氢气储存
氢
制氢
碳捕获和储存(时间表)
废物管理
吨
碳纤维
生命周期评估
环境科学
原材料
化石燃料
温室气体
生产(经济)
材料科学
化学
工程类
经济
生态学
气候变化
宏观经济学
复合材料
有机化学
复合数
生物
标识
DOI:10.1038/s43247-022-00632-1
摘要
Abstract Waste plastic gasification for hydrogen production combined with carbon capture and storage is one technology option to address the plastic waste challenge. Here, we conducted a techno-economic analysis and life cycle assessment to assess this option. The minimum hydrogen selling price of a 2000 oven-dry metric ton/day mixed plastic waste plant with carbon capture and storage is US$2.26–2.94 kg −1 hydrogen, which can compete with fossil fuel hydrogen with carbon capture and storage (US$1.21–2.62 kg −1 hydrogen) and current electrolysis hydrogen (US$3.20–7.70 kg −1 hydrogen). An improvement analysis outlines the roadmap for reducing the average minimum hydrogen selling price from US$2.60 to US$1.46 kg −1 hydrogen, which can be further lowered to US$1.06 kg −1 hydrogen if carbon credits are close to the carbon capture and storage costs along with low feedstock cost. The life cycle assessment results show that hydrogen derived from mixed plastic waste has lower environmental impacts than single-stream plastics.
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