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首页> 外文期刊>Journal of environment informatics >Solar Photovoltaic Utilization in Electricity Generation to Tackle Climate Change
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Solar Photovoltaic Utilization in Electricity Generation to Tackle Climate Change

机译:利用太阳能光伏发电应对气候变化

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Climate change is threatening nature by impacting the vital processes of life. The efforts to mitigate climate change mainly focus on utilizing renewable energy sources in high energy consumption areas. This article studies the contribution of solar photovoltaic (PV) utilization in electricity generation to climate change mitigation through a comprehensive modeling framework. The mean temperature anomalies, anthropogenic greenhouse gas emissions, solar photovoltaic capacity installations, and solar cycle length are considered using Australian data between 2001 and 2019. It is demonstrated that solar PV installations have a strong potential to contribute to mitigating climate change. A 1 increase in average PV installations contributes to reducing the temperature anomalies by 0.05, and when considered in the same model with greenhouse gas emissions, a 1 increase in sunspot numbers increases temperature anomalies in Australia by 0.71 in the long-run. A low-magnitude relationship between solar cycle length and greenhouse gas emissions is also observed. The results of this study are beneficial in specifying more accurate targets, better allocation of limited climate action budgets, and better planning and management of solar energy investments.
机译:气候变化通过影响生命的重要过程来威胁自然。减缓气候变化的努力主要集中在高耗能地区利用可再生能源。本文通过一个全面的建模框架,研究了太阳能光伏发电对减缓气候变化的贡献。使用 2001 年至 2019 年间的澳大利亚数据考虑了平均温度异常、人为温室气体排放、太阳能光伏装机容量和太阳周期长度。事实证明,太阳能光伏装置具有为缓解气候变化做出贡献的巨大潜力。平均光伏装机量增加1%有助于将温度异常降低0.05%,当在温室气体排放的同一模型中考虑时,从长远来看,太阳黑子数量增加1%将使澳大利亚的温度异常增加0.71%。还观察到太阳周期长度与温室气体排放之间存在低幅度的关系。这项研究的结果有助于确定更准确的目标,更好地分配有限的气候行动预算,以及更好地规划和管理太阳能投资。

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