电力转天然气
灵活性(工程)
可再生能源
生产(经济)
还原(数学)
制氢
碳捕获和储存(时间表)
风力发电
环境科学
降低成本
工艺工程
环境经济学
工程类
氢
经济
电气工程
化学
气候变化
微观经济学
几何学
物理化学
管理
有机化学
电解
电极
生物
电解质
数学
生态学
作者
Robert Frank Weiss,Jussi Ikäheimo
出处
期刊:Applied Energy
[Elsevier BV]
日期:2024-04-22
卷期号:365: 123230-123230
被引量:23
标识
DOI:10.1016/j.apenergy.2024.123230
摘要
Hydrogen Direct Reduction of Iron (HDRI) combined with renewable electricity is an attractive option for low-carbon steel production. In this paper, we present a novel and computationally efficient techno-economic power-to-x-plant optimization model which is then applied to an HDRI plant located in Finland. Plant dimensioning was carried out in several current and future power market and regulatory scenarios. We predict a production cost of 373 €/t for hot briquetted iron, and 351 €/t for a future scenario of 2025–2030. When the recently introduced EU rules for renewable fuels of non-biological origin are applied, the production costs increased by 30–46 €/t. The rules also have a significant increasing effect on the required hydrogen storage. The flexibility of the direct reduction shaft emerged as an important parameter affecting the required hydrogen storage as well as total production cost. The results of this paper hold significance for the optimal design of future low-carbon steel plants.
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