Asset Details
MbrlCatalogueTitleDetail
Do you wish to reserve the book?
Validation of MOPITT carbon monoxide using ground-based Fourier transform infrared spectrometer data from NDACC
by
Griffith, David W. T.
, Jones, Nicholas B.
, Hase, Frank
, Mahieu, Emmanuel
, Paton-Walsh, Clare
, Conway, Stephanie
, Edwards, David P.
, Smale, Dan
, Robinson, John
, Sussmann, Ralf
, Hannigan, James W.
, Strong, Kimberly
, Worden, Helen M.
, Gille, John
, Buchholz, Rebecca R.
, Blumenstock, Thomas
, Deeter, Merritt N.
, Langerock, Bavo
in
Atmospheric chemistry
/ Atmospheric composition
/ Bias
/ Carbon
/ Carbon monoxide
/ Carbon monoxide measurements
/ Chemical properties
/ Correlation
/ Detection
/ Drift
/ Earth sciences & physical geography
/ Environmental aspects
/ Equivalence
/ Errors
/ Fourier analysis
/ Fourier transform infrared spectroscopy
/ Fourier transforms
/ FTIR spectrometers
/ Ground stations
/ Indium antimonide
/ Infrared analysis
/ Infrared spectrometers
/ Instruments
/ Latitude
/ Mercury cadmium telluride
/ Methods
/ NDACC network
/ Near infrared radiation
/ Physical, chemical, mathematical & earth Sciences
/ Physique, chimie, mathématiques & sciences de la terre
/ Pixels
/ Proximity
/ Remote sensing
/ Retrieval
/ Satellite instruments
/ Satellites
/ Sciences de la terre & géographie physique
/ Sensitivity
/ Spectrometers
/ Standard deviation
/ Troposphere
/ validation
/ VOCs
/ Volatile organic compounds
/ Water pollution
2017
Hey, we have placed the reservation for you!
By the way, why not check out events that you can attend while you pick your title.
You are currently in the queue to collect this book. You will be notified once it is your turn to collect the book.
Oops! Something went wrong.
Looks like we were not able to place the reservation. Kindly try again later.
Are you sure you want to remove the book from the shelf?
Validation of MOPITT carbon monoxide using ground-based Fourier transform infrared spectrometer data from NDACC
by
Griffith, David W. T.
, Jones, Nicholas B.
, Hase, Frank
, Mahieu, Emmanuel
, Paton-Walsh, Clare
, Conway, Stephanie
, Edwards, David P.
, Smale, Dan
, Robinson, John
, Sussmann, Ralf
, Hannigan, James W.
, Strong, Kimberly
, Worden, Helen M.
, Gille, John
, Buchholz, Rebecca R.
, Blumenstock, Thomas
, Deeter, Merritt N.
, Langerock, Bavo
in
Atmospheric chemistry
/ Atmospheric composition
/ Bias
/ Carbon
/ Carbon monoxide
/ Carbon monoxide measurements
/ Chemical properties
/ Correlation
/ Detection
/ Drift
/ Earth sciences & physical geography
/ Environmental aspects
/ Equivalence
/ Errors
/ Fourier analysis
/ Fourier transform infrared spectroscopy
/ Fourier transforms
/ FTIR spectrometers
/ Ground stations
/ Indium antimonide
/ Infrared analysis
/ Infrared spectrometers
/ Instruments
/ Latitude
/ Mercury cadmium telluride
/ Methods
/ NDACC network
/ Near infrared radiation
/ Physical, chemical, mathematical & earth Sciences
/ Physique, chimie, mathématiques & sciences de la terre
/ Pixels
/ Proximity
/ Remote sensing
/ Retrieval
/ Satellite instruments
/ Satellites
/ Sciences de la terre & géographie physique
/ Sensitivity
/ Spectrometers
/ Standard deviation
/ Troposphere
/ validation
/ VOCs
/ Volatile organic compounds
/ Water pollution
2017
Oops! Something went wrong.
While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Validation of MOPITT carbon monoxide using ground-based Fourier transform infrared spectrometer data from NDACC
by
Griffith, David W. T.
, Jones, Nicholas B.
, Hase, Frank
, Mahieu, Emmanuel
, Paton-Walsh, Clare
, Conway, Stephanie
, Edwards, David P.
, Smale, Dan
, Robinson, John
, Sussmann, Ralf
, Hannigan, James W.
, Strong, Kimberly
, Worden, Helen M.
, Gille, John
, Buchholz, Rebecca R.
, Blumenstock, Thomas
, Deeter, Merritt N.
, Langerock, Bavo
in
Atmospheric chemistry
/ Atmospheric composition
/ Bias
/ Carbon
/ Carbon monoxide
/ Carbon monoxide measurements
/ Chemical properties
/ Correlation
/ Detection
/ Drift
/ Earth sciences & physical geography
/ Environmental aspects
/ Equivalence
/ Errors
/ Fourier analysis
/ Fourier transform infrared spectroscopy
/ Fourier transforms
/ FTIR spectrometers
/ Ground stations
/ Indium antimonide
/ Infrared analysis
/ Infrared spectrometers
/ Instruments
/ Latitude
/ Mercury cadmium telluride
/ Methods
/ NDACC network
/ Near infrared radiation
/ Physical, chemical, mathematical & earth Sciences
/ Physique, chimie, mathématiques & sciences de la terre
/ Pixels
/ Proximity
/ Remote sensing
/ Retrieval
/ Satellite instruments
/ Satellites
/ Sciences de la terre & géographie physique
/ Sensitivity
/ Spectrometers
/ Standard deviation
/ Troposphere
/ validation
/ VOCs
/ Volatile organic compounds
/ Water pollution
2017
Please be aware that the book you have requested cannot be checked out. If you would like to checkout this book, you can reserve another copy
We have requested the book for you!
Your request is successful and it will be processed during the Library working hours. Please check the status of your request in My Requests.
Oops! Something went wrong.
Looks like we were not able to place your request. Kindly try again later.
Validation of MOPITT carbon monoxide using ground-based Fourier transform infrared spectrometer data from NDACC
Journal Article
Validation of MOPITT carbon monoxide using ground-based Fourier transform infrared spectrometer data from NDACC
2017
Request Book From Autostore
and Choose the Collection Method
Overview
The Measurements of Pollution in the Troposphere (MOPITT) satellite instrument provides the longest continuous dataset of carbon monoxide (CO) from space. We perform the first validation of MOPITT version 6 retrievals using total column CO measurements from ground-based remote-sensing Fourier transform infrared spectrometers (FTSs). Validation uses data recorded at 14 stations, that span a wide range of latitudes (80° N to 78° S), in the Network for the Detection of Atmospheric Composition Change (NDACC). MOPITT measurements are spatially co-located with each station, and different vertical sensitivities between instruments are accounted for by using MOPITT averaging kernels (AKs). All three MOPITT retrieval types are analyzed: thermal infrared (TIR-only), joint thermal and near infrared (TIR–NIR), and near infrared (NIR-only). Generally, MOPITT measurements overestimate CO relative to FTS measurements, but the bias is typically less than 10 %. Mean bias is 2.4 % for TIR-only, 5.1 % for TIR–NIR, and 6.5 % for NIR-only. The TIR–NIR and NIR-only products consistently produce a larger bias and lower correlation than the TIR-only. Validation performance of MOPITT for TIR-only and TIR–NIR retrievals over land or water scenes is equivalent. The four MOPITT detector element pixels are validated separately to account for their different uncertainty characteristics. Pixel 1 produces the highest standard deviation and lowest correlation for all three MOPITT products. However, for TIR-only and TIR–NIR, the error-weighted average that includes all four pixels often provides the best correlation, indicating compensating pixel biases and well-captured error characteristics. We find that MOPITT bias does not depend on latitude but rather is influenced by the proximity to rapidly changing atmospheric CO. MOPITT bias drift has been bound geographically to within ±0.5 % yr−1 or lower at almost all locations.
Publisher
Copernicus GmbH,Copernicus,Copernicus Publications
Subject
/ Bias
/ Carbon
/ Carbon monoxide measurements
/ Drift
/ Earth sciences & physical geography
/ Errors
/ Fourier transform infrared spectroscopy
/ Latitude
/ Methods
/ Physical, chemical, mathematical & earth Sciences
/ Physique, chimie, mathématiques & sciences de la terre
/ Pixels
/ Sciences de la terre & géographie physique
/ VOCs
This website uses cookies to ensure you get the best experience on our website.