纳米氢能转换研究综述

Hydrogen Pub Date : 2023-09-12 DOI:10.3390/hydrogen4030043
Rui F. M. Lobo
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引用次数: 0

摘要

考虑到氢气清洁、可再生和生态友好的特点,以及它的高能量密度,氢能源被认为是在当地取代化石燃料的最有力的竞争者。创建可持续能源系统是当前工业面临的关键挑战之一,而与适当的安全储存技术相关的电催化析氢是实施基于氢技术的系统的关键策略。通过纳米技术的结合,无论是在创新的储氢方法还是生产方法方面,最近取得的进展都是未来在能源可持续性方面取得突破的保证。这份手稿地址简洁,最初包括纳米技术的重要性在绿色电力生产氢和氢储存在固体介质。这项工作主要集中在这些问题上,并最终打算改变人们的信念,即氢技术只是出于可持续性的原因而不是出于技术本身的内在价值。此外,纳米物理学和纳米工程具有显著改变传统氢技术范式的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Brief on Nano-Based Hydrogen Energy Transition
Considering the clean, renewable, and ecologically friendly characteristics of hydrogen gas, as well as its high energy density, hydrogen energy is thought to be the most potent contender to locally replace fossil fuels. The creation of a sustainable energy system is currently one of the critical industrial challenges, and electrocatalytic hydrogen evolution associated with appropriate safe storage techniques are key strategies to implement systems based on hydrogen technologies. The recent progress made possible through nanotechnology incorporation, either in terms of innovative methods of hydrogen storage or production methods, is a guarantee of future breakthroughs in energy sustainability. This manuscript addresses concisely and originally the importance of including nanotechnology in both green electroproduction of hydrogen and hydrogen storage in solid media. This work is mainly focused on these issues and eventually intends to change beliefs that hydrogen technologies are being imposed only for reasons of sustainability and not for the intrinsic value of the technology itself. Moreover, nanophysics and nano-engineering have the potential to significantly change the paradigm of conventional hydrogen technologies.
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