Existing CO 2 emissions reported by city inventories usually lag in real-time by a year or more and are prone to large uncertainties. This study responds to the growing need for timely and precise estimation of urban CO 2 emissions to support present and future mitigation measures and policies. We focus on the Paris metropolitan area, the largest urban region in the European Union and the city with the densest atmospheric CO 2 observation network in Europe. We performed long-term atmospheric inversions to quantify the citywide CO 2 emissions, i.e., fossil fuel as well as biogenic sources and sinks, over 6 years (2016-2021) using a Bayesian inverse modeling system. Our inversion framework benefits from a novel near-real-time hourly fossil fu...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceCities currently covering only a very small portion ( < 3 %) of the world's la...
International audienceCities currently covering only a very small portion ( < 3 %) of the world's la...
International audienceCities currently covering only a very small portion ( < 3 %) of the world's la...
International audienceCities currently covering only a very small portion ( < 3 %) of the world's la...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceCities currently covering only a very small portion ( < 3 %) of the world's la...
International audienceCities currently covering only a very small portion ( < 3 %) of the world's la...
International audienceCities currently covering only a very small portion ( < 3 %) of the world's la...
International audienceCities currently covering only a very small portion ( < 3 %) of the world's la...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...
International audienceThe ability of a Bayesian atmospheric inversion to quantify the Paris region's...