An instrument based on 20 m open-path incoherent broadband cavity-enhanced absorption spectroscopy (IBBCEAS) was established at the Jülich SAPHIR chamber in spring 2011. The setup was optimized for the detection of HONO and NO2 in the near-UV region 352–386 nm, utilizing a bright hot-spot Xe-arc lamp and a UV-enhanced charge-coupled device (CCD) detector. A 2σ detection limit of 26 pptv for HONO and 76 pptv for NO2 was achieved for an integration time of 1 min. Methacrolein (MACR) was also detected at mixing ratios below 5 ppbv with an estimated 2σ detection limit of 340 pptv for the same integration time. The IBBCEAS instrument's performance for HONO and NO2 detection was compared to that of extractive wet techniques, long-path absorption ...
Nitrous acid (HONO) has been quantitatively measured in-situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in-situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) is an important precursor of the hydroxyl radical (OH) in the lower troposphere....
An instrument based on 20 m open-path incoherent broadband cavity-enhanced absorption spectroscopy (...
Abstract. An instrument based on 20 m open-path incoherent broadband cavity-enhanced absorption spec...
The first application of incoherent broadband cavity-enhanced absorption spectroscopy (IBBCEAS) in t...
Nitrous acid (HONO) has been quantitatively measured in situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in situ by differential photolysis at 385 and 3...
Gaseous nitrous acid (HONO) is an important source of OH radicals in the troposphere. However, its s...
Gaseous nitrous acid (HONO) is an important source of OH radicals in the troposphere. However, its s...
Gaseous nitrous acid (HONO) is an important source of OH radicals in the troposphere. However, its ...
Nitrous acid (HONO) has been quantitatively measured in situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in-situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in-situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in-situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in-situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) is an important precursor of the hydroxyl radical (OH) in the lower troposphere....
An instrument based on 20 m open-path incoherent broadband cavity-enhanced absorption spectroscopy (...
Abstract. An instrument based on 20 m open-path incoherent broadband cavity-enhanced absorption spec...
The first application of incoherent broadband cavity-enhanced absorption spectroscopy (IBBCEAS) in t...
Nitrous acid (HONO) has been quantitatively measured in situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in situ by differential photolysis at 385 and 3...
Gaseous nitrous acid (HONO) is an important source of OH radicals in the troposphere. However, its s...
Gaseous nitrous acid (HONO) is an important source of OH radicals in the troposphere. However, its s...
Gaseous nitrous acid (HONO) is an important source of OH radicals in the troposphere. However, its ...
Nitrous acid (HONO) has been quantitatively measured in situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in-situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in-situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in-situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) has been quantitatively measured in-situ by differential photolysis at 385 and 3...
Nitrous acid (HONO) is an important precursor of the hydroxyl radical (OH) in the lower troposphere....