2006
DOI: 10.1016/j.aca.2006.03.057
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Sampling and analysis of volatile organics emitted from wastewater treatment plant and drain system of an industrial science park

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Cited by 75 publications
(39 citation statements)
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“…Given its high polarity and easy dissolution in water, acetone may enter a sewer system, with rains causing higher concentrations during the summer/wet period than those during the winter/dry period. Wu et al (2006) observed similar results, in which acetone was easily found in the sewer system in Shin-Chu Industrial Park in northern Taiwan owing to its high volatility.…”
Section: Seasonal Variations Of Hydrocarbon Groupssupporting
confidence: 62%
“…Given its high polarity and easy dissolution in water, acetone may enter a sewer system, with rains causing higher concentrations during the summer/wet period than those during the winter/dry period. Wu et al (2006) observed similar results, in which acetone was easily found in the sewer system in Shin-Chu Industrial Park in northern Taiwan owing to its high volatility.…”
Section: Seasonal Variations Of Hydrocarbon Groupssupporting
confidence: 62%
“…In the city of Izmir, Tukey, DMS and H 2 S as well as 2-propane thiol and 2-butane thiol were the major malodor compounds in the emitted and ambient air in polluted creeks (Muezzinoglu 2003). Wu et al (2006) also found that DMS was one of the major VOSCs downstream of a river connected to a wastewater treatment plant in Taiwan.…”
Section: Introductionmentioning
confidence: 89%
“…The water quality parameters for Shijing River and Liuxi River are shown in ) in a new landfill, whereas they were 1.22 ppbv (3.78 μg m ), respectively, in a wastewater treatment of Taiwan (Wu et al 2006). Finally, the concentrations of DMS ranged from 11.8−59.2 mg m −3 in the air at the deltas of the polluted creeks in the city of Izmir (Muezzinoglu 2003).…”
Section: Variability Of Voscs Emissionsmentioning
confidence: 99%
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“…However, the common used wastewater treatment plant (WWTP) can not achieve the complete removal of pollutants, thus appearing the point sources of water pollution (Pham and Proulx, 1997). Also, WWTPs can become the atmospheric sources of some organic pollutants, such as volatile organic compounds (Simonich et al, 2000;Escalasa et al, 2003;Wu et al, 2006), perfluorooctanoic acid (Webster et al, 2010), polyfluoroalkyl compounds (Ahrens et al, 2011) and PAHs (Byrns, 2001;Seth et al, 2008). Recently, intense attention has been paid on PAHs in the atmosphere (Simcik et al, 1999;Park et al, 2002;Omar et al, 2006;Zhang et al, 2011a), as the most carcinogenic, mutagenic and toxic contaminants (Deng et al, 2006).…”
Section: Introductionmentioning
confidence: 99%