Recent trends in CO2 reduction through various catalytic methods to achieve carbon-neutral goals: A comprehensive bibliometric analysis

IF 6.2 4区 工程技术 Q3 ENERGY & FUELS
Xuxu Guo, Hangrang Zhang, Yang Su, Yingtang Zhou
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引用次数: 0

Abstract

The extensive utilization of fossil fuels has led to a significant increase in carbon dioxide (CO2) emissions, contributing to global warming and environmental pollution, which pose major threats to human survival. To mitigate these effects, many researchers are actively employing state-of-the-art technologies to convert CO2 into valuable chemicals and fuels, thereby supporting sustainable development. However, few studies have employed bibliometric methods to systematically analyze research trends in CO2 reduction reaction (CO2RR), resulting in limited macroscopic insights into this field. This study aims to conduct a scientometric analysis of academic literature on electrocatalytic, photocatalytic, and thermocatalytic CO2RR from 2015 to 2023. Utilizing bibliometric analysis tools Citespace, Bibliometrix, and Vosviewer for data visualization, it establishes a knowledge framework for catalytic CO2RR. The results show that China, the United States, and India are the top three countries with the highest number of published papers in this field, with China and the United States having the highest levels of collaboration. The journal Applied Catalysis B-Environmental published the most articles and received the highest citation count, with 3.4% of the articles in this field appearing in the journal and a total of 62526 citations. Keyword analysis revealed that terms like “CO2RR,” “CO2,” “conversion,” and “reduction” are the most frequently occurring, indicating key areas of focus. Additionally, “selectivity” and “heterojunction” emerged as prominent research hotspots. The discussion section highlights the current challenges in the field and proposes potential strategies to address these obstacles, providing valuable insights for research in the field of catalytic CO2RR.

通过各种催化方法实现碳中和目标的二氧化碳减排的最新趋势:综合文献计量学分析
化石燃料的广泛利用导致二氧化碳(CO2)排放量大幅增加,加剧了全球变暖和环境污染,对人类生存构成重大威胁。为了减轻这些影响,许多研究人员正在积极采用最先进的技术将二氧化碳转化为有价值的化学品和燃料,从而支持可持续发展。然而,很少有研究采用文献计量学方法系统分析CO2还原反应(CO2RR)的研究趋势,导致对该领域的宏观认识有限。本研究旨在对2015 - 2023年关于电催化、光催化和热催化CO2RR的学术文献进行科学计量学分析。利用文献计量分析工具Citespace、Bibliometrix和Vosviewer进行数据可视化,建立了催化CO2RR的知识框架。结果显示,中国、美国和印度是该领域发表论文数量最多的前三个国家,其中中国和美国的合作水平最高。Applied Catalysis B-Environmental期刊发表文章最多,被引频次最高,占该领域文章的3.4%,总被引次数为62526次。关键词分析显示,“CO2RR”、“CO2”、“conversion”和“reduction”等术语出现频率最高,表明了重点领域。此外,“选择性”和“异质结”成为突出的研究热点。讨论部分重点介绍了该领域当前面临的挑战,并提出了解决这些障碍的潜在策略,为催化CO2RR领域的研究提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Frontiers in Energy
Frontiers in Energy Energy-Energy Engineering and Power Technology
CiteScore
5.90
自引率
6.90%
发文量
708
期刊介绍: Frontiers in Energy, an interdisciplinary and peer-reviewed international journal launched in January 2007, seeks to provide a rapid and unique platform for reporting the most advanced research on energy technology and strategic thinking in order to promote timely communication between researchers, scientists, engineers, and policy makers in the field of energy. Frontiers in Energy aims to be a leading peer-reviewed platform and an authoritative source of information for analyses, reviews and evaluations in energy engineering and research, with a strong focus on energy analysis, energy modelling and prediction, integrated energy systems, energy conversion and conservation, energy planning and energy on economic and policy issues. Frontiers in Energy publishes state-of-the-art review articles, original research papers and short communications by individual researchers or research groups. It is strictly peer-reviewed and accepts only original submissions in English. The scope of the journal is broad and covers all latest focus in current energy research. High-quality papers are solicited in, but are not limited to the following areas: -Fundamental energy science -Energy technology, including energy generation, conversion, storage, renewables, transport, urban design and building efficiency -Energy and the environment, including pollution control, energy efficiency and climate change -Energy economics, strategy and policy -Emerging energy issue
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