Zobrazeno 1 - 10
of 109
pro vyhledávání: '"David F. Pollard"'
Autor:
Yohanna Villalobos, Peter J. Rayner, Jeremy D. Silver, Steven Thomas, Vanessa Haverd, Jürgen Knauer, Zoë M. Loh, Nicholas M. Deutscher, David W. T. Griffith, David F. Pollard
Publikováno v:
Atmospheric Chemistry and Physics. 22:8897-8934
In this study, we employ a regional inverse modelling approach to estimate monthly carbon fluxes over the Australian continent for 2015–2019 using the assimilation of the total column-averaged mole fractions of carbon dioxide from the Orbiting Carb
Autor:
Thomas E. Taylor, Christopher W. O'Dell, David Crisp, Akhiko Kuze, Hannakaisa Lindqvist, Paul O. Wennberg, Abhishek Chatterjee, Michael Gunson, Annmarie Eldering, Brendan Fisher, Matthäus Kiel, Robert R. Nelson, Aronne Merrelli, Greg Osterman, Frédéric Chevallier, Paul I. Palmer, Liang Feng, Nicholas M. Deutscher, Manvendra K. Dubey, Dietrich G. Feist, Omaira E. García, David W. T. Griffith, Frank Hase, Laura T. Iraci, Rigel Kivi, Cheng Liu, Martine De Mazière, Isamu Morino, Justus Notholt, Young-Suk Oh, Hirofumi Ohyama, David F. Pollard, Markus Rettinger, Matthias Schneider, Coleen M. Roehl, Mahesh Kumar Sha, Kei Shiomi, Kimberly Strong, Ralf Sussmann, Yao Té, Voltaire A. Velazco, Mihalis Vrekoussis, Thorsten Warneke, Debra Wunch
Publikováno v:
Earth System Science Data. 14:325-360
The Thermal And Near infrared Sensor for carbon Observation – Fourier Transform Spectrometer (TANSO-FTS) on the Japanese Greenhouse gases Observing SATellite (GOSAT) has been returning data since April 2009. The version 9 (v9) Atmospheric Carbon Ob
Autor:
Jeremy D. Silver, Zoe Loh, David F. Pollard, Jürgen Knauer, Nicholas M. Deutscher, David W. T. Griffith, Yohanna Villalobos, Steven Thomas, Vanessa Haverd, Peter Rayner
Publikováno v:
Atmospheric Chemistry and Physics. 21:17453-17494
In this study, we present the assimilation of data from the Orbiting Carbon Observatory-2 (OCO-2) (land nadir and glint data, version 9) to estimate the Australian carbon surface fluxes for the year 2015. To perform this estimation, we used both a re
Autor:
Nicholas R. Nalli, Changyi Tan, Juying Warner, Murty Divakarla, Antonia Gambacorta, Michael Wilson, Tong Zhu, Tianyuan Wang, Zigang Wei, Ken Pryor, Satya Kalluri, Lihang Zhou, Colm Sweeney, Bianca C. Baier, Kathryn McKain, Debra Wunch, Nicholas M. Deutscher, Frank Hase, Laura T. Iraci, Rigel Kivi, Isamu Morino, Justus Notholt, Hirofumi Ohyama, David F. Pollard, Yao Té, Voltaire A. Velazco, Thorsten Warneke, Ralf Sussmann, Markus Rettinger
Publikováno v:
Remote Sensing, Vol 12, Iss 19, p 3245 (2020)
This paper provides an overview of the validation of National Oceanic and Atmospheric Administration (NOAA) operational retrievals of atmospheric carbon trace gas profiles, specifically carbon monoxide (CO), methane (CH4) and carbon dioxide (CO2), fr
Externí odkaz:
https://doaj.org/article/86b364e15a3e43c390867e206d3158bf
Autor:
Haruki Oshio, Yukio Yoshida, Tsuneo Matsunaga, Nicholas M. Deutscher, Manvendra Dubey, David W. T. Griffith, Frank Hase, Laura T. Iraci, Rigel Kivi, Cheng Liu, Isamu Morino, Justus Notholt, Young-Suk Oh, Hirofumi Ohyama, Christof Petri, David F. Pollard, Coleen Roehl, Kei Shiomi, Ralf Sussmann, Yao Té, Voltaire A. Velazco, Thorsten Warneke, Debra Wunch
Publikováno v:
Remote Sensing, Vol 12, Iss 19, p 3155 (2020)
The proxy method, using the ratio of total column CH4 to CO2 to reduce the effects of common biases, has been used to retrieve column-averaged dry-air mole fraction of CH4 from satellite data. The present study characterizes the remaining scattering
Externí odkaz:
https://doaj.org/article/add5536135e84dfc873f9097d6ee3987
Autor:
Coleen M. Roehl, Matthieu Dogniaux, Isamu Morino, Vincent Cassé, Thorsten Warneke, Rigel Kivi, Frank Hase, Dietrich G. Feist, Voltaire A. Velazco, Virginie Capelle, David F. Pollard, Martine De Mazière, Kimberly Strong, Yao Té, Justus Notholt, R. Armante, Omaira García, Cyril Crevoisier, Nicholas M. Deutscher, Thibault Delahaye, Kei Shiomi, Laura T. Iraci, David W. T. Griffith
Publikováno v:
Atmospheric Measurement Techniques. 14:4689-4706
A better understanding of greenhouse gas surface sources and sinks is required in order to address the global challenge of climate change. Space-borne remote estimations of greenhouse gas atmospheric concentrations can offer the global coverage that
Autor:
Brendan Byrne, David F. Baker, Sourish Basu, Michael Bertolacci, Kevin W. Bowman, Dustin Carroll, Abhishek Chatterjee, Frédéric Chevallier, Philippe Ciais, Noel Cressie, David Crisp, Sean Crowell, Feng Deng, Zhu Deng, Nicholas M. Deutscher, Manvendra Dubey, Sha Feng, Omaira García, David W. T. Griffith, Benedikt Herkommer, Lei Hu, Andrew R. Jacobson, Rajesh Janardanan, Sujong Jeong, Matthew S. Johnson, Dylan B. A. Jones, Rigel Kivi, Junjie Liu, Zhiqiang Liu, Shamil Maksyutov, John B. Miller, Scot M. Miller, Isamu Morino, Justus Notholt, Tomohiro Oda, Christopher W. O’Dell, Young-Suk Oh, Hirofumi Ohyama, Prabir K. Patra, Hélène Peiro, Christof Petri, Sajeev Philip, David F. Pollard, Benjamin Poulter, Marine Remaud, Andrew Schuh, Mahesh K. Sha, Kei Shiomi, Kimberly Strong, Colm Sweeney, Yao Té, Hanqin Tian, Voltaire A. Velazco, Mihalis Vrekoussis, Thorsten Warneke, John R. Worden, Debra Wunch, Yuanzhi Yao, Jeongmin Yun, Andrew Zammit-Mangion, Ning Zeng
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::aed4536158ade9bc6fc4374b24221c45
https://doi.org/10.5194/essd-2022-213-supplement
https://doi.org/10.5194/essd-2022-213-supplement
Autor:
Brendan Byrne, David F. Baker, Sourish Basu, Michael Bertolacci, Kevin W. Bowman, Dustin Carroll, Abhishek Chatterjee, Frédéric Chevallier, Philippe Ciais, Noel Cressie, David Crisp, Sean Crowell, Feng Deng, Zhu Deng, Nicholas M. Deutscher, Manvendra Dubey, Sha Feng, Omaira García, David W. T. Griffith, Benedikt Herkommer, Lei Hu, Andrew R. Jacobson, Rajesh Janardanan, Sujong Jeong, Matthew S. Johnson, Dylan B. A. Jones, Rigel Kivi, Junjie Liu, Zhiqiang Liu, Shamil Maksyutov, John B. Miller, Scot M. Miller, Isamu Morino, Justus Notholt, Tomohiro Oda, Christopher W. O’Dell, Young-Suk Oh, Hirofumi Ohyama, Prabir K. Patra, Hélène Peiro, Christof Petri, Sajeev Philip, David F. Pollard, Benjamin Poulter, Marine Remaud, Andrew Schuh, Mahesh K. Sha, Kei Shiomi, Kimberly Strong, Colm Sweeney, Yao Té, Hanqin Tian, Voltaire A. Velazco, Mihalis Vrekoussis, Thorsten Warneke, John R. Worden, Debra Wunch, Yuanzhi Yao, Jeongmin Yun, Andrew Zammit-Mangion, Ning Zeng
Publikováno v:
Byrne, B, Baker, D F, Basu, S, Bertolacci, M, Bowman, K W, Carroll, D, Chatterjee, A, Chevallier, F, Ciais, P, Cressie, N, Crisp, D, Crowell, S, Deng, F, Deng, Z, Deutscher, N M, Dubey, M K, Feng, S, García, O E, Griffith, D W T, Herkommer, B, Hu, L, Jacobson, A R, Janardanan, R, Jeong, S, Johnson, M S, Jones, D B A, Kivi, R, Liu, J, Liu, Z, Maksyutov, S, Miller, J B, Miller, S M, Morino, I, Notholt, J, Oda, T, O'Dell, C W, Oh, Y-S, Ohyama, H, Patra, P K, Peiro, H, Petri, C, Philip, S, Pollard, D F, Poulter, B, Remaud, M, Schuh, A, Sha, M K, Shiomi, K, Strong, K, Sweeney, C, Té, Y, Tian, H, Velazco, V A, Vrekoussis, M, Warneke, T, Worden, J R, Wunch, D, Yao, Y, Yun, J, Zammit-Mangion, A & Zeng, N 2023, ' National CO2 budgets (2015-2020) inferred from atmospheric CO2 observations in support of the global stocktake ', Earth System Science Data, vol. 15, no. 2, pp. 963-1004 . https://doi.org/10.5194/essd-15-963-2023
Earth System Science Data
Earth System Science Data, 2023, 15 (2), pp.963-1004. ⟨10.5194/essd-15-963-2023⟩
Earth System Science Data, 15 (2), 963–1004
Earth System Science Data
Earth System Science Data, 2023, 15 (2), pp.963-1004. ⟨10.5194/essd-15-963-2023⟩
Earth System Science Data, 15 (2), 963–1004
Accurate accounting of emissions and removals of CO2 is critical for the planning and verification of emission reduction targets in support of the Paris Agreement. Here, we present a pilot dataset of country-specific net carbon exchange (NCE; fossil
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::0fee2e5d23544621d5578caf9d4865ce
https://essd.copernicus.org/preprints/essd-2022-213/
https://essd.copernicus.org/preprints/essd-2022-213/