Linked from
The 73 pages that link to Greenhouse gas emissions, each with the reason it gives.
Internal combustion engineRelated: Burning carbon-based fuels in engines releases carbon dioxide.
Renewable energyRelated: Renewable energy can displace fossil-fuel combustion and reduce power-sector emissions.
Cold chainRelated: Cooling equipment, refrigerant leakage, and energy-intensive transport add emissions.
Climate change mitigationRelated: Reducing these releases is the central route by which mitigation slows warming.
DesalinationRelated: Fossil-powered desalination can add emissions to the water it supplies.
Nuclear powerRelated: Nuclear plants emit little carbon dioxide during operation, while lifecycle emissions include construction and fuel supply.
Land useRelated: Land conversion and management release carbon and alter greenhouse-gas uptake.
PeatlandRelated: Drainage and burning can turn peatlands from long-term carbon stores into emission sources.
Anaerobic respirationRelated: Anaerobic microbial metabolism can influence production or consumption of climate-active gases.
BiodieselRelated: Biodiesel’s climate impact varies with feedstock, processing energy, transport, and land-use change.
Greenhouse gasRelated: Emissions are flows that add gases; greenhouse-gas concentrations are the atmospheric stocks that produce warming.
PeatRelated: Drained peat oxidizes and releases stored carbon, while burning peat adds emissions.
GreenhouseCompared with: The shared word can cause confusion: structural greenhouses and atmospheric greenhouse gases are distinct topics.
Haber processRelated: Conventional hydrogen feedstock and process energy make ammonia production emissions-intensive.
VegetarianismRelated: Shifting away from meat can lower diet-related emissions, especially when it replaces ruminant meat.
Regenerative agricultureRelated: Soil-carbon gains must be assessed alongside emissions from livestock, fertilizers, and land use.
BeefRelated: Cattle production emits greenhouse gases, especially methane from digestion and emissions linked to feed and land use.
Electric power systemRelated: The generation mix supplying a power system strongly affects its emissions.
Carbon offsetRelated: Offsets are used to counterbalance emissions attributed to other activities.
Electrical gridRelated: The grid’s emissions depend on which generators meet electricity demand.
PetroleumRelated: Burning petroleum fuels releases carbon dioxide, a major greenhouse gas.
Plant-based dietRelated: Replacing some animal products with plant foods can change diet-related emissions.
Renewable energy integrationRelated: Displacing fossil generation with renewables can lower power-sector emissions.
BiocharRelated: Net climate benefit depends on emissions from production and changes after application.
Oil refineryRelated: Refineries consume energy and emit greenhouse gases while processing crude oil.
Chemical recyclingRelated: Energy-intensive conversion and fossil-derived feedstocks can shape the climate impact of recycling plants.
Park and rideRelated: Emissions fall only when avoided driving outweighs access trips and added parking-related travel.
PropaneRelated: Burning propane produces carbon dioxide, a greenhouse gas.
Road transportRelated: Fuel use in road vehicles contributes to transport-related climate emissions.
Spark-ignition engineRelated: Burning carbon-based fuels in these engines releases carbon dioxide.
Food milesRelated: Transport emissions are a common environmental impact inferred from food miles.
Plant milkRelated: Plant-milk production often has different emissions from dairy, though results depend on ingredients and methods.
Adipic acidNarrower topic: Adipic acid manufacture has historically emitted nitrous oxide, linking its supply chain to climate impacts.
Petrochemical industryRelated: Emissions arise from fossil feedstock extraction, energy-intensive production, and product disposal.
Electricity generationRelated: Fossil-fuel generation is a major source of energy-related carbon dioxide emissions.
Hall–Héroult processRelated: Anode consumption and electricity generation make primary aluminium emissions-intensive.
PetrochemicalRelated: Petrochemical production uses fossil carbon and energy, creating emissions across its supply chain.
Green hydrogenRelated: The emissions benefit depends on how clean the electricity and supply chain are.
Hydrogen fuelRelated: Hydrogen use can be low-emission at the point of use, while its production may emit greenhouse gases.
Petroleum industryRelated: Burning petroleum products releases carbon dioxide, while operations can emit methane.
Plant-based meatRelated: Differences in production emissions are a major basis for environmental comparisons.
Vehicle miles traveledRelated: Road-transport emissions estimates often combine VMT with vehicle emission rates.
Energy consumptionRelated: Consumption of fossil-derived energy produces emissions that depend on its energy source.
Intensive animal farmingRelated: Livestock production emits methane and nitrous oxide, alongside emissions from feed and energy.
Liquefied petroleum gasNarrower topic: Burning LPG emits carbon dioxide, and fuel leakage can release unburned hydrocarbons.
Ostwald processNarrower topic: Process heat and nitrous oxide emissions contribute to its climate footprint.
Oil sandsRelated: Extracting and processing bitumen generally emits more greenhouse gases per barrel than many lighter crude sources.
CaprolactamRelated: Caprolactam manufacture can generate emissions through energy use and process chemistry.
Oat milkRelated: Comparisons with dairy often consider emissions from farming, processing, and transport.
Red meatRelated: Ruminant meat production, especially beef and lamb, can generate substantial emissions.