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首页> 外文期刊>International Journal of Environmental Research and Public Health >Observational Studies and a Statistical Early Warning of Surface Ozone Pollution in Tangshan, the Largest Heavy Industry City of North China
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Observational Studies and a Statistical Early Warning of Surface Ozone Pollution in Tangshan, the Largest Heavy Industry City of North China

机译:华北最大重工业城市唐山的地表臭氧污染观测研究与统计预警

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摘要

Continuous measurements of surface ozone (O3) and nitrogen oxides (NOX) at an urban site (39°37′N, 118°09′E) in Tangshan, the largest heavy industry city of North China during summertime from 2008 to 2011 are presented. The pollution of O3 was serious in the city. The daily maximum 1 h means (O3_1-hr max) reached 157 ± 55, 161 ± 54, 120 ± 50, and 178 ± 75 μg/m3 corresponding to an excess over the standard rates of 21%, 27%, 10%, and 40% in 2008–2011, respectively. The total oxidant level (OX = O3 + NO2) was high, with seasonal average concentrations up to 100 μg/m3 in summer. The level of OX at a given location was made up of NOX-independent and NOX-dependent contributions. The independent part can be considered as a regional contribution and was about 100 μg/m3 in Tangshan. Statistical early warning analysis revealed that the O3 levels would exceed the standard rate by 50% on the day following a day when the daily average ozone concentration (O3_mean) exceeded 87 μg/m3 and the daily maximum temperature (T_max) exceeded 29 °C. The exceed-standard rate would reach 80% when O3_mean and T_max exceeded 113 μg/m3 and 31 °C. Similarly, the exceed-standard rate would reach 100% when O3_mean and T_max exceeded 127 μg/m3 and 33 °C, respectively.
机译:本文介绍了从2008年至2011年夏季在华北最大的重工业城市唐山市区(39°37′N,118°09′E)的地面臭氧(O3)和氮氧化物(NOX)的连续测量结果。该市O3的污染严重。每天最大1小时平均值(最大O3_1小时)达到157±55、161±54,120±50和178±75μg/ m3,对应于标准比例21%,27%,10%,和2008-2011年的40%。总氧化剂水平(OX = O3 + NO2)高,夏季的季节性平均浓度高达100μg/ m3。给定位置的OX水平由非NOX依赖性和NOX依赖性组成。独立部分可以被认为是区域性贡献,在唐山约为100μg/ m3。统计预警分析显示,当日平均臭氧浓度(O3_mean)超过87μg/ m3,且日最高温度(T_max)超过29°C的第二天,O3含量将超出标准速率50%。当O3_mean和T_max超过113μg/ m3和31°C时,超标率将达到80%。同样,当O3_mean和T_max分别超过127μg/ m3和33°C时,超标率将达到100%。

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