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首页> 外文期刊>Photochemistry and Photobiology: An International Journal >Solar ultraviolet-B radiation in urban environments: The case of Baltimore, Maryland
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Solar ultraviolet-B radiation in urban environments: The case of Baltimore, Maryland

机译:城市环境中的太阳紫外线B辐射:以马里兰州巴尔的摩为例

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摘要

Ultraviolet-B radiation (UV-B, 280-320 nm) has important effects in urban areas, including those on human health. Broadband UV-B radiation is monitored in Baltimore, MD, as part of the Baltimore Ecosystem Study, a long-term ecological research program. We compare broadband UV-B irradiance in Baltimore with UV-B at two nearby locations: a more rural station 64 km southeast and a suburban station 42 kin southwest. The monitoring station in Baltimore is on the roof of a 33-m-tall building; there are no significant obstructions to sky view. The U.S. Department of Agriculture UV-B Monitoring and Research Program provided all sensors, which were calibrated at the National Oceanic and Atmospheric Administration Central UV Calibration Facility. UV-B irradiances at the three sites generally were similar. Over all conditions, Baltimore and the suburban site measured 3.4% less irradiance than the rural site. This difference is within the anticipated :+/-3% calibration uncertainty of the pyranometers. On 59 days with cloud-free conditions at all three sites, average differences in measured UV-B among the three sites were even smaller; Baltimore measured 1.2% less irradiance than the rural site. High aerosol optical thickness strongly reduced daily UV-B dose, whereas [SO2] had no influence. Surface O-3 increased with increasing UV-B dose when [NO2] exceeded 10 ppb.
机译:紫外线B辐射(紫外线B,280-320 nm)在城市地区具有重要影响,包括对人体健康的影响。作为长期生态研究计划“巴尔的摩生态系统研究”的一部分,马里兰州巴尔的摩对宽带UV-B辐射进行了监控。我们将巴尔的摩的宽带UV-B辐照度与附近两个位置的UV-B进行了比较:东南偏东64公里处是一个农村站点,西南偏北42公里处是一个郊区站点。巴尔的摩的监测站位于一幢33米高的建筑物的屋顶上。天空没有明显的障碍物。美国农业部UV-B监测和研究计划提供了所有传感器,这些传感器已在美国国家海洋与大气管理局中央UV校准设施处进行了校准。三个位置的UV-B辐照度通常相似。在所有条件下,巴尔的摩和郊区的辐射度比乡村地区低3.4%。该差异在总辐射表的预期:+/- 3%校准不确定性之内。在所有三个地点都没有云的情况下的59天中,三个地点之间测得的UV-B的平均差异甚至更小;巴尔的摩的辐射度比乡村地区低1.2%。较高的气溶胶光学厚度会大大降低每日的UV-B剂量,而[SO2]没有影响。当[NO2]超过10 ppb时,表面O-3随着UV-B剂量的增加而增加。

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