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从科学图谱视角看碳捕集与封存生物能源(BECCS)的演进模式。

Evolution patterns of bioenergy with carbon capture and storage (BECCS) from a science mapping perspective.

机构信息

Business School, Chengdu University, Chengdu 610106, PR China.

Business School, Sichuan University, Chengdu 610065, PR China; Centre for Integrated Research on Risk and Resilience, Department of Geography, King's College London, London WC2R 2LS, United Kingdom.

出版信息

Sci Total Environ. 2021 Apr 20;766:144318. doi: 10.1016/j.scitotenv.2020.144318. Epub 2020 Dec 26.

Abstract

Negative emissions technologies (NETs), which remove and isolate carbon dioxide from the atmosphere, are expected to play a significant role in mitigating climate change. As one of the most promising NETs, bioenergy with carbon capture and storage (BECCS) methods, which captures carbon dioxide (CO) emissions from bioenergy plants and then stores them in geological reservoirs, are being widely used in climate change scenarios. With the increased focus on mitigating solutions, several concerns have been raised regarding the deployment of BECCS. As no science mapping analyses of evolutionary BECCS patterns have yet been made, this study sought to determine these evolution patterns using a systematic analysis approach based on science mapping and visualization analyses. Under a longitudinal framework, the conceptual BECCS evolutionary track was determined using SciMAT to elucidate the structure and dynamic aspects of the associated scientific research. The co-word network and thematic evolutionary analysis revealed five main BECCS related themes. While this study provides a systematic study of BECCS research and development, further research should continue to focus on techno-economic analyses and the ecological and environmental impacts (land-use, water, diversity, and bioenergy crops) of BECCS. An increased research focus on the emerging biochar and hydrogen production themes is expected.

摘要

负排放技术(NETs),即从大气中去除和隔离二氧化碳,预计将在缓解气候变化方面发挥重要作用。作为最有前途的 NETs 之一,生物能源碳捕获与封存(BECCS)方法从生物能源工厂捕获二氧化碳(CO)排放物,然后将其储存在地质储层中,正在气候变化情景中广泛使用。随着对缓解解决方案的关注度增加,人们对 BECCS 的部署提出了一些担忧。由于尚未对 BECCS 的进化模式进行任何科学图谱分析,因此本研究使用基于科学图谱和可视化分析的系统分析方法来确定这些进化模式。在纵向框架下,使用 SciMAT 确定概念性 BECCS 进化轨迹,以阐明相关科学研究的结构和动态方面。共词网络和主题进化分析揭示了五个主要的 BECCS 相关主题。虽然本研究对 BECCS 的研究和开发进行了系统的研究,但仍应继续关注技术经济分析以及 BECCS 的生态和环境影响(土地利用、水、多样性和生物能源作物)。预计将更多地关注新兴的生物炭和氢气生产主题。

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