极地平流层云形成的研究进展

Xihong Wang, Diane V. Michelangeli
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引用次数: 6

摘要

众所周知,极地平流层云(PSCs)中的液体和固体颗粒在冬末春初南极和北极地区平流层臭氧的化学损失中起着至关重要的作用。平流层气溶胶和云粒子提供了快速非均相化学反应的场所,这些反应将不活跃的卤素库物质转化为潜在的破坏臭氧的自由基。含硝酸的PSC颗粒的沉降不可逆地从平流层下层去除HNO3气体(反硝化作用),从而减缓氯的非活性形式,导致更严重的平流层臭氧破坏。虽然这些云在过去十年中已经通过现场观测、实验室实验和模拟研究进行了广泛的研究,但在平流层冷条件下的详细微物理过程仍然不确定。本文综述了近年来我们对psc的认识进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A review of polar stratospheric cloud formation

Liquid and solid particles in polar stratospheric clouds (PSCs) have been known to play a crucial role in the chemical loss of stratospheric ozone over the Antarctic and Arctic regions in late winter and early spring. The stratospheric aerosol and cloud particles provide the sites where fast heterogeneous chemical reactions convert inactive halogen reservoir species into potential ozone destroying radicals. The sedimentation of nitric acid-containing PSC particles irreversibly removes HNO3 gas (denitrification) from the lower stratosphere, which slows the return of chlorine to its inactive forms, resulting in more severe stratospheric ozone destruction. Although these clouds have been investigated extensively during the past decade using in situ field observation, laboratory experiment and modeling studies, the detailed microphysics processes under cold stratospheric conditions are still uncertain. This paper reviews the recent advances in our understanding of PSCs.

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