Institute of Environmental Sciences (CML), Leiden University, P.O. Box 9518, 2300 RA Leiden, the Netherlands.
Netherlands Organization for Applied Scientific Research, P.O. Box 96800, 2509 JE Den Haag, the Netherlands.
Environ Sci Technol. 2022 Aug 16;56(16):11567-11577. doi: 10.1021/acs.est.2c02183. Epub 2022 Jul 28.
Continuous reduction in the levelized cost of energy is driving the rapid development of offshore wind energy (OWE). It is thus important to evaluate, from an environmental perspective, the implications of expanding OWE capacity on a global scale. Nevertheless, this assessment must take into account various scenarios for the growth of different OWE technologies in the near future. To evaluate the environmental impacts of future OWE development, this paper conducts a prospective life cycle assessment (LCA) including parameterized supply chains with high technology resolution. Results show that OWE-related environmental impacts, including climate change, marine ecotoxicity, marine eutrophication, and metal depletion, are reduced by ∼20% per MWh from 2020 to 2040 due to various developments including size expansion, lifetime extension, and technology innovation. At the global scale, 2.6-3.6 Gt CO equiv of greenhouse gas emissions are emitted cumulatively due to OWE deployment from 2020 to 2040. The manufacturing of primary raw materials, such as steel and fibers, is the dominant contributor to impacts. Overall, 6-9% of the cumulative OWE-related environmental impacts could be reduced by end-of-life (EoL) recycling and the substitution of raw materials.
随着能源平准化成本的持续降低,海上风能(OWE)正飞速发展。因此,从环境角度评估全球范围内扩大 OWE 容量的影响非常重要。然而,这种评估必须考虑到未来不同 OWE 技术的各种增长情景。为了评估未来 OWE 发展的环境影响,本文进行了一项具有高技术分辨率参数化供应链的前瞻性生命周期评估(LCA)。结果表明,由于规模扩大、寿命延长和技术创新等各种发展,2020 年至 2040 年,OWE 相关的环境影响(包括气候变化、海洋生态毒性、海洋富营养化和金属枯竭)每兆瓦时减少约 20%。在全球范围内,由于 2020 年至 2040 年 OWE 的部署,累计排放了 26-36 亿吨二氧化碳当量的温室气体。制造钢和纤维等初级原材料是造成影响的主要因素。总的来说,通过报废回收和原材料替代,可以减少 6-9%的 OWE 相关环境影响的累积量。