Life Cycle Greenhouse Gas Emission Assessment of Photovoltaic System in Indonesia

Oktoviano Gandhi, Carlos D Rodríguez-Gallegos, Wenjie Zhang
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引用次数: 1

Abstract

Climate crisis is arguably the biggest challenge that the world is currently facing. Extreme weather events are becoming more frequent while the continuous rise in sea level is putting billions of lives will be at risk. Solving the climate crisis requires global carbon emission to peak by 2025, which means that carbon-intensive fossil fuels must be replaced by low-carbon renewable sources in fulfilling our energy needs. Solar energy, due to its abundance, rapidly decreasing cost, and low carbon emission, is one of the most promising energy sources. Many studies have calculated and compared the life cycle greenhouse gas (GHG) emissions of solar photovoltaic (PV) systems with conventional fuel generation. Nevertheless, the life cycle GHG emission values are affected by many location- and technology-dependent factors. This work provides an up-to-date and realistic assessment of the life cycle GHG emission for PV systems in Indonesia through thorough literature review and harmonization according to Indonesian parameters. The study shows that PV GHG emission of 37.3-64.3 gCO2eq/kWh are much lower than the current emission intensity of the Indonesian power sector. By fulfilling rising electricity demand using PV, up to 654 MtCO2eq can be avoided annually by 2050.
印尼光伏系统全生命周期温室气体排放评估
气候危机可以说是当今世界面临的最大挑战。极端天气事件变得越来越频繁,而海平面的持续上升正使数十亿人的生命处于危险之中。解决气候危机需要全球碳排放在2025年达到峰值,这意味着必须用低碳可再生能源取代碳密集型化石燃料,以满足我们的能源需求。太阳能因其储量丰富、成本下降快、碳排放低等优点,是最有发展前途的能源之一。许多研究计算并比较了太阳能光伏发电系统与传统燃料发电系统的生命周期温室气体排放量。然而,生命周期温室气体排放值受到许多区位和技术依赖因素的影响。这项工作提供了一个最新的和现实的评估生命周期温室气体排放的光伏系统在印度尼西亚通过彻底的文献审查和协调根据印度尼西亚的参数。研究表明,光伏发电的温室气体排放量为37.3-64.3 gCO2eq/kWh,远低于印尼电力部门目前的排放强度。通过使用光伏满足不断增长的电力需求,到2050年每年可避免高达6.54亿吨二氧化碳当量。
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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