arXiv Open Access 2025

Scaling green hydrogen and CCUS via cement-methanol co-production in China

Yuezhang He Hongxi Luo Yuancheng Lin Carl J. Talsma Anna Li +6 lainnya
Lihat Sumber

Abstrak

High costs of green hydrogen and of carbon capture, utilization, and sequestration (CCUS) have hindered policy ambition and slowed real-world deployment, despite their importance for decarbonizing hard-to-abate sectors, including cement and methanol. Given the economic challenges of adopting CCUS in cement and green hydrogen in methanol production separately, we propose a renewable-powered co-production system that couples electrolytic hydrogen and CCUS through molecule exchange. We optimize system configurations using an hourly-resolved, process-based model incorporating operational flexibility, and explore integrated strategies for plant-level deployment and CO2 source-sink matching across China. We find that co-production could reduce CO2 abatement costs to USD 41-53 per tonne by 2035, significantly lower than approximately USD 75 for standalone cement CCUS and over USD 120 for standalone renewable-based methanol. Co-production is preferentially deployed at cement plants in renewable-rich regions, potentially reshaping national CO2 infrastructure planning. This hydrogen-CCUS coupling paradigm could accelerate industrial decarbonization and scaling for other applications.

Topik & Kata Kunci

Penulis (11)

Y

Yuezhang He

H

Hongxi Luo

Y

Yuancheng Lin

C

Carl J. Talsma

A

Anna Li

Z

Zhenqian Wang

Y

Yujuan Fang

P

Pei Liu

J

Jesse D. Jenkins

E

Eric Larson

Z

Zheng Li

Format Sitasi

He, Y., Luo, H., Lin, Y., Talsma, C.J., Li, A., Wang, Z. et al. (2025). Scaling green hydrogen and CCUS via cement-methanol co-production in China. https://arxiv.org/abs/2509.13674

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Tahun Terbit
2025
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en
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arXiv
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Open Access ✓