Research on integrating hydrogen energy storage with solar and wind power for Net-Zero energy buildings

Taojun Sun
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Abstract

Net Zero Energy Buildings (NZEBs) are evolving as a pillar concept as it fits in with the global Net Zero Energy Target strategy and the decarbonisation strategy of the building sector, which has been developed in response to climate change. The shift from existing building types to Net Zero Energy Buildings is a predominant trend. Net Zero Energy Buildings. This review paper explores the use of solar and wind energy as new sources of energy to generate electricity and hydrogen to store electricity as revolutionary solutions to achieve Net Zero Energy Buildings. It provides insights into the technological advances and challenges associated with hydrogen energy systems, including electrolyser efficiency, storage solution resolution, and fuel cell innovation. In addition, the paper highlights the key role of hydrogen in addressing the intermittency of renewable energy generation and enhancing the resilience and sustainability of Net Zero Energy Buildings systems. The potential for scaling up and commercialising hydrogen storage in the building sector is assessed through a detailed examination of current technologies, performance evaluations, and case studies. Despite facing a number of barriers from technical, economic, and policy perspectives, this paper argues that hydrogen storage can make a significant contribution to the decarbonisation of the built environment through continued technological innovation and framework improvement.
研究如何将氢能储存与太阳能和风能结合起来,实现净零能耗建筑
净零能耗建筑(NZEBs)作为一个支柱性概念正在不断发展,因为它符合全球净零能耗目标战略和建筑领域的去碳化战略,而这一战略是为应对气候变化而制定的。从现有建筑类型向净零能耗建筑转变是一个主要趋势。净零能耗建筑。本综述文件探讨了利用太阳能和风能作为新能源发电以及利用氢气储存电力作为实现净零能耗建筑的革命性解决方案。它深入探讨了与氢能系统相关的技术进步和挑战,包括电解槽的效率、存储解决方案的分辨率以及燃料电池的创新。此外,论文还强调了氢能在解决可再生能源发电的间歇性以及提高净零能耗建筑系统的复原力和可持续性方面的关键作用。通过对当前技术、性能评估和案例研究的详细研究,评估了在建筑领域扩大氢储存规模并实现商业化的潜力。尽管在技术、经济和政策方面面临诸多障碍,但本文认为,通过持续的技术创新和框架改进,氢存储可以为建筑环境的去碳化做出重大贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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