DOU L R,et al. CCS/CCUS development bottleneck and countermeasures in China[J]. Natural Gas& Oil,2024,42(5):8-14. 刘贵洲,方瑞瑞,窦立荣,等. 中国CCS/CCUS发展瓶颈与应对策略[J]. 天然气与石油,2024,42(5):8-14.
    [48]
    XU H Q. Influence and countermeasures of the Policies and Measures of developed Countries on our country[J]. China Energy,1998(8):40-43. 徐华清. 发达国家提出的温室气体减排政策和措施对我国的影响及其对策[J]. 中国能源,1998(8):40-43.
    [49]
    ZHENG S N,WANG A G,WANG Z. Research on the mechanism of China's green bonds serving carbon trading market[J]. Hainan Finance,2024(5):46-57. 郑淑凝,王安国,王政. 中国绿色债券服务于碳交易市场机制的研究[J]. 海南金融,2024(5):46-57.
    [50]
    ZOU H G,HUANG C P. Ethical issues and governance of global carbon trading[J]. Journal of University of Science and Technology Beijing(Social Science Edition),2024,40(3):117-124. 邹海贵,黄翠萍. 全球碳交易的伦理问题及其治理[J]. 北京科技大学学报(社会科学版),2024,40(3):117-124.
    [51]
    LI T T. Analysis on the development trend of traditional fossil energy and new energy under the"Double Carbon Target"[J]. Shaanxi Education(Higher Education),2022(3):5-6. 李天太.“双碳目标”下传统化石能源与新能源发展趋势浅析[J]. 陕西教育(高教),2022(3):5-6.
    [52]
    ZHANG X L,HUANG X D,ZHANG D,et al. Research on the path and policy of energy economy transition under the goal of carbon neutrality[J]. Management World,2022,38(1):35-66. 张希良,黄晓丹,张达,等. 碳中和目标下的能源经济转型路径与政策研究[J]. 管理世界,2022,38(1):35-66.
    [53]
    REN J. Research on the establishment of greenhouse gas Emission Trading System(ETS)in China[D]. Hefei:University of Science and Technology of China,2010. 任捷. 关于建立中国温室气体排放权交易体系(ETS)的研究[D]. 合肥:中国科学技术大学,2010.
    [54]
    LI Y X,YU X,LIANG Y H,et al. Policy suggestions on improving China's carbon credit trading mechanism[J]. New Finance,2024(3):59-64. 李艺轩,于歆,梁月虹,等. 完善中国碳信用交易机制的政策建议[J]. 新金融,2024(3):59-64.
    [55]
    ZHENG S. Research report on carbon trading pilot in seven provinces and cities[J]. China Energy,2014,36(2):23-27. 郑爽. 七省市碳交易试点调研报告[J]. 中国能源,2014,36(2):23-27.
    [56]
    HE G M,XU B,WANG P,et al. Analysis on the development strategy of forestry carbon sink trading under the background of national unified carbon market[J]. Forestry Economy,2018,40(11):72-78. 何桂梅,徐斌,王鹏,等. 全国统一碳市场运行背景下林业碳汇交易发展策略分析[J]. 林业经济,2018,40(11):72-78.
    [57]
    WANG D. The four-fold impact of CCER restart on the national carbon market[J]. China Electric Power Enterprise Management,2024(7):35-37. 王迪. CCER全面重启对全国碳市场的四重影响[J]. 中国电力企业管理,2024(7):35-37.
    [58]
    ZHOU X Y,TANG G Q,ZHAO L Z,et al. Carbon dioxide storage status and economic study[J]. Oil& Gas& New Energy,2022,34(6):20-28. 周新媛,唐国强,赵连增,等. 二氧化碳封存现状及经济性初探[J]. 油气与新能源,2022,34(6):20-28.
    [59]
    Shandong Provincial Administration for Market Regulation. Technical specification for accounting of carbon emission reductions from carbon dioxide flooding and storage projects:DB37/T 4548—2022[S]. Ji'nan:Shandong Provincial Administration for Market Regulation,2022-10-21. 山东省市场监督管理局. 二氧化碳驱油封存项目碳减排量核算技术规范:DB37/T 4548—2022[S]. 济南:山东省市场监督管理局,2022-10-21.
    [60]
    Department of Ecology and Environment of Xinjiang Uygur Autonomous Region. Technical specification for accounting of carbon emission reductions from carbon dioxide capture,utilization and storage projects(Draft for comments)[S]. Urumqi:Xinjiang Uygur Autonomous Region Administration for Market Regulation,2023. 新疆维吾尔自治区生态环境厅。二氧化碳捕集、利用与封存项目碳减排量核算技术规范(征求意见稿)[S]. 乌鲁木齐:新疆维吾尔自治区市场监督管理局,2023.
    [61]
    MA J F,YANG Y,WANG H F,et al. How much CO2 is stored and verified through CCS/CCUS in China?[J]. Energy Procedia,2018,(154):60-65.
    [62]
    GAO W,BAI P,WANG H,et al. Consideration on the methodology of greenhouse gas emissions accounting for CCUS projects[J]. China Land and Resources Economics,2022,35(4):12-21. 高炜,白平,王鸿,等. CCUS项目的温室气体排放核算方法学思考[J]. 中国国土资源经济,2022,35(4):12-21.
    [63]
    WANG F,LIAO G Z,SU C M,et al. Calculation method of carbon emission reduction in carbon dioxide capture,oil displacement and storage projects[J]. Petroleum Exploration and Development,2023,50(4):862-871. 汪芳,廖广志,苏春梅,等. 二氧化碳捕集、驱油与封存项目碳减排量核算方法[J]. 石油勘探与开发,2023,50(4):862-871.
    [64]
    WANG F,MA J G,LI M Z,et al. Research on CCUS source-sink matching and deployment based on carbon emission accounting[J]. Petroleum Science and Technology Forum,2024,43(1):78-85. 汪芳,马建国,李明卓,等. 基于碳排放核算的CCUS源汇匹配和部署研究[J]. 石油科技论坛,2024,43(1):78-85.
    [65]
    Environmental Protection Agency(EPA)U.S.. Supply,Underground Injection,and Geologic Sequestration of Carbon Dioxide,Greenhouse Gas Reporting Program(GHGRP)[R]. Washington D. C.:U.S. Environmental Protection Agency,2022.
    [66]
    Verified Carbon Standard(VCS). Methodology for carbon capture and storage[S]. Washington D.C.:Climate Action Reserve& Verra,2023.
    [67]
    Clean Energy Regulator,Australia. Carbon Capture and Storage Method 2021-Draft Simple Method Guide[S]. Canberra:Clean Energy Regulator,2021.
    [68]
    Ministry of Energy and Resources,Saskatchewan. The carbon capture,utilization and storage credit standard[S]. Regina:Ministry of Energy and Resources of Saskatchewan,2023.
    [69]
    International Organization for Standardization(ISO). Carbon dioxide capture,transportation and geological storage—Quantification and verification:ISO/TR 27915:2017[S]. Geneva:ISO,2017.
    [70]
    International Organization for Standardization(ISO). Carbon dioxide capture,transportation and geological storage—Quantification and verification:ISO/TR 27915:2017[S]. Geneva:ISO,2017.
    [71]
    Puro. earth. Methodology for verification and quantification of carbon removal(Draft Version 0.90)[S]. Helsinki:Puro.earth,2021.
    [72]
    ZHAI M Y,ZHOU C B,ZHANG Y B,et al. Current status,challenges and countermeasures of carbon dioxide capture,utilization and storage projects in carbon market[J]. China Environmental Management,2023,15(6):87-93. 翟明洋,周长波,张永波,等. 二氧化碳捕集利用与封存项目纳入碳市场的现状、挑战与对策[J]. 中国环境管理,2023,15(6):87-93.
    [73]
    YUAN J,GU H X,NAN V,et al. Influence of system boundary conditions on the life cycle cost and carbon emissions of CO2 transport[J]. International Journal of Greenhouse Gas Control,2023,124:1750-5836.
    [74]
    ZHANG Y,JIANG Y,HU S,et al. Carbon emission responsibility accounting method based on baseline value[J]. China Population Resources and Environment,2020,30(11):43-53. 张洋,江亿,胡姗,等. 基于基准值的碳排放责任核算方法[J]. 中国人口·资源与环境,2020,30(11):43-53.
    [75]
    KIMMANCE J P,ROGERA D A. Estimating and managing risk across the carbon dioxide capture and geological storage lifecycle[J]. Proceedings of the Institution of Civil Engineers-Energy,2012,165(2):109-116.
    [76]
    LU Z W,SU X C,QIAN L H,et al. Research on the development of China's CCER market under the vision of"carbon neutrality"[J]. Southwest Finance,2022(12):3-16. 鲁政委,粟晓春,钱立华,等.“碳中和”愿景下我国CCER市场发展研究[J]. 西南金融,2022(12):3-16.
    [77]
    The Carbon Credit Quality Initiative. Methodology for assessing the quality of carbon credits[EB/OL].(2023)[ 2025-12-16]. https://carboncreditquality.org/methodology.
    [78]
    ICVCM. Core carbon principle[EB/OL].(2023)[ 2025-12-16]. https://icvcm.org/the-core-carbon-principles.
    [79]
    XAING X J,LI K,LI X Q,et al. Investment feasibilities of CCUS technology retrofitting China's coal chemical enterprises with different CO2 geological sequestration and utilization approaches[J]. International Journal of Greenhouse Gas Control,2023,128:1750-5836.
    [80]
    WANG H H. Research on carbon emission Accounting of key industries based on input-output method[D]. Beijing:Beijing University of Chemical Technology,2021. 王皓菡. 基于投入产出法的重点工业行业碳排放核算研究[D]. 北京:北京化工大学,2021.
    [81]
    EGGLESTON S,BUENDIA L,KYOKO M,et al. 2006 IPCC guidelines for national greenhouse gas inventories[S]. National Greenhouse Gas Inventories Programme,IGES,Japan,2006.
    [82]
    GAN M G,LEI H W,LI W,et al. Research on quantitative evaluation method of well bore leakage risk of CO2 Geological Storage Project based on numerical simulation[J]. Engineering Science and Technology,2024,56(1):195-205. 甘满光,雷宏武,张力为,等. 基于数值模拟的CO2地质封存项目井筒泄漏风险定量化评价方法研究[J]. 工程科学与技术,2024,56(1):195-205.
    [83]
    TIAN H D,WANG W,LUO B H,et al. The internal logic and realization path of the transition from dual control of energy consumption to dual control of carbon emission under the"dual carbon" strategy[J]. Energy Research and Management,2023,15(4):16-22. 田红豆,王伟,罗斌华,等.“双碳”战略下能耗双控向碳排放双控转变的内在逻辑与实现路径[J]. 能源研究与管理,2023,15(4):16-22.
    [84]
    XI X,SANG S X,LIU S Q. Research progress on co-treatment and utilization of solid waste mineralization fixed storage CO2 and carbon reduction[J]. Journal of China Coal,2024,49(8):3619-3634. 奚弦,桑树勋,刘世奇. 煤矿区固废矿化固定封存CO2与减污降碳协同处置利用的研究进展[J]. 煤炭学报,2024,49(8):3619-3634.
    [85]
    STORRS K,LYHNE L,DRUSTRUP R. A comprehensive framework for feasibility of CCUS deployment:a meta-review of literature on factors impacting CCUS deployment[J]. International Journal of Greenhouse Gas Control,2023,125:1750-5836.
    [86]
    SUSHANT B,NEHIL S,SUKRITI S,et al. Opportunities,challenges and the way ahead for carbon capture,utilization and sequestration(CCUS)by the hydrocarbon industry:towards a sustainable future[J]. Energy Reports,2022,8:15595-15616.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (150) PDF downloads(1) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return