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通过环境外部性货币化对太阳能进行生命周期成本分析。

Life cycle cost analysis of solar energy via environmental externality monetization.

机构信息

College of Environment and Architecture, University of Shanghai for Science and Technology, Shanghai, China.

College of Environment and Architecture, University of Shanghai for Science and Technology, Shanghai, China.

出版信息

Sci Total Environ. 2023 Jan 15;856(Pt 1):158910. doi: 10.1016/j.scitotenv.2022.158910. Epub 2022 Sep 21.

Abstract

Evaluating the embodied environmental impact of solar photovoltaic (PV) technology has been an important topic in addressing the sustainable development of renewable energy. While monetization of environmental externality is a remaining issue, which should be carried out in order to allow for an easy-to-understand comparison between direct economic and external cost. In this study, the environmental impact of solar PV power is monetized through conversion factors between midpoint and endpoint categories of life cycle analysis and the monetization weighting factor. Then, the power generation capacity and generation life of PV and coal-fired power plants are assumed to be consistent in order to compare the total cost of PV and coal-fired power generation. Results show that the cost of PV technology is higher than coal-fired form the base year from 2026 until 2030, taking into account environmental external costs and production costs. However, by 2030, the total cost of coal-fired power will be higher than that of solar PV. The life span cost per kWh is $3.55 for solar PV and $116.25 for coal-fired power. Although solar PV power seems more environmentally effective than coal-fired power in the life span, our results reveal the high environmental external cost of producing solar photovoltaic modules, which reminds us to pay more attention to the environmental impact when conducting cost-benefit analysis of renewable technologies. Without incorporating the environmental cost, the real cost of renewable technology will be underestimated.

摘要

评估太阳能光伏 (PV) 技术的体现环境影响一直是解决可再生能源可持续发展的重要课题。虽然环境外部性的货币化仍然是一个遗留问题,为了能够在直接经济成本和外部成本之间进行易于理解的比较,应该进行货币化。在本研究中,通过生命周期分析中点和终点类别之间的转换因子和货币化权重因子,对太阳能光伏电力的环境影响进行货币化。然后,假设光伏和燃煤电厂的发电容量和寿命保持一致,以比较光伏和燃煤发电的总成本。结果表明,考虑到环境外部成本和生产成本,从 2026 年到 2030 年,光伏技术的成本高于燃煤技术。然而,到 2030 年,燃煤电厂的总成本将高于太阳能光伏。光伏每千瓦时的生命周期成本为 3.55 美元,燃煤为 116.25 美元。尽管在生命周期内,太阳能光伏似乎比燃煤更环保,但我们的结果揭示了生产太阳能光伏组件的高环境外部成本,这提醒我们在进行可再生技术的成本效益分析时要更加关注环境影响。如果不考虑环境成本,可再生技术的实际成本将被低估。

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