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DOI | 10.1016/j.atmosenv.2019.117167 |
Developing an odour emission factor for an oil refinery plant using reverse dispersion modeling | |
Motalebi Damuchali A.; Guo H. | |
发表日期 | 2020 |
ISSN | 1352-2310 |
卷号 | 222 |
英文摘要 | Odour emission factors (OEFs) for oil refineries are useful data for estimating odour emission rates (OERs) of different odour emission sources at oil refineries and developing odour emission inventories with lower cost and time than direct sampling and measurement method. The conventional direct source measurement followed by olfactometry sometimes faces challenges due to access issues and the presence of fugitive emissions for which determining emission rates is difficult. To address these issues, applying reverse odour dispersion modeling could be an appropriate alternative method in estimating OERs of oil refineries and developing OEFs; however, very limited research has been conducted and the level of their accuracy and reliability has not been well investigated. This study obtained OEFs for different sources of a conventional oil refinery plant in Canada using odour reverse dispersion modeling technique with AERMOD, a US EPA regulatory dispersion model. The results showed that the main odour sources at the oil refinery are tall stacks with the share of 99% of odour emissions while passive and fugitive emissions contribute to 1% of the odour emissions of the refinery. Results also demonstrated that the reverse odour dispersion modeling by AERMOD is an appropriate method of estimating OERs as the results of this study are within the ranges reported by previous similar research. Using reverse modeling, a total OER of 1,527,471ou/s was found for the entire oil refinery leading to an OEF of 910,162 ou/barrel which can be used by conventional oil refineries to estimate their odour emission inventories according to their capacity. © 2019 Elsevier Ltd |
关键词 | Odour emission factorOdour emission rateOil refineriesReverse modeling |
语种 | 英语 |
scopus关键词 | Dispersions; Particulate emissions; Dispersion modeling; Fugitive emissions; Measurement methods; Odour emission rates; Odour emissions; Oil refineries; Oil refinery plants; Reverse Modeling; Petroleum refineries; emission; emission inventory; industrial emission; modeling; odor; oil industry; pollutant source; article; Canada; odor; oil industry; reliability; Canada |
来源期刊 | ATMOSPHERIC ENVIRONMENT
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文献类型 | 期刊论文 |
条目标识符 | http://gcip.llas.ac.cn/handle/2XKMVOVA/249449 |
作者单位 | Civil, Geological, and Environmental Engineering, University of Saskatchewan, Canada; Mechanical Engineering, University of Saskatchewan, Canada |
推荐引用方式 GB/T 7714 | Motalebi Damuchali A.,Guo H.. Developing an odour emission factor for an oil refinery plant using reverse dispersion modeling[J],2020,222. |
APA | Motalebi Damuchali A.,&Guo H..(2020).Developing an odour emission factor for an oil refinery plant using reverse dispersion modeling.ATMOSPHERIC ENVIRONMENT,222. |
MLA | Motalebi Damuchali A.,et al."Developing an odour emission factor for an oil refinery plant using reverse dispersion modeling".ATMOSPHERIC ENVIRONMENT 222(2020). |
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