广泛实施海洋热能转换对环境的影响。

IF 4.8 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Climatic Change Pub Date : 2025-01-01 Epub Date: 2025-05-10 DOI:10.1007/s10584-025-03944-1
Anna G Nickoloff, Sophia T Olim, Michael Eby, Andrew J Weaver
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引用次数: 0

摘要

海洋热能转换(OTEC)是一种可再生能源系统,有可能取代大量化石燃料发电。为了更好地理解OTEC在不同总功率水平(3、5、7、10和15 TW)下的广泛实施对全球尺度环境的影响,本研究对维多利亚大学地球系统气候模型(一个耦合的气候-碳循环模型)进行了大量的多世纪模拟。对环境的影响包括:与化石燃料密集型控制情景相比,减少了高达3.1ºC的海面升温,增加了中深度的热量吸收,以及提高了生物产量。在2100年,otec引起的混合贡献了大约60%的相对冷却,而其余部分来自otec相关的减排。一旦OTEC终止,所有的相对冷却都是由累积的排放减少引起的。如果单独作用,otec引起的混合的残余效应将有助于海面的轻微相对变暖。OTEC对已知氧最小带扩张的影响很小。在许多情况下,OTEC的部署与预计的气候变化影响相反。相对于高碳排放控制情景,OTEC的部署与地表增温较小、地表水二氧化碳分压增加较小、海洋酸化抑制以及大西洋经向翻转环流强度明显较小的下降有关。尽管存在潜在的工程挑战和经济成本,但初步迹象表明,OTEC的大规模实施可以为减缓气候变化作出重大贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environmental impacts from the widespread implementation of ocean thermal energy conversion.

Ocean thermal energy conversion (OTEC) is a renewable energy system that could potentially displace significant amounts of fossil fuel-generated electricity. This study presents numerous multi-century simulations of the University of Victoria Earth System Climate Model, a coupled climate-carbon cycle model, to better understand the global-scale environmental impacts of the widespread implementation of OTEC at varying total power levels (3, 5, 7, 10, and 15 TW). Environmental impacts include reduced warming of the sea surface by up to 3.1 ºC, increased heat uptake at intermediate depths, and enhanced biological production compared to a fossil fuel intensive control scenario. At year 2100, OTEC-induced mixing contributes roughly 60% of the relative cooling, while the remainder is from OTEC-related emission reductions. Once OTEC is terminated, all relative cooling is caused by accumulated emissions reductions. If acting alone, the residual effect of OTEC-induced mixing would contribute to a minor relative warming of the sea surface. The effect of OTEC on the expansion of known oxygen minimum zones was minimal. In many circumstances, OTEC deployment opposes the projected impacts of climate change. Relative to a high carbon emissions control scenario, OTEC deployment is associated with less surface warming, a smaller increase in surface water pCO2, a suppression of ocean acidification, and significantly smaller declines in the strength of the Atlantic Meridional Overturning Circulation. Despite the potential engineering challenges and economic costs, early indications suggest that the large-scale implementation of OTEC could make a substantial contribution to climate change mitigation.

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来源期刊
Climatic Change
Climatic Change 环境科学-环境科学
CiteScore
10.20
自引率
4.20%
发文量
180
审稿时长
7.5 months
期刊介绍: Climatic Change is dedicated to the totality of the problem of climatic variability and change - its descriptions, causes, implications and interactions among these. The purpose of the journal is to provide a means of exchange among those working in different disciplines on problems related to climatic variations. This means that authors have an opportunity to communicate the essence of their studies to people in other climate-related disciplines and to interested non-disciplinarians, as well as to report on research in which the originality is in the combinations of (not necessarily original) work from several disciplines. The journal also includes vigorous editorial and book review sections.
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