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A novel approach for VOC source apportionment combining characteristic factor and pattern recognition technology in a Chinese industrial area

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摘要 Volatile organic compound(VOC) emission control and source apportionment in small-scale industrial areas have become key topics of air pollution control in China. This study proposed a novel characteristic factor and pattern recognition(CF-PR) model for VOC source apportionment based on the similarity of characteristic factors between sources and receptors.A simulation was carried out in a typical industrial area with the CF-PR model involving simulated receptor samples. Refined and accurate source profiles were constructed through in situ sampling and analysis, covering rubber, chemicals, coating, electronics, plastics, printing, incubation and medical treatment industries. Characteristic factors of n-undecane,styrene, o-xylene and propane were identified. The source apportionment simulation results indicated that the predicted contribution rate was basically consistent with the real contribution rate. Compared to traditional receptor models, this method achieves notable advantages in terms of refinement and timeliness at similar accuracy, which is more suitable for VOC source identification and apportionment in small-scale industrial areas.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2022年第11期25-37,共13页 环境科学学报(英文版)
基金 supported by Key Research and Development Program of Zhejiang Province (2021C03178, 2021C03165)。
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