Area of research
Global and Planetary Change · Atmospheric Science
Research interest
Research interests include Environmental science, Methane, Greenhouse gas, Atmospheric methane, Inversion (geology), and Methane emissions.
Weizmannia coagulans BC99 Improve Cognitive Impairment Induced by Chronic Sleep Deprivation via Inhibiting the Brain and Intestine’s NLRP3 Inflammasome
High-resolution US methane emissions inferred from an inversion of 2019 TROPOMI satellite data: contributions from individual states, urban areas, and landfills
Observation-derived 2010-2019 trends in methane emissions and intensities from US oil and gas fields tied to activity metrics
Continuous weekly monitoring of methane emissions from the Permian Basin by inversion of TROPOMI satellite observations
Satellite quantification of methane emissions and oil–gas methane intensities from individual countries in the Middle East and North Africa: implications for climate action
East Asian methane emissions inferred from high-resolution inversions of GOSAT and TROPOMI observations: a comparative and evaluative analysis
Verifying Methane Inventories and Trends With Atmospheric Methane Data
Quantifying methane emissions from the global scale down to point sources using satellite observations of atmospheric methane
Methane emissions from China: a high-resolution inversion of TROPOMI satellite observations
Updated Global Fuel Exploitation Inventory (GFEI) for methane emissions from the oil, gas, and coal sectors: evaluation with inversions of atmospheric methane observations
Satellite quantification of oil and natural gas methane emissions in the US and Canada including contributions from individual basins
Methane emissions in the United States, Canada, and Mexico: evaluation of national methane emission inventories and 2010–2017 sectoral trends by inverse analysis of in situ (GLOBALVIEWplus CH <sub>4</sub> ObsPack) and satellite (GOSAT) atmospheric observations
The 2019 methane budget and uncertainties at 1° resolution and each country through Bayesian integration Of GOSAT total column methane data and a priori inventory estimates
Integrated Methane Inversion (IMI 1.0): a user-friendly, cloud-based facility for inferring high-resolution methane emissions from TROPOMI satellite observations
Attribution of the 2020 surge in atmospheric methane by inverse analysis of GOSAT observations
Quantifying methane emissions from the global scale down to point sources using satellite observations of atmospheric methane
Satellite quantification of oil and natural gas methane emissions in the US and Canada including contributions from individual basins
Continuous weekly monitoring of methane emissions from the Permian Basin by inversion of TROPOMI satellite observations
Attribution of the accelerating increase in atmospheric methane during 2010–2018 by inverse analysis of GOSAT observations
Global methane budget and trend, 2010–2017: complementarity of inverse analyses using in situ (GLOBALVIEWplus CH <sub>4</sub> ObsPack) and satellite (GOSAT) observations
Unravelling a large methane emission discrepancy in Mexico using satellite observations
A Bayesian framework for deriving sector-based methane emissions from top-down fluxes
Transboundary transport of ozone pollution to a US border region: A case study of Yuma
The 2019 Methane Budget And Uncertainties At 1 Degree Resolution And Each Country Through Bayesian Integration Of GOSAT Total Column Methane Data And A Priori Inventory Estimates
Unexpected slowdown of US pollutant emission reduction in the past decade