Mobile differential optical absorption spectroscopy (mobile DOAS) is an optical remote sensing method that can rapidly measure trace gas emission flux from air pollution sources (such as power plants, industrial areas, and cities) in real time. Generally, mobile DOAS is influenced by wind, drive velocity, and other factors, especially in the usage of wind field when the emission flux in a mobile DOAS system is observed. This paper presents a detailed error analysis and NOx emission with mobile DOAS system from a power plant in Shijiazhuang city, China. Comparison of the SO2 emission flux from mobile DOAS observations with continuous emission monitoring system (CEMS) under different drive speeds and wind fields revealed that the optimal driv...
We here present the results from mobile measurements using two ground-based zenith viewing Differen...
Monitoring of gas emissions from natural and anthropogenic sources is important due to the negative ...
During the CAREBEIJING campaign in 2006, imaging differential optical absorption spectroscopy (I-DOA...
Mobile differential optical absorption spectroscopy (mobile DOAS) is an optical remote sensing metho...
Mobile differential optical absorption spectroscopy (mobile DOAS) has become an important tool for t...
In March 2012 the emissions of NO2 and SO2 from a power station located on the east side of Montevid...
Mobile passive differential optical absorption spectroscopy measurements of SO2 and NO2 were perform...
Optical Remote Sensing Techniques offer the opportunity to, in real-time, obtain line averaged measu...
In this study, we report on airborne Differential Optical Absorption Spectroscopy (DOAS) observation...
using the Solar Occultation Flux (SOF) method and mobile differential optical absorption spectroscop...
Standard methods like in-situ measurements can hardly register NOx (= NO + NO2) emissions from aircr...
Ground-based MAX-DOAS measurements have been used to retrieve column densities of atmospheric absorb...
We here present the results from mobile measurements using two ground-based zenith viewing Different...
We here present the results from mobile measurements using two ground-based zenith viewing Different...
In May 2004 a field-campaign was conducted at a power plant in Spain, aiming at validating the use o...
We here present the results from mobile measurements using two ground-based zenith viewing Differen...
Monitoring of gas emissions from natural and anthropogenic sources is important due to the negative ...
During the CAREBEIJING campaign in 2006, imaging differential optical absorption spectroscopy (I-DOA...
Mobile differential optical absorption spectroscopy (mobile DOAS) is an optical remote sensing metho...
Mobile differential optical absorption spectroscopy (mobile DOAS) has become an important tool for t...
In March 2012 the emissions of NO2 and SO2 from a power station located on the east side of Montevid...
Mobile passive differential optical absorption spectroscopy measurements of SO2 and NO2 were perform...
Optical Remote Sensing Techniques offer the opportunity to, in real-time, obtain line averaged measu...
In this study, we report on airborne Differential Optical Absorption Spectroscopy (DOAS) observation...
using the Solar Occultation Flux (SOF) method and mobile differential optical absorption spectroscop...
Standard methods like in-situ measurements can hardly register NOx (= NO + NO2) emissions from aircr...
Ground-based MAX-DOAS measurements have been used to retrieve column densities of atmospheric absorb...
We here present the results from mobile measurements using two ground-based zenith viewing Different...
We here present the results from mobile measurements using two ground-based zenith viewing Different...
In May 2004 a field-campaign was conducted at a power plant in Spain, aiming at validating the use o...
We here present the results from mobile measurements using two ground-based zenith viewing Differen...
Monitoring of gas emissions from natural and anthropogenic sources is important due to the negative ...
During the CAREBEIJING campaign in 2006, imaging differential optical absorption spectroscopy (I-DOA...