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Автор Colbeck, I.
Дата выпуска 1989
dc.description The ratio of variance, autocorrelation function and duration of exceedances above selected concentrations have been calculated for ozone measurements at two rural sites in north‐west England. Autocorrelation analysis of hourly ozone concentrations showed a persistent diurnal pattern during the summer months which was largely absent during the winter. Daily maximum hourly ozone concentrations, between 1981 and 1983, exceeded 80 ppb for an average duration of 1.5–2.5 days, each exceedance lasting, on average, between 2.8 and 4.0 hours.
Формат application.pdf
Издатель Taylor & Francis Group
Копирайт Copyright Taylor and Francis Group, LLC
Тема Ozone
Тема statistical analysis
Тема pollutant concentrations
Название Ozone levels at rural sites in North‐West England: a statistical analysis
Тип research-article
DOI 10.1080/00207238908710555
Electronic ISSN 1029-0400
Print ISSN 0020-7233
Журнал International Journal of Environmental Studies
Том 35
Первая страница 113
Последняя страница 119
Аффилиация Colbeck, I.; Institute of Aerosol Science, University of Essex
Выпуск 1-2
Библиографическая ссылка Volz, A. and Kley, D. 1988. “Evaluation of the Montsouris series of ozone measurements in the nineteenth century”. Nature, 332: 240–242.
Библиографическая ссылка Feister, U. and Warmbt, W. 1987. “Long‐term measurements of surface ozone in the German Democratic Republic”. J. Amos. Chem., 5: 1–21.
Библиографическая ссылка Gupta, G., Sabaratnam, S. and Dadson, R. 1987. “Prediction of ozone concentration from sulpur and nitrogen dioxides in ambient air: part 1 (regression analysis)”. Intern. J. Environmental Studies, 30: 45–55.
Библиографическая ссылка Bacci, P., Bolzern, P. and Fronza, G. 1981. “A stochastic predictor of air pollution based on short‐term meteorological forecasts”. J. Appl. Met., 20: 121–129.
Библиографическая ссылка McCollister, G. M. and Wilson, K. R. 1975. “Linear stochastic models for forecasting daily maxima and hourly concentrations of air pollutants”. Atmos. Environ., 6: 417–423.
Библиографическая ссылка Merz, P. H., Painter, L. J. and Ryason, P. R. 1972. “Aerometric data analysis: time series analysis and forecast and an atmospheric smog diagram”. Atmos. Environ., 6: 319–342.
Библиографическая ссылка Bolzern, P., Fronza, G., Ranca, E. and Uberhuber, C. 1982. “Statistical analysis of winter sulpur dioxide concentration data in Vienna”. Atmos. Environ., 16: 1899–1906.
Библиографическая ссылка Hirtzel, C. S. and Quon, J. E. 1981. “Statistical analysis of continuous ozone measurements”. Atmos. Environ., 15: 1025–1034.
Библиографическая ссылка Hirtzel, C. S. and Quon, J. E. 1979. “Statistical dependance of hourly carbon monoxide measurement”. J. Air Pollut. Control Assoc., 29: 161–163.
Библиографическая ссылка Zurita, E. and Castro, M. 1983. “A statistical analysis of mean hourly concentrations of surface ozone in Madrid (Spain)”. Atmos. Environ., 17: 2213–2220.
Библиографическая ссылка Colbeck, I. and Harrison, R. M. 1985. “The frequency and causes of elevated concentrations of ozone at ground level at rural sites in north‐west England”. Atmos. Environ., 19: 1577–1587.
Библиографическая ссылка Colbeck, I. and Harrison, R. M. 1985. “Dry deposition of ozone: some measurements of deposition velocity and of vertical profiles to 100 metres”. Atmos. Environ., 19: 1807–1811.
Библиографическая ссылка Rombout, P. J. A., Lioy, P. J. and Goldstein, B. D. 1986. “Rationale for an eight‐hour ozone standard”. J. Air. Pollut. Control Assoc., 36: 913–917.

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