College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, China
| Abstract: | Carbon dioxide capture is important for mitigating the global warming problem. Scholars and researchers have paid wide attention to carbon dioxide capture technology which is still in the preliminary stage and difficult for large-scale application. Using citation analysis software VOSviewer, we analyzed the current status of carbon dioxide capture technology by examining 38,706 papers in the Web of Science core database from 2012 to 2022. Our analysis focused on annual publication trends and made reasonable predictions for future development. The results show that the number of articles on carbon dioxide capture technology have steadily increased from 2012 to 2022, with China and the United States leading the field and making outstanding contributions. The research hotspots of carbon dioxide capture technology include the selection of capture agents and the reuse of captured carbon dioxide. These measured outcomes can help to grasp the current status of research, explore the development direction, and offer ideas and methods for further studies of carbon dioxide capture technology. |
| Keywords: | Carbon Dioxide; Carbon Capture; Absorbent; Carbon Neutralization; Bibliometrics |
| DOI: | 10.57237/j.res.2023.02.005 |
| 1. | 山东省自然科学青年基金一般项目《醇胺溶液吸收CO2的生物酶催化反应机理研究》(ZR2022QB174) |
| [1] | 陈浩佳. 二氧化碳捕集技术研究进展 [J]. 清洗世界, 2022, 38 (11): 69-71+74. |
| [2] | 严刚, 郑逸璇, 王雪松等. 基于重点行业/领域的中国碳排放达峰路径研究 [J]. 环境科学研究, 2022, 35 (02): 309-319. |
| [3] | 陈珂. 联合国第75届联合国大会一般性辩论定于22日在纽约联合国总部拉开帷幕 [J]. 中国会展 (中国会议), 2020, No. 474 (18): 25. |
| [4] | 李莹. 碳中和背景下CO2的捕获、利用和封存技术的研究进展 [C] // 中国环境科学学会环境工程分会. 中国环境科学学会2022年科学技术年会——环境工程技术创新与应用分会场论文集(三). 《工业建筑》杂志社有限公司, 2022: 14. |
| [5] | 王闻昊, 丛威. 国际能源署全球能源行业2050年净零排放路线图评析 [J]. 国际石油经济, 2021, 29 (06): 1-7. |
| [6] | 王永林, 张传合, 赵宇鹏等.基于Web of Science 数据库的土壤生物修复研究趋势分析 [J]. 环境工程, 2021, 39 (09): 199-204. |
| [7] | 杨东, 党梦园, 韩峰等.基于文献计量分析的物质存量研究进展 [J]. 山东科学, 2022, 35 (05): 112-121. |
| [8] | JIMENEZ-GARCIA M, RUIZ-CHICO J, PENA-SANCHEZ A R, et al. A Bibliometric Analysis of Sports Tourism and Sustainability (2002-2019) [J]. Sustainability, 2020, 12 (7). |
| [9] | 张泽坤, 万丹, 徐浩, 延卫, 金晓亮.基于文献计量的电催化还原CO2研究状况及发展趋势分析 [J]. 环境工程, 2022, 40 (11): 222-230. |
| [10] | 平新乔, 郑梦圆, 曹和平. 中国碳排放强度变化趋势与“十四五”时期碳减排政策优化 [J]. 改革, 2020 (11): 37-52. |
| [11] | 孙国旺.德国CO2捕获和封存技术发展展望 [J]. 全球科技经济瞭望, 2009, 24 (09): 39-45. |
| [12] | 王涵宇, 吴思萱, 张扬清, 孙依云, 潘一涛, 曹瑄玮, 张雅萌.德国推进碳中和的路径及对中国的启示 [J]. 可持续发展经济导刊, 2021, No. 23 (03): 27-30. |
| [13] | 许悦, 季庆庆. 协同治理视域下高校学术不端行为的治理研究 [J].教育理论与实践, 2022, 42 (27): 14-17. |
| [14] | 甘满光, 张力为, 李小春, 李琦, 陆诗建. 欧洲CCUS技术发展现状及对中国的启示 [J]. 热力发电, 2023, 52 (04): 1-13. |
| [15] | Jiutian Zhang, Zhiyong Wang, Jia Ning Kang, Xiangjing Song, Dong Xu. Several key issues for CCUS development in China targeting carbon neutrality [J]. Carbon Neutrality, 2022, 1 (1). |
| [16] | 舟丹. 各国对碳减排的态度 [J]. 中外能源, 2022, 27 (08): 78. |
| [17] | 张德元. 欧盟、日本碳减排路径对中国具有重要借鉴意义 [J]. 中国经贸导刊, 2021, No. 1012 (15): 50-51. |
| [18] | 张庆阳, 郭明佳.各国碳减排路线图 (连载六) 韩国: 5年内争做第七绿色强国 [J]. 环境教育, 2015, No. 176 (05): 63-65. |
| [19] | 许海东. 论科研院所的国际合作交流工作 [J]. 中国市场, 2021, No. 1072 (09): 96-97. |
| [20] | 付晓. 第六届碳捕集利用与封存国际论坛在京召开 [J]. 中国会展 (中国会议), 2021, No. 488 (08): 18. |
| [21] | Ben Purvis, Yong Mao, Darren Robinson. Three pillars of sustainability: in search of conceptual origins [J]. Sustainability Science, 2019, 14 (3). |
| [22] | CALLON M, COURTIAL J P, TURNER W A, et al. From translations to problematic networks: an introduction to co-word analysis [J]. Social Science Information, 1983, 22 (2): 191-235. |
| [23] | 惠武卫, 姬存民, 赵合楠等. 低浓度CO2捕集技术研究进展 [J]. 天然气化工—C1化学与化工, 2022, 47 (04): 19-24+98. |
| [24] | 宿辉, 崔琳. 二氧化碳的吸收方法及机理研究 [J]. 环境科学与管理, 2006 (08): 79-81. |
| [25] | WANG Y B, WANG J T, MA C, et al. Fabrication of hierarchical carbon nanosheet-based networks for physical and chemical adsorption of CO2 [J]. Journal of Colloid and Interface Science, 2019, 534: 72-80. |
| [26] | HANDOKO A D, WEI F, JENNDY, et al. Understanding heterogeneous electrocatalytic carbon dioxide reduction through operando techniques [J]. Nature Catalysis, 2018, 1 (12): 922-34. |
| [27] | 薛博, 刘勇, 王沉等.碳捕获、封存与利用技术及煤层封存CO2研究进展 [J]. 化学世界, 2020, 61 (04): 294-297. |
| [28] | 张俊勇, 孙有才. 碳捕获与封存(CCS)发展前景 [J]. 再生资源与循环经济, 2013, 6 (12): 13-16. |
| [29] | 高凯. 文献计量分析软件VOSviewer的应用研究 [J]. 科技情报开发与经济, 2015, 25 (12): 95-98. |
| [30] | WONG C-S. Science Mapping: A Scientometric Review on Resource Curses, Dutch Diseases, and Conflict Resources during 1993-2020 [J]. Energies, 2021, 14 (15). |
We invite active, qualified and high profile scientists and researchers to join as Editorial Board Members.
Join UsScholars with a strong interest in reviewing are invited to join the reviewer panel to ensure the quality of the research to be published.
Join Us