结合热活化冷却的绿色制氢系统性能研究

Q3 Environmental Science Acta Innovations Pub Date : 2022-10-27 DOI:10.32933/actainnovations.47.1
Laince Pierre Moulebe, A. Touati, Eric Obar Akpoviroro, N. Rabbah
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引用次数: 0

摘要

能源转型是旨在对抗全球变暖影响的研发活动的中心。今天,可再生能源在世界电力供应中发挥着重要作用,其使用量与日俱增。由于大规模生产系统的间歇性,产生了开发清洁能源存储系统的需求。因此,储能系统的作用是能源转型的关键因素之一。从这个角度来看,绿氢被定义为能源载体,因为它的能量密度很高,质量可以忽略不计,更不用说它在我们的环境中的丰度了,而且它的提取不会产生任何温室气体。然而,生产成本也不容忽视。因此,这项工作展示了一个绿色氢气生产系统的热平衡的数值建模,该系统使用金属氢化物(MH)罐中的热存储器,用于通过质子交换膜(PEM)燃料电池通电,该燃料电池集成到加热生产中,冷却和卫生热水(SHW),通过回收整个系统释放的热量与吸附器的热激活冷却技术相结合。这可以证明,根据氢气生产链,特别是在第三产业,绿色氢气可能是一个有趣的解决方案。
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Study on performance of a green hydrogen production system integrated with the thermally activated cooling
The energy transition is at the centre of research and development activities with the aim to fight against the effects of global warming. Today, renewable energies play a significant role in the electricity supply to the World and their use increases day after day. Because of the intermittency of a large-scale production system generates the need to develop clean energy storage systems. Hence, energy storage systems play is one of key elements in the energy transition. In this perspective, a green hydrogen is defined as an energy carrier thanks to its high energy density in relation to its negligible mass, not to mention its abundance in our environment, and its extraction, which does not contribute to any greenhouse gases. However, the production cost is not negligible. Hence, this work shows a numerical modelling of the heat balance from a green hydrogen production system using a thermal storage in a Metal Hydride (MH) tank for an electrification by Proton Exchange Membrane (PEM) fuel cell integrated into the production of heating, cooling and sanitary hot water (SHW) through the recovery of the heat released by the whole system combined with the technology of thermally activated cooling of an adsorber. This allows demonstrating that the green hydrogen can be an interesting solution according in the hydrogen production chain and in particular in the tertiary sectors.
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来源期刊
Acta Innovations
Acta Innovations Environmental Science-Environmental Engineering
CiteScore
3.90
自引率
0.00%
发文量
15
审稿时长
16 weeks
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