Laser-induced photofragmentation fluorescence has been investigated for the imaging of alkali compounds in premixed laminar methane–air flames. An ArF excimer laser, providing pulses of wavelength 193 nm, was used to photodissociate KCl, KOH, and NaCl molecules in the post-flame region and fluorescence from the excited atomic alkali fragment was detected. Fluorescence emission spectra showed distinct lines of the alkali atoms allowing for efficient background filtering. Temperature data from Rayleigh scattering measurements together with simulations of potassium chemistry presented in literature allowed for conclusions on the relative contributions of potassium species KOH and KCl to the detected signal. Experimental approaches for separate...
The release of potassium from single burning pulverized wheat straw char particles was quantitativel...
In this work, we present rigorous calibration and assessment of a surface ionization detector (SID) ...
Ammonia is regarded as a potential carbon-free alternative fuel. To have a better understanding of i...
Laser-induced photofragmentation fluorescence has been investigated for the imaging of alkali compou...
In biomass thermal conversion processes, the release of potassium in high temperature environments c...
Quantitative potassium species concentrations have been measured in alkali-seeded premixed methane-a...
Photodissociation of gas-phase compounds using a laser at suitably short ultraviolet wavelengths can...
Background: High amounts of alkali in the fuel, such as potassium and sodium in combination with hig...
Two advanced optical techniques for the detection of alkali vapors in high-temperature gases are int...
An understanding of potassium chemistry in energy conversion processes supports the development of c...
Alkali species have been under intensive research in thermal conversion applications due to their ab...
Spectrally resolved ultraviolet (UV) absorption cross-sections of gas-phase sodium chloride (NaCl), ...
Previous studies have shown that alkali salts influence combustion processes and soot formation, alt...
Gaseous potassium (K) species released from biomass during thermochemicalconversion pose challenges ...
Previous studies have shown that addition of potassium chloride (KCl) reduces soot concentration and...
The release of potassium from single burning pulverized wheat straw char particles was quantitativel...
In this work, we present rigorous calibration and assessment of a surface ionization detector (SID) ...
Ammonia is regarded as a potential carbon-free alternative fuel. To have a better understanding of i...
Laser-induced photofragmentation fluorescence has been investigated for the imaging of alkali compou...
In biomass thermal conversion processes, the release of potassium in high temperature environments c...
Quantitative potassium species concentrations have been measured in alkali-seeded premixed methane-a...
Photodissociation of gas-phase compounds using a laser at suitably short ultraviolet wavelengths can...
Background: High amounts of alkali in the fuel, such as potassium and sodium in combination with hig...
Two advanced optical techniques for the detection of alkali vapors in high-temperature gases are int...
An understanding of potassium chemistry in energy conversion processes supports the development of c...
Alkali species have been under intensive research in thermal conversion applications due to their ab...
Spectrally resolved ultraviolet (UV) absorption cross-sections of gas-phase sodium chloride (NaCl), ...
Previous studies have shown that alkali salts influence combustion processes and soot formation, alt...
Gaseous potassium (K) species released from biomass during thermochemicalconversion pose challenges ...
Previous studies have shown that addition of potassium chloride (KCl) reduces soot concentration and...
The release of potassium from single burning pulverized wheat straw char particles was quantitativel...
In this work, we present rigorous calibration and assessment of a surface ionization detector (SID) ...
Ammonia is regarded as a potential carbon-free alternative fuel. To have a better understanding of i...