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首页> 外文期刊>Energy Conversion & Management >Finding synergy between renewables and coal: Flexible power and hydrogen production from advanced IGCC plants with integrated CO_2 capture
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Finding synergy between renewables and coal: Flexible power and hydrogen production from advanced IGCC plants with integrated CO_2 capture

机译:寻找可再生能源和煤炭之间的协同作用:具有综合CO_2捕获的高级IGCC工厂的灵活电力和氢气生产

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摘要

Variable renewable energy (VRE) has seen rapid growth in recent years. However, VRE deployment requires a fleet of dispatchable power plants to supply electricity during periods with limited wind and sunlight. These plants will operate at reduced utilization rates that pose serious economic challenges. To address this challenge, this paper presents the techno-economic assessment of flexible power and hydrogen production from integrated gasification combined cycles (IGCC) employing the gas switching combustion (GSC) technology for CO2 capture and membrane assisted water gas shift (MAWGS) reactors for hydrogen production. Three GSC-MAWGS-IGCC plants are evaluated based on different gasification technologies: Shell, High Temperature Winkler, and GE. These advanced plants are compared to two benchmark IGCC plants, one without and one with CO2 capture. All plants utilize state-of-the-art H-class gas turbines and hot gas clean-up for maximum efficiency. Under baseload operation, the GSC plants returned CO2 avoidance costs in the range of 24.9-36.9 is an element of/ton compared to 44.3 is an element of/ton for the benchmark. However, the major advantage of these plants is evident in the more realistic mid-load scenario. Due to the ability to keep operating and sell hydrogen to the market during times of abundant wind and sun, the best GSC plants offer a 6-11%-point higher annual rate of return than the benchmark plant with CO2 capture. This large economic advantage shows that the flexible GSC plants are a promising option for balancing VRE, provided a market for the generated clean hydrogen exists.
机译:可变可再生能源(VRE)近年来迅速增长。然而,VRE部署需要一支可调度发电厂的舰队,以在风和阳光有限的时期供电。这些植物将以降低的利用率运作,这些利率造成严重的经济挑战。为了解决这一挑战,本文提出了从集成气化组合循环(IGCC)的柔性电力和氢气生产的技术经济评估,采用用于CO2捕获和膜辅助水气体换算(MAWGS)反应器的气体切换燃烧(GSC)技术氢气生产。基于不同的气化技术评估了三种GSC-MAWGS-IGCC植物:壳牌,高温刮水和GE。这些先进的植物与两个基准IGCC植物进行比较,一个没有,一个有二氧化碳捕获。所有植物都利用最先进的H级燃气轮机和热气体清理,以获得最高效率。在基准操作下,GSC工厂返回CO2避免成本24.9-36.9是/吨的元素,而44.3是用于基准的/吨的元素。然而,这些植物的主要优点在更现实的中负荷场景中是明显的。由于能够在丰富的风和太阳期间将氢气运行和销售氢气,最好的GSC工厂优于6-11%的人数比有二氧化碳捕获的基准工厂更高的年度回报率。这种大型的经济优势表明,柔性GSC工厂是平衡VRE的有希望的选择,提供了产生的清洁氢的市场。

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