Methane emissions from dairies in the Los Angeles Basin
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Published:2017-06-21
Issue:12
Volume:17
Page:7509-7528
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ISSN:1680-7324
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Container-title:Atmospheric Chemistry and Physics
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language:en
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Short-container-title:Atmos. Chem. Phys.
Author:
Viatte Camille, Lauvaux ThomasORCID, Hedelius Jacob K.ORCID, Parker Harrison, Chen JiaORCID, Jones Taylor, Franklin Jonathan E., Deng Aijun J., Gaudet Brian, Verhulst KristalORCID, Duren Riley, Wunch DebraORCID, Roehl Coleen, Dubey Manvendra K.ORCID, Wofsy Steve, Wennberg Paul O.ORCID
Abstract
Abstract. We estimate the amount of methane (CH4) emitted by the largest dairies in the southern California region by combining measurements from four mobile solar-viewing ground-based spectrometers (EM27/SUN), in situ isotopic 13∕12CH4 measurements from a CRDS analyzer (Picarro), and a high-resolution atmospheric transport simulation with a Weather Research and Forecasting model in large-eddy simulation mode (WRF-LES). The remote sensing spectrometers measure the total column-averaged dry-air mole fractions of CH4 and CO2 (XCH4 and XCO2) in the near infrared region, providing information on total emissions of the dairies at Chino. Differences measured between the four EM27/SUN ranged from 0.2 to 22 ppb (part per billion) and from 0.7 to 3 ppm (part per million) for XCH4 and XCO2, respectively. To assess the fluxes of the dairies, these differential measurements are used in conjunction with the local atmospheric dynamics from wind measurements at two local airports and from the WRF-LES simulations at 111 m resolution. Our top-down CH4 emissions derived using the Fourier transform spectrometers (FTS) observations of 1.4 to 4.8 ppt s−1 are in the low end of previous top-down estimates, consistent with reductions of the dairy farms and urbanization in the domain. However, the wide range of inferred fluxes points to the challenges posed by the heterogeneity of the sources and meteorology. Inverse modeling from WRF-LES is utilized to resolve the spatial distribution of CH4 emissions in the domain. Both the model and the measurements indicate heterogeneous emissions, with contributions from anthropogenic and biogenic sources at Chino. A Bayesian inversion and a Monte Carlo approach are used to provide the CH4 emissions of 2.2 to 3.5 ppt s−1 at Chino.
Publisher
Copernicus GmbH
Subject
Atmospheric Science
Reference60 articles.
1. Arata, C., Rahn, T., and Dubey, M. K.: Methane Isotope Instrument Validation and Source Identification at Four Corners, New Mexico, United States, J. Phys. Chem. A, 120, 1488–1494, https://doi.org/10.1021/acs.jpca.5b12737, 2016. 2. ARB – Air Resources Board: concept paper, full report, available at: http://www.arb.ca.gov/cc/shortlived/concept_paper.pdf, last access: 7 May 2015. 3. Berchet, A., Pison, I., Chevallier, F., Paris, J.-D., Bousquet, P., Bonne, J.-L., Arshinov, M. Y., Belan, B. D., Cressot, C., Davydov, D. K., Dlugokencky, E. J., Fofonov, A. V., Galanin, A., Lavrič, J., Machida, T., Parker, R., Sasakawa, M., Spahni, R., Stocker, B. D., and Winderlich, J.: Natural and anthropogenic methane fluxes in Eurasia: a mesoscale quantification by generalized atmospheric inversion, Biogeosciences, 12, 5393–5414, https://doi.org/10.5194/bg-12-5393-2015, 2015. 4. Breon, F. M. and Ciais, P.: Spaceborne remote sensing of greenhouse gas concentrations, Comptes Rendus Geoscience, 342, 412–424, https://doi.org/10.1016/j.crte.2009.09.012, 2010. 5. California Agricultural Statistics, United States Department of Agriculture, National Agricultural Statistics Service, Pacific Regional, Field Office California, full report, available at: http://www.nass.usda.gov/Statistics by_State/California/Publications/California_Ag_Statistics/ CALivestockandDairy.pdf (last access: 16 June 2017), 2013.
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