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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Stratospheric controlled perturbation experiment: a small-scale experiment to improve understanding of the risks of solar geoengineering
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Stratospheric controlled perturbation experiment: a small-scale experiment to improve understanding of the risks of solar geoengineering

机译:平流层控制摄动实验:一项小规模实验,目的是增进对太阳地球工程风险的理解

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摘要

Although solar radiation management (SRM) through stratospheric aerosol methods has the potential to mitigate impacts of climate change, our current knowledge of stratospheric processes suggests that these methods may entail significant risks. In addition to the risks associated with current knowledge, the possibility of 'unknown unknowns' exists that could significantly alter the risk assessment relative to our current understanding. While laboratory experimentation can improve the current state of knowledge and atmospheric models can assess large-scale climate response, they cannot capture possible unknown chemistry or represent the full range of interactive atmospheric chemical physics. Small-scale, in situ experimentation under well-regulated circumstances can begin to remove some of these uncertainties. This experiment-provisionally titled the stratospheric controlled perturbation experiment-is under development and will only proceed with transparent and predominantly governmental funding and independent risk assessment. We describe the scientific and technical foundation for performing, under external oversight, small-scale experiments to quantify the risks posed by SRM to activation of halogen species and subsequent erosion of stratospheric ozone. The paper's scope includes selection of the measurement platform, relevant aspects of stratosphericmeteorology, operational considerations and instrument design and engineering.
机译:尽管通过平流层气溶胶方法进行太阳辐射管理(SRM)具有减轻气候变化影响的潜力,但我们目前对平流层过程的了解表明,这些方法可能会带来重大风险。除了与当前知识相关的风险外,还存在“未知未知数”的可能性,相对于我们目前的理解,这可能会显着改变风险评估。尽管实验室实验可以改善当前的知识水平,并且大气模型可以评估大规模的气候响应,但它们无法捕获可能的未知化学物质或代表互动性大气化学物理学的完整范围。在良好管理的情况下进行的小型原位实验可以消除一些不确定性。此实验(暂时称为“平流层受控扰动实验”)正在开发中,仅在透明且主要由政府资助和独立风险评估的情况下进行。我们描述了在外部监督下进行小规模实验以量化SRM对活化卤素物质以及随后对平流层臭氧侵蚀造成的风险的科学和技术基础。本文的范围包括测量平台的选择,平流层气象学的相关方面,操作注意事项以及仪器设计和工程。

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