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首页> 外文期刊>International journal of hydrogen energy >On capital utilization in the hydrogen economy: The quest to minimize idle capacity in renewables-rich energy systems
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On capital utilization in the hydrogen economy: The quest to minimize idle capacity in renewables-rich energy systems

机译:论氢气经济中的资本利用:可再生能源能源系统中最小化怠速容量的探索

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The hydrogen economy is currently experiencing a surge in attention, partly due to the possibility of absorbing variable renewable energy (VRE) production peaks through electrolysis. A fundamental challenge with this approach is low utilization rates of various parts of the integrated electricity-hydrogen system. To assess the importance of capacity utilization, this paper introduces a novel stylized numerical energy system model incorporating the major elements of electricity and hydrogen generation, transmission and storage, including both "green" hydrogen from electrolysis and "blue" hydrogen from natural gas reforming with CO2 capture and storage (CCS). Concurrent optimization of all major system elements revealed that balancing VRE with electrolysis involves substantial additional costs beyond reduced electrolyzer capacity factors. Depending on the location of electrolyzers, greater capital expenditures are also required for hydrogen pipelines and storage infrastructure (to handle intermittent hydrogen production) or electricity transmission networks (to transmit VRE peaks to electrolyzers). Blue hydrogen scenarios face similar constraints. High VRE shares impose low utilization rates of CO2 capture, transport and storage infrastructure for conventional CCS, and of hydrogen transmission and storage infrastructure for a novel process (gas switching reforming) that enables flexible power and hydrogen production. In conclusion, all major system elements must be considered to accurately reflect the costs of using hydrogen to integrate higher VRE shares. (C) 2020 The Author(s). Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:氢气经济目前正在引起浪潮,部分原因是通过电解吸收可变可再生能源(VRE)生产峰的可能性。这种方法的根本挑战是综合电力 - 氢系统各部分的利用率低。为了评估产能利用的重要性,介绍了一种新型风格化数值能量系统模型,包括电力和氢气的主要元素,传播和储存,包括来自电解的“绿色”氢气和“蓝色”氢气与天然气重整CO2捕获和存储(CCS)。所有主要系统元素的并发优化表明,使用电解的平衡VRE涉及超出电解槽容量因子的大量额外成本。根据电解器的位置,氢水管道和储存基础设施(处理间歇性氢气生产)或电传输网络也需要更大的资本支出(以将VE峰传输到电解器)。蓝色氢感场面临类似的约束。高VRE股票对传统CCS的CO2捕获,运输和储存基础设施的利用率低,以及用于新工艺(气体开关重整)的氢传输和存储基础设施,可实现灵活的电力和氢气。总之,必须考虑所有主要系统元素,以准确反映使用氢以整合更高的VRE股票的成本。 (c)2020提交人。由elsevier有限公司发布代表氢能出版物LLC。

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