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紫外线在海洋环境中的穿透:综述

Penetration of ultraviolet radiation in the marine environment. A review.

作者信息

Tedetti Marc, Sempéré Richard

机构信息

Laboratoire de Microbiologie Géochimie et Ecologie Marines, CNRS/INSU, UMR 6117, Centre d'Océanologie de Marseille, Université de la Méditerranée, Marseille, France.

出版信息

Photochem Photobiol. 2006 Mar-Apr;82(2):389-97. doi: 10.1562/2005-11-09-IR-733.

Abstract

UV radiation (UVR) is a significant ecological factor in the marine environment that can have important effects on planktonic organisms and dissolved organic matter (DOM). The penetration of UVR into the water column is likely to change in the near future due to interactions between global warming and ozone depletion. In this study we report underwater instruments employed for the measurement of UVR and we review data dealing with the depth of UVR penetration in different oceanic areas including the open ocean, Antarctic waters and coastal waters. We provide the 10% irradiance depth (Z10%) for UV-A and UV-B as well as for DNA damage effective dose (DNA), which we calculated from the values of diffuse attenuation coefficients or vertical profiles reported in the literature. We observe a clear distinction between open ocean (high Z10%, no variation in the ratio UV-B/UV-A), Antarctic waters (increase in the ratio UV-B/UV-A during ozone hole conditions) and coastal waters (low Z10%, no variation in the ratio UV-B/UV-A). These variations in the penetration of UVR could lead to differences in the relative importance of photobiological/photochemical processes. We also compare in this study the penetration of UV-B (unweighted and weighted by the Setlow action spectrum) and DNA damage effective dose.

摘要

紫外线辐射(UVR)是海洋环境中的一个重要生态因子,会对浮游生物和溶解有机物(DOM)产生重要影响。由于全球变暖和臭氧层损耗之间的相互作用,UVR在水柱中的穿透情况在不久的将来可能会发生变化。在本研究中,我们报告了用于测量UVR的水下仪器,并回顾了有关UVR在不同海洋区域(包括公海、南极水域和沿海水域)穿透深度的数据。我们提供了UV-A和UV-B以及DNA损伤有效剂量(DNA)的10%辐照度深度(Z10%),这些数据是我们根据文献中报道的漫射衰减系数值或垂直剖面计算得出的。我们观察到公海(Z10%高,UV-B/UV-A比值无变化)、南极水域(在臭氧空洞条件下UV-B/UV-A比值增加)和沿海水域(Z10%低,UV-B/UV-A比值无变化)之间存在明显差异。UVR穿透情况的这些变化可能导致光生物学/光化学过程的相对重要性出现差异。在本研究中,我们还比较了UV-B(未加权和根据Setlow作用光谱加权)的穿透情况以及DNA损伤有效剂量。

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