The design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) is described and initial results obtained from HIRAC are presented. The ability of HIRAC to perform in-situ laser-induced fluorescence detection of OH and HO2 radicals with the Fluorescence Assay by Gas Expansion (FAGE) technique establishes it as internationally unique for a chamber of its size and pressure/temperature variable capabilities. In addition to the FAGE technique, HIRAC features a suite of analytical instrumentation, including: a multipass FTIR system; a conventional gas chromatography (GC) instrument and a GC instrument for formaldehyde detection; NO/NO2, CO, O-3, and H2O vapour analysers. Ray tracing simulations and NO2 actinometry have been utilize...
Simultaneous measurements of CH3O2 radical concentrations have been performed using two different me...
The calibration of field instruments used to measure concentrations of OH and HO2 worldwide has trad...
The purpose of this project is to reduce the uncertainty in several key gas-phase kinetic processes ...
The design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) is described and initi...
The design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) is described and initi...
The design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) is described and initi...
International audienceThe design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) ...
International audienceThe design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) ...
Abstract. The design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) is described...
The hydroxyl radical, OH, and the hydroperoxy radical, HO2 (known collectively as HOx), play a key r...
This thesis IS divided into two parts. Part I provides a detailed discussion of the design ami const...
The HO 2 radical was monitored simultaneously using two independent techniques in the Leeds HIRAC (H...
The HO 2 radical was monitored simultaneously using two independent techniques in the Leeds HIRAC (H...
The HO2 radical was monitored simultaneously using two independent techniques in the Leeds HIRAC atm...
The HO2 radical was monitored simultaneously using two independent techniques in the Leeds HIRAC atm...
Simultaneous measurements of CH3O2 radical concentrations have been performed using two different me...
The calibration of field instruments used to measure concentrations of OH and HO2 worldwide has trad...
The purpose of this project is to reduce the uncertainty in several key gas-phase kinetic processes ...
The design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) is described and initi...
The design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) is described and initi...
The design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) is described and initi...
International audienceThe design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) ...
International audienceThe design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) ...
Abstract. The design of a Highly Instrumented Reactor for Atmospheric Chemistry (HIRAC) is described...
The hydroxyl radical, OH, and the hydroperoxy radical, HO2 (known collectively as HOx), play a key r...
This thesis IS divided into two parts. Part I provides a detailed discussion of the design ami const...
The HO 2 radical was monitored simultaneously using two independent techniques in the Leeds HIRAC (H...
The HO 2 radical was monitored simultaneously using two independent techniques in the Leeds HIRAC (H...
The HO2 radical was monitored simultaneously using two independent techniques in the Leeds HIRAC atm...
The HO2 radical was monitored simultaneously using two independent techniques in the Leeds HIRAC atm...
Simultaneous measurements of CH3O2 radical concentrations have been performed using two different me...
The calibration of field instruments used to measure concentrations of OH and HO2 worldwide has trad...
The purpose of this project is to reduce the uncertainty in several key gas-phase kinetic processes ...