Benjamin Hmiel
- ORCiD
- https://orcid.org/0000-0002-5289-7492
- OpenAlex ID
- https://openalex.org/A5033700471 (API record)
Associated Concepts [?]
- Geology
- Biology
- Physics
- Chemistry
- Organic chemistry
- Oceanography
- Geography
- Environmental science
- Ecology
- Atmospheric sciences
- Paleontology
- Geomorphology
- Meteorology
- Climatology
- Methane
- Greenhouse gas
- Engineering
- Physical geography
- Materials science
- Quantum mechanics
- Ice core
- Waste management
- Glacier
- Astronomy
- Earth science
Authored Works
sorted by decreasing year, and then by display-name
- The role(s) of remote sensing in reducing methane emissions from the oil and gas supply chain
- Malfunctions and Methane Emissions from Flares at Low-producing Well Sites in the Permian Basin
- Continuous weekly monitoring of methane emissions from the Permian Basin by inversion of TROPOMI satellite observations
- Characterization of in situ cosmogenic 14CO in glacial ice and applications of ice core 14CO as a tracer
- Utilizing Large-Scale Aerial Remote Sensing Campaigns to Improve Estimates of Methane Emission Factors from Pipelines in the Permian Basin
- The potential of using in situ cosmogenic 14CO in ice cores at Dome C to examine the assumption of a constant galactic cosmic ray flux
- The Quest for Operator Metrics: Can Aerial Remote Sensing Deliver Sufficient Data to Quantitatively Compare the Emissions Performance of Oil & Gas Operators in the United States Permian Basin?
- Policy Insights from PermianMAP: What is the Value of Measurement Data for Mitigating Oil and Gas Methane Emissions?
- Methane emissions from U.S. marginal oil and gas wells
- Law Dome 14CH4 measurements confirm revised fossil methane emissions estimates
- Insights on Muonic Production of Radiocarbon (14C) from ablating and accumulating ice sheets: Revised Production Rates and Improved Estimates of 14C Retention in Firn
- Insights from Repeated Helicopter-based OGI on Methane Emissions and Flaring Performance across Industry Segments in the Permian Basin
- Analysis of Methane Emissions and Combustion Efficiency of Natural Gas Flares in the United States Permian Basin Using An Unmanned Aerial Vehicle Platform
- Analysis of CH4 Emissions and Trends in the Permian Basin Using Continuous Measurements from an Observational Tower Network
- A Preliminary Record of Changes in Southern Hemisphere Atmospheric OH Abundance from 14CO in Glacial Ice (Law Dome, Antarctica, 1870 AD to Present)
Linked Co-Authors
- A. M. Smith
- C. M. Trudinger
- Christo Buizert
- Daniel J. Varon
- Daniel Zimmerle
- Hannah Nesser
- Jeffrey P. Severinghaus
- Kenneth J. Davis
- Lee T. Murray
- M. Dyonisius
- R.L. Kleinberg
- Ray F. Weiss
- Riley Duren
- V. V. Petrenko
- Z. Barkley
- Zhen Qu
Linked Collaborating Institutions
- Australian Antarctic Division
- Australian Nuclear Science and Technology Organization
- Boston University, Massachusetts
- Colorado State University
- Commonwealth Scientific and Industrial Research Organization, Australia
- Cornell University, New York
- Harvard University, Massachusetts
- Jet Propulsion Laboratory
- Netherlands Institute for Space Research
- Niels Bohr Institute for Astronomy, Physics and Geophysics
- Oregon State University, Corvallis
- Peking University, China
- Pennsylvania State University
- Stanford University, California
- University of Arizona
- University of Bern, Switzerland
- University of California, San Diego
- University of California, San Diego, Scripps Institution of Oceanography
- University of Minnesota, Twin Cities
- University of Rochester, New York
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