脱氢
计算流体力学
工艺工程
无量纲量
储能
氢气储存
流量(数学)
氢
材料科学
核工程
催化作用
机械
化学
热力学
物理
工程类
有机化学
功率(物理)
作者
Laurens Van Hoecke,Nithin B. Kummamuru,Hesam Pourfallah,Sammy W. Verbruggen,Patrice Perreault
标识
DOI:10.1016/j.ijhydene.2023.08.150
摘要
In the recent advances towards more sustainable global energy supply, H2 is a possible alternative for large scale energy storage. In this view, Liquid Organic Hydrogen Carriers (LOHC) are a class of molecules that allow for easier long term energy storage compared to conventional H2 technologies. CFD simulations were used to showcase the hydrodynamics of the dehydrogenation of a LOHC in a new reactor unit, via a cold flow mock-up study. This reactor was designed to allow for a swirling motion of the liquid carrier material, favouring the removal of H2 gas from the flow and forcing the equilibrium of the reaction towards dehydrogenation, as well as to keep the catalyst particles in motion. The CFD simulations were validated qualitatively with experimental operation of the reactor, in a system with identical dimensionless numbers (Reynolds and Stokes), in order to use less costly products during the prototyping phase.
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