改进碱性电解槽制氢新电极设计的开发与仿真

IF 7.1 2区 工程技术 Q1 ENERGY & FUELS
Mohamed M. Ismail , Dogan Erdemir , Ibrahim Dincer
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引用次数: 0

摘要

本研究开发了多种修饰电极表面几何形状,旨在提高碱性水电解槽(AWEs)的产氢率。随后,研究了如何利用所开发的仿真模型来评估流动特性并确定最佳的电极表面修饰。该模型结合了圆形、三角形和矩形的凹陷电极表面。此外,我们研究了每个酒窝的形状在其向内,向外和交替配置。模拟结果表明,这些表面修饰可以在析气室内部的流动中引入局部湍流。这反过来又改善了气泡与电极表面的分离。结果表明,电极表面变化引起的湍流与释放气体体积分数的增加之间存在相关性。值得注意的是,向内的矩形凹窝导致氢体积分数增加高达9.7%。该研究强调了电极几何形状在提高AWE性能方面的关键作用,并为推进绿色制氢技术提供了见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and simulation of new electrode designs for improved hydrogen production in alkaline electrolyzers
This study develops multiple modified electrode surface geometries which aims at enhancing the hydrogen production rates of alkaline water electrolyzers (AWEs). Subsequently, the study investigates how the developed simulation model to determine is utilized to evaluate the flow characteristics and identify the optimal electrode surface modification. The model incorporates dimpled electrode surfaces with circular, triangular, and rectangular shapes. Furthermore, we study each dimple shape in its inward, outward, and alternating configurations. The simulations show that these surface modifications can introduce localized turbulence to the flow inside the gas evolution chamber. This, in turn, improves the gas bubbles’ separation from the electrode surface. The results demonstrate a correlation between the induced turbulence from electrode surface changes and an increase in the volume fraction of evolved gases. Notably, inward-facing rectangular dimples lead to an increment in hydrogen volume fraction of up to 9.7%. This study highlights the critical role of electrode geometry in improving AWE performance and provides insights for advancing green hydrogen production technologies.
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来源期刊
Sustainable Energy Technologies and Assessments
Sustainable Energy Technologies and Assessments Energy-Renewable Energy, Sustainability and the Environment
CiteScore
12.70
自引率
12.50%
发文量
1091
期刊介绍: Encouraging a transition to a sustainable energy future is imperative for our world. Technologies that enable this shift in various sectors like transportation, heating, and power systems are of utmost importance. Sustainable Energy Technologies and Assessments welcomes papers focusing on a range of aspects and levels of technological advancements in energy generation and utilization. The aim is to reduce the negative environmental impact associated with energy production and consumption, spanning from laboratory experiments to real-world applications in the commercial sector.
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