陆上电解、海上电解还是涡轮电解?海上风力发电中心绿色制氢替代集成设计的技术经济综述

Alessandro Singlitico, Jacob Østergaard, Spyros Chatzivasileiadis
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引用次数: 54

摘要

海上风力发电的大规模投资带来了如何将这些电力整合到现有能源系统中的重大挑战。在这种背景下,海上风能产生的绿色氢成为消除欧洲及其他地区无碳经济障碍的一种有希望的解决方案。受丹麦最近发展的推动,决定建设世界上第一个人工海上能源中心,本文探讨了如何实现绿色氢的最低成本。提出了一个模型,提出了氢和海上电力基础设施的综合设计,确定氢和电的平准化成本。考虑到不同的电解槽位置、技术和操作模式的组合,评估了海上风力发电中心制氢的经济可行性。结果表明,海上绿色制氢的成本可降至2.4欧元/公斤,与目前天然气制氢的成本具有竞争力。此外,当电解槽安装在海上时,风电成本降低了13%,从而减少了峰值负荷。
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Onshore, offshore or in-turbine electrolysis? Techno-economic overview of alternative integration designs for green hydrogen production into Offshore Wind Power Hubs

Massive investments in offshore wind power generate significant challenges on how this electricity will be integrated into the incumbent energy systems. In this context, green hydrogen produced by offshore wind emerges as a promising solution to remove barriers towards a carbon-free economy in Europe and beyond. Motivated by the recent developments in Denmark with the decision to construct the world's first artificial Offshore Energy Hub, this paper investigates how the lowest cost for green hydrogen can be achieved. A model proposing an integrated design of the hydrogen and offshore electric power infrastructure, determining the levelised costs of both hydrogen and electricity, is proposed. The economic feasibility of hydrogen production from Offshore Wind Power Hubs is evaluated considering the combination of different electrolyser placements, technologies and modes of operations. The results show that costs down to 2.4 €/kg can be achieved for green hydrogen production offshore, competitive with the hydrogen costs currently produced by natural gas. Moreover, a reduction of up to 13% of the cost of wind electricity is registered when an electrolyser is installed offshore shaving the peak loads.

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