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用于混凝土生产的一氧化碳利用:商业部署与净零排放途径。

CO utilization for concrete production: Commercial deployment and pathways to net-zero emissions.

作者信息

Zhang Duo

机构信息

School of Water Resources and Hydropower Engineering, Wuhan University, Wuhan, 430072, China; State Key Laboratory of Water Resources Engineering and Management, Wuhan University, Wuhan, 430072, China.

出版信息

Sci Total Environ. 2024 Jun 25;931:172753. doi: 10.1016/j.scitotenv.2024.172753. Epub 2024 Apr 26.

Abstract

Approximately 10 % of global anthropogenic CO emissions arise from the cement and concrete industry driven by urban expansion and a constant need for infrastructure renewal. Reusing waste CO to make new construction materials produces circular carbon flows and constitutes a key step toward a carbon-negative economy. To establish a holistic view of the field, this paper examines upscaled technologies with industrial deployments for utilizing CO in manufacturing cement-based materials and analyzes their interplay for attaining net-zero emissions (NZE) in the concrete sector. By scrutinizing the status quo, it suggests that NZE agendas should be diversified catering to the wide-ranging built products. Small-sized precast elements and lightweight components lead the way in carbon-neutral manufacturing, while the market-dominating ready-mix concrete is by far difficult to decarbonize and relies on the incorporation of pre‑carbonated ingredients, preferably sourced from alkaline wastes, to leverage large-scale CO utilization. To expedite the race to NZE, it is necessary to combine the development of CO utilization and low-CO cement to create decarbonization strategies tailoring for individual products. In this regard, the paper reveals credible pathways and research needs to facilitate their implementation in sustainable construction.

摘要

全球人为二氧化碳排放量中约10%来自水泥和混凝土行业,这是由城市扩张以及对基础设施更新的持续需求所驱动的。将废弃二氧化碳再利用以制造新型建筑材料可产生循环碳流,是迈向负碳经济的关键一步。为全面了解该领域,本文研究了用于制造水泥基材料的、已进行工业部署的规模化技术,并分析了它们在混凝土行业实现净零排放(NZE)方面的相互作用。通过审视现状,本文认为净零排放议程应多样化,以适应广泛的建筑产品。小型预制构件和轻质部件在碳中和制造方面走在前列,而占据市场主导地位的预拌混凝土目前很难实现脱碳,依赖于加入预碳酸化成分(最好来源于碱性废物)来实现大规模二氧化碳的利用。为加速迈向净零排放的进程,有必要将二氧化碳利用技术的发展与低碳水泥相结合,制定针对单个产品的脱碳策略。在这方面,本文揭示了可靠的途径和研究需求,以促进其在可持续建筑中的实施。

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