Potassium (K) is an important element related to ash and fine-particle formation in biomass combustion processes. In situ measurements of gaseous atomic potassium, K(g), using robust optical absorption techniques can provide valuable insight into the K chemistry. However, for typical parts per billion K(g) concentrations in biomass flames and reactor gases, the product of atomic line strength and absorption path length can give rise to such high absorbance that the sample becomes opaque around the transition line center. We present a tunable diode laser atomic absorption spectroscopy (TDLAAS) methodology that enables accurate, calibration-free species quantification even under optically thick conditions, given that Beer−Lambert’s law is val...
An understanding of potassium chemistry in energy conversion processes supports the development of c...
Tunable diode laser absorption spectroscopy (TDLAS) was used to measure several important process pa...
Increasing concern over environment and new energy policies are driving the thermal heat and power i...
Potassium (K) is an important element related to ash and fine-particle formation in biomass combusti...
Potassium (K) is one of the main and most hazardous trace species released to the gas-phase during t...
Potassium (K) is one of the main and most hazardous trace species released to the gas-phase during t...
Potassium (K) is the main ash-forming element released from biomass during thermochemical conversion...
Solid fuels, such as coal and biomass, comprise a large portion of the current annual world energy s...
Gaseous potassium (K) species play an important role in biomass combustion processes, and imaging te...
Existing tunable diode laser absorption spectroscopy (TDLAS) sensors for potassium (K) and for water...
Gaseous potassium (K) species released from biomass during thermochemicalconversion pose challenges ...
compact optical setup for quantitative and spatially resolved measurement of atomic alkali concentra...
Photofragmentation tunable diode laser absorption spectroscopy (PF-TDLAS) was used to simultaneously...
Tunable diode laser absorption spectroscopy (TDLAS) is employed for simultaneous detection of gas te...
An understanding of potassium chemistry in energy conversion processes supports the development of c...
Tunable diode laser absorption spectroscopy (TDLAS) was used to measure several important process pa...
Increasing concern over environment and new energy policies are driving the thermal heat and power i...
Potassium (K) is an important element related to ash and fine-particle formation in biomass combusti...
Potassium (K) is one of the main and most hazardous trace species released to the gas-phase during t...
Potassium (K) is one of the main and most hazardous trace species released to the gas-phase during t...
Potassium (K) is the main ash-forming element released from biomass during thermochemical conversion...
Solid fuels, such as coal and biomass, comprise a large portion of the current annual world energy s...
Gaseous potassium (K) species play an important role in biomass combustion processes, and imaging te...
Existing tunable diode laser absorption spectroscopy (TDLAS) sensors for potassium (K) and for water...
Gaseous potassium (K) species released from biomass during thermochemicalconversion pose challenges ...
compact optical setup for quantitative and spatially resolved measurement of atomic alkali concentra...
Photofragmentation tunable diode laser absorption spectroscopy (PF-TDLAS) was used to simultaneously...
Tunable diode laser absorption spectroscopy (TDLAS) is employed for simultaneous detection of gas te...
An understanding of potassium chemistry in energy conversion processes supports the development of c...
Tunable diode laser absorption spectroscopy (TDLAS) was used to measure several important process pa...
Increasing concern over environment and new energy policies are driving the thermal heat and power i...