评估太阳能-氢能混合系统的技术经济可行性:近期研究综述

iEnergy Pub Date : 2024-03-01 DOI:10.23919/IEN.2024.0004
Emmanuel Akono Sarsah;Albert Kojo Sunnu;Abdul-Rahim Bawa
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摘要

向可持续的低碳能源未来过渡需要创新的综合解决方案。太阳能-氢能混合系统(HSHS)结合了太阳能收集和氢气生产,在应对与可再生能源的生产、储存和使用相关的挑战方面具有极佳的前景。本文概述了有关太阳能-氢能混合系统技术和经济可行性的研究,旨在全面阐述其现状、显著进展和未来研究方向。文章首先阐明了太阳能原理和转换方法,并强调了太阳能制氢的潜力。然后,本研究探讨了氢能系统的定义、组成部分和协同集成。此外,还重点介绍了用于高效制氢和储氢的优化能量转换和储存方法。本研究回顾了过去六年中技术经济评估所采用的技术,以应对太阳能间歇性和制氢技术效率等挑战。对正在进行的研究进行回顾,有助于深入了解 HSHS 的技术和经济可行性。这突出表明,有必要继续开展研究和开发工作,以克服现有挑战,充分释放其潜力。这些系统可以通过优化系统性能、降低成本和促进支持性政策框架,在实现更清洁、更具弹性的能源未来方面发挥重要作用。
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Assessing the techno-economic feasibility of hybrid solar-hydrogen systems: A review of recent studies
Transition toward a sustainable, low-carbon energy future requires innovative, integrated solutions. Hybrid solar-hydrogen systems (HSHSs), which combine solar energy harvesting and hydrogen production, have excellent prosepects to address challenges related to renewable energy generation, storage, and usage. This article presents an overview of the research on the technical and economic feasibility of HSHSs, aimed at comprehensively articulating their current state, notable advancements, and future research directions. It begins by elucidating solar energy principles and conversion methods and emphasizing the potential of solar energy for hydrogen production. This study then explores the definitions, components, and synergistic integration of HSHSs. Optimized energy conversion and storage methods for efficient hydrogen production and storage are also highlighted. This study reviews the techniques employed for techno-economic evaluations over the last six years, addressing challenges such as the intermittency of solar energy and the efficiency of hydrogen production technologies. This review of the ongoing research provides helpful insights into the technological and economic feasibility of HSHSs. This underscores the necessity of continuous research and development efforts to overcome existing challenges and unlock their full potential. These systems can play a vital role in achieving a cleaner and more resilient energy future by optimizing the system performance, reducing costs, and fostering supportive policy frameworks.
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