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Multi-pollutant surface objective analyses and mapping of air quality health index over North America

机译:北美地区多污染物表面客观分析和空气质量健康指数图

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摘要

Air quality, like weather, can affect everyone, but responses differ depending on the sensitivity and health condition of a given individual. To help protect exposed populations, many countries have put in place real-time air quality nowcasting and forecasting capabilities. We present in this paper an optimal combination of air quality measurements and model outputs and show that it leads to significant improvements in the spatial representativeness of air quality. The product is referred to as multi-pollutant surface objective analyses (MPSOAs). Moreover, based on MPSOA, a geographical mapping of the Canadian Air Quality Health Index (AQHI) is also presented which provides users (policy makers, public, air quality forecasters, and epidemiologists) with a more accurate picture of the health risk anytime and anywhere in Canada and the USA. Since pollutants can also behave as passive atmospheric tracers, they provide information about transport and dispersion and, hence, reveal synoptic and regional meteorological phenomena. MPSOA could also be used to build air pollution climatology, compute local and national trends in air quality, and detect systematic biases in numerical air quality (AQ) models. Finally, initializing AQ models at regular time intervals with MPSOA can produce more accurate air quality forecasts. It is for these reasons that the Canadian Meteorological Centre (CMC) in collaboration with the Air Quality Research Division (AQRD) of Environment Canada has recently implemented MPSOA in their daily operations.Electronic supplementary materialThe online version of this article (doi:10.1007/s11869-015-0385-9) contains supplementary material, which is available to authorized users.
机译:空气质量(如天气)可能会影响所有人,但响应方式会因特定个体的敏感性和健康状况而异。为了帮助保护裸露的人群,许多国家/地区已经建立了实时空气质量临近预报和预报功能。我们在本文中介绍了空气质量测量和模型输出的最佳组合,并表明它可以显着改善空气质量的空间代表性。该产品称为多污染物表面客观分析(MPSOA)。此外,基于MPSOA,还提供了加拿大空气质量健康指数(AQHI)的地理地图,可为用户(政策制定者,公众,空气质量预报员和流行病学家)随时随地提供更准确的健康风险图景在加拿大和美国。由于污染物还可以充当被动的大气示踪剂,因此它们提供了有关运输和扩散的信息,因此揭示了天气和区域气象现象。 MPSOA还可以用于建立空气污染气候学,计算空气质量的地方和国家趋势以及检测数字空气质量(AQ)模型中的系统偏差。最后,使用MPSOA在固定的时间间隔初始化AQ模型可以产生更准确的空气质量预测。出于这些原因,加拿大气象中心(CMC)与加拿大环境部空气质量研究部(AQRD)合作,最近在其日常操作中实施了MPSOA。电子补充材料本文的在线版本(doi:10.1007 / s11869) -015-0385-9)包含补充材料,授权用户可以使用。

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