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F M Hopkins

Biographic Data

ID8000563
NAMEF M Hopkins
GIVEN NAMESF M
FAMILY NAMEHopkins
SIGNATUREHOPKINS F M
AFFILIATIONSUniversity of California, Riverside
ORCID0000-0002-6110-7675
VERIFIEDYes
TOTAL WORKS3
TOTAL CITATIONS0
AUTHOR COUNT3
EDITOR COUNT0
FIRST PUBLICATION YEAR2020
LATEST PUBLICATION YEAR2023
H-INDEX0
  • Evidence for multi-decadal fuel buildup in a large California wildfire from smoke radiocarbon measurements

    Open Access•A Odwuor, Cindy C Yañez et al.•ARTICLE•Environmental Research Letters•2023

    In recent decades, there has been a significant increase in annual area burned in California’s Sierra Nevada mountains. This rise in fire activity has prompted the need to understand how historical forest management practices affect fuel composition and emissions. Here we examined the total carbon (TC) concentration and radiocarbon abundance (Δ 14 C) of particulate matter (PM) emitted by the KNP Complex Fire, which occurred during California’s 20…

  • Methane emissions from underground gas storage in California

    Open Access•Andrew K Thorpe, Riley Duren et al.•ARTICLE•Environmental Research Letters•2020

    Accurate and timely detection, quantification, and attribution of methane emissions from Underground Gas Storage (UGS) facilities is essential for improving confidence in greenhouse gas inventories, enabling emission mitigation by facility operators, and supporting efforts to assess facility integrity and safety. We conducted multiple airborne surveys of the 12 active UGS facilities in California between January 2016 and November 2017 using advan…

  • Attribution of methane point source emissions using airborne imaging spectroscopy and the Vista-California methane infrastructure dataset

    Open Access•Talha Rafiq, Riley Duren et al.•ARTICLE•Environmental Research Letters•2020

    Methane (CH _4 ), an important greenhouse gas and pollutant, has been targeted for mitigation. Our recent California airborne survey identified >500 CH _4 point source super-emitters, which accounted for 34%–46% of the statewide CH _4 emissions inventory for 2016 (Duren et al 2019 Nature 575 180–184). Individual plumes were observed in close proximity to expected methane emitting infrastructure, including gas storage facilities, hydrocarbon stora…

No prominent works on this page.

  • Methane emissions from underground gas storage in California

    Open Access•Andrew K Thorpe, Riley Duren et al.•ARTICLE•Environmental Research Letters•2020

    Accurate and timely detection, quantification, and attribution of methane emissions from Underground Gas Storage (UGS) facilities is essential for improving confidence in greenhouse gas inventories, enabling emission mitigation by facility operators, and supporting efforts to assess facility integrity and safety. We conducted multiple airborne surveys of the 12 active UGS facilities in California between January 2016 and November 2017 using advan…

  • Attribution of methane point source emissions using airborne imaging spectroscopy and the Vista-California methane infrastructure dataset

    Open Access•Talha Rafiq, Riley Duren et al.•ARTICLE•Environmental Research Letters•2020

    Methane (CH _4 ), an important greenhouse gas and pollutant, has been targeted for mitigation. Our recent California airborne survey identified >500 CH _4 point source super-emitters, which accounted for 34%–46% of the statewide CH _4 emissions inventory for 2016 (Duren et al 2019 Nature 575 180–184). Individual plumes were observed in close proximity to expected methane emitting infrastructure, including gas storage facilities, hydrocarbon stora…

  • Evidence for multi-decadal fuel buildup in a large California wildfire from smoke radiocarbon measurements

    Open Access•A Odwuor, Cindy C Yañez et al.•ARTICLE•Environmental Research Letters•2023

    In recent decades, there has been a significant increase in annual area burned in California’s Sierra Nevada mountains. This rise in fire activity has prompted the need to understand how historical forest management practices affect fuel composition and emissions. Here we examined the total carbon (TC) concentration and radiocarbon abundance (Δ 14 C) of particulate matter (PM) emitted by the KNP Complex Fire, which occurred during California’s 20…

Atmospheric and Environmental Gas Dynamics (3 works) · Environmental Science (3 works) · Geology (3 works) · Meteorology (3 works) · Chemistry (2 works) · Geography (2 works) · Greenhouse gas (2 works) · Methane (2 works) · Methane emissions (2 works) · Remote sensing (2 works)

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