Alkene emissions from the petrochemical industry contribute significantly to ozone production in the greater Houston area but are underestimated in emission inventories. It is not well-known which processes (e.g., fugitive emissions, chemical flare emissions, etc.) are responsible for these underreported emissions. We use fast time response and ground-based mobile measurements of numerous trace gas species to characterize alkene plumes from three identified chemical flares in the greater Houston area. We calculate the combustion efficiency and destruction and removal efficiency (DRE) values of these flares using the carbon balance method. All three flares were operating at DRE values lower than required by regulation. An examination of phot...
We reanalyze a data set of hydrocarbons in ambient air obtained by gas chromatography‐mass spectrome...
During the 2010 Comprehensive Flare Study a suite of analytical instrumentation was employed to moni...
A sensitive Mobile differential optical absorption spectroscopy (DOAS) system with real-time evaluat...
The impact of flare destruction removal efficiency (DRE) and Products of Incomplete Combustion (PICs...
textIndustrial flaring can result in atmospheric emissions that have significant impact on regional ...
Recent studies in the Houston–Galveston–Brazoria (HGB) area of Texas have suggested that industrial ...
Includes bibliographical references (p. 107-118).The Greater Houston Area is currently an EPA design...
Mobile optical remote sensing techniques offer promising possibilities to quantify and geographicall...
Recent studies performed in the Houston–Galveston–Brazoria (HGB) area indicate that some industrial ...
textGround level ozone is one of the most ubiquitous air pollutants in urban areas, and is generated...
Petrochemical industrial facilities can emit large amounts of highly reactive hydrocarbons and NOx t...
High concentrations of ozone in the Houston/Galveston area are associated with industrial plumes of ...
Satellite observations of formaldehyde (HCHO) columns provide top-down constraints on emissions of h...
We evaluate the rates of secondary production and primary emission of formaldehyde (CH2O) from petro...
Flaring to dispose of natural gas has increased in the United States and is typically assumed to be ...
We reanalyze a data set of hydrocarbons in ambient air obtained by gas chromatography‐mass spectrome...
During the 2010 Comprehensive Flare Study a suite of analytical instrumentation was employed to moni...
A sensitive Mobile differential optical absorption spectroscopy (DOAS) system with real-time evaluat...
The impact of flare destruction removal efficiency (DRE) and Products of Incomplete Combustion (PICs...
textIndustrial flaring can result in atmospheric emissions that have significant impact on regional ...
Recent studies in the Houston–Galveston–Brazoria (HGB) area of Texas have suggested that industrial ...
Includes bibliographical references (p. 107-118).The Greater Houston Area is currently an EPA design...
Mobile optical remote sensing techniques offer promising possibilities to quantify and geographicall...
Recent studies performed in the Houston–Galveston–Brazoria (HGB) area indicate that some industrial ...
textGround level ozone is one of the most ubiquitous air pollutants in urban areas, and is generated...
Petrochemical industrial facilities can emit large amounts of highly reactive hydrocarbons and NOx t...
High concentrations of ozone in the Houston/Galveston area are associated with industrial plumes of ...
Satellite observations of formaldehyde (HCHO) columns provide top-down constraints on emissions of h...
We evaluate the rates of secondary production and primary emission of formaldehyde (CH2O) from petro...
Flaring to dispose of natural gas has increased in the United States and is typically assumed to be ...
We reanalyze a data set of hydrocarbons in ambient air obtained by gas chromatography‐mass spectrome...
During the 2010 Comprehensive Flare Study a suite of analytical instrumentation was employed to moni...
A sensitive Mobile differential optical absorption spectroscopy (DOAS) system with real-time evaluat...