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作用光谱影响无云日生物有效紫外线辐射气候学的变异性。

Action spectra affect variability of the climatology of biologically effective ultraviolet radiation on cloud-free days.

作者信息

Grifoni D, Zipoli G, Sabatini F, Messeri G, Bacci L

机构信息

CNR - Institute of Biometeorology, Via Madonna del Piano, 10, Sesto Fiorentino, FI 50019, Italy.

出版信息

Radiat Prot Dosimetry. 2013 Dec;157(4):491-8. doi: 10.1093/rpd/nct178. Epub 2013 Jul 9.

Abstract

Action spectrum (AS) describes the relative effectiveness of ultraviolet (UV) radiation in producing biological effects and allows spectral UV irradiance to be weighted in order to compute biologically effective UV radiation (UVBE). The aim of this research was to study the seasonal and latitudinal distribution over Europe of daily UVBE doses responsible for various biological effects on humans and plants. Clear sky UV radiation spectra were computed at 30-min time intervals for the first day of each month of the year for Rome, Potsdam and Trondheim using a radiative transfer model fed with climatological data. Spectral data were weighted using AS for erythema, vitamin D synthesis, cataract and photokeratitis for humans, while the generalised plant damage and the plant damage AS were used for plants. The daily UVBE doses for the above-mentioned biological processes were computed and are analysed in this study. The patterns of variation due to season (for each location) and latitude (for each date) resulted as being specific for each adopted AS. The biological implications of these results are briefly discussed highlighting the importance of a specific UVBE climatology for each biological process.

摘要

作用光谱(AS)描述了紫外线(UV)辐射产生生物效应的相对有效性,并允许对光谱紫外线辐照度进行加权,以便计算生物有效紫外线辐射(UVBE)。本研究的目的是研究在欧洲,对人类和植物产生各种生物效应的每日UVBE剂量的季节和纬度分布。利用输入气候数据的辐射传输模型,以30分钟的时间间隔计算了罗马、波茨坦和特隆赫姆一年中每个月第一天的晴空紫外线辐射光谱。光谱数据使用针对人类红斑、维生素D合成、白内障和光角膜炎的作用光谱进行加权,而对于植物,则使用广义植物损伤和植物损伤作用光谱。本研究计算并分析了上述生物过程的每日UVBE剂量。由于季节(针对每个地点)和纬度(针对每个日期)导致的变化模式因每个采用的作用光谱而异。简要讨论了这些结果的生物学意义,强调了针对每个生物过程的特定UVBE气候学的重要性。

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