Green Hydrogen Driven by Wind and Solar—An Australian Case Study

Wind Pub Date : 2024-04-12 DOI:10.3390/wind4020006
G. Currie, Edward Behrens, Samuel Bolitho, Michael Coen, Thomas Wilson
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Abstract

The energy transition to wind and solar opens up opportunities for green hydrogen as wind and solar generation tend to bring electricity prices down to very low levels. We evaluate whether green hydrogen can integrate well with wind and solar PVs to improve the South Australian electricity grid. Green hydrogen can use membrane electrolysis plants during periods of surplus renewable energy. This hydrogen can then be electrified or used in industry. The green hydrogen system was analysed to understand the financial viability and technical impact of integrating green hydrogen. We also used system engineering techniques to understand the system holistically, including the technical, social, environmental, and economic impacts. The results show opportunities for the system to provide seasonal storage, grid firming, and reliability services. Financially, it would need changes to electricity rules to be viable, so at present, it would not be viable without subsidy.
风能和太阳能驱动的绿色氢能--澳大利亚案例研究
向风能和太阳能的能源转型为绿色氢气带来了机遇,因为风能和太阳能发电往往会将电价降至非常低的水平。我们评估了绿色氢能能否与风能和太阳能光伏发电很好地结合,以改善南澳大利亚的电网。在可再生能源过剩期间,绿色氢能可以使用膜电解工厂。然后,这些氢气可用于电气化或工业。我们对绿色氢气系统进行了分析,以了解整合绿色氢气的财务可行性和技术影响。我们还利用系统工程技术全面了解该系统,包括技术、社会、环境和经济影响。结果显示,该系统有机会提供季节性储存、电网稳固和可靠性服务。在经济上,该系统需要修改电力规则才能可行,因此目前没有补贴是不可行的。
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