CINIE CINIE
中文 | English | Français | Русский
Home CINIE World Nuclear Fusion Nuclear Application

Search Results

Keyword:methane isotopes

U.S. Research Team Tracks Main Drivers of Global Methane Rise Using Stable Isotope Analysis

U.S. Research Team Tracks Main Drivers of Global Methane Rise Using Stable Isotope Analysis

A research team from the U.S. National Oceanic and Atmospheric Administration Global Monitoring Laboratory and the University of Colorado has recently traced the sources of the rapid rise in global atmospheric methane since 2007 through high-precision methane concentration measurements and carbon and hydrogen stable isotope analysis. The findings show that over the past two decades, microbial emissions have been the primary factor driving the increase in methane concentrations, while fossil fuel-related methane emissions may have remained relatively stable overall. A methane molecule consists of one carbon atom and four hydrogen atoms, and methane from different sources differs in its carbon and hydrogen isotope composition. Researchers used this chemical fingerprint to distinguish methane sources: fossil fuel methane such as natural gas typically contains a relatively higher proportion of carbon-13, while methane produced by microbial processes in wetlands, landfills, livestock, and agricultural environments has a lower carbon-13 proportion, exhibiting a "lighter" isotopic signature. The proportion of deuterium in hydrogen isotopes also varies with the way methane is formed, providing a further basis for source identification.

2026-07-31

Reading Ranking

  • 1 UK to Invest £8.4 Billion in Dreadnought-Class Nuclear Submarine Program
  • 2 Lufeng Nuclear Power Unit 5 PMC Installation Task Successfully Completed
  • 3 Germany to Establish Fusion Technology Research Center at Karlsruhe Institute of Technology
  • 4 Kazakhstan advances the use of radiation technology for agricultural preservation and advanced wastewater treatment.
  • 5 Controllable Nuclear Fusion Industry Intellectual Property Operation Center Launched in Hefei
  • 6 EU Releases 2026–2027 Nuclear Research and Training Work Programme: Focusing on Safety, Innovation, and Capacity Building
  • 7 Northwest Nuclear and Radiation Safety Supervision Station of the Ministry of Ecology and Environment Completes Routine Supervision and Emergency Assessment of Thorium-based Molten Salt Reactor
  • 8 IAEA Supports Nicaragua in Enhancing Agricultural Health and Food Security through Nuclear Technology
  • 9 Xinhua Exclusive Interview | China Makes Significant Contributions to the "Artificial Sun" Project — Interview with Alain Bécoulet, Deputy Director-General and Chief Scientist of the International Thermonuclear Experimental Reactor Organization
  • 10 Preliminary Design Review Meeting Successfully Held for China's Helium-Cooled Solid Test Blanket Module System
  • 11 DOE's Oak Ridge National Laboratory and REV Advance Shared Fusion Test Platform Construction
  • 12 IAEA Launches New Project to Advance Research Network on Small and Medium-Sized Fusion Devices
  • 13 Korea Atomic Energy Research Institute and SK Hynix to Jointly Use Proton Accelerator and Other Facilities for Semiconductor Radiation Reliability Research
  • 14 n situ GIWAXS characterization using synchrotron radiation helps overcome challenges in wide-bandgap perovskites
  • 15 UK Interim Report on Fission Materials Roadmap Highlights New-Generation Nuclear R&D Priorities
CINIE

Organizing Committee of the Shenzhen Nuclear Expo

Telephone: +86 10-67808008

+86 10-68808008

Email: info@cinie.net

CINIE

Event Overview News Center Support Services Highlights Archive Contact Us

World Nuclear

China Nuclear Power News World Nuclear Power News Expert Views Nuclear Power Technology

Fusion

China Fusion World Fusion Big Science Facilities ITER Program Business & Capital

Nuclear Application

Medical Scientific Research Environmental Protection Industry Food Agriculture Security
About us | All rights reserved
CINIE All rights reserved 2026 ICP License:京ICP备12027382号-9