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49 rows where datasetId = 5926 sorted by id descending
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id ▲ | name | unit | description | createdAt | updatedAt | code | coverage | timespan | datasetId | sourceId | shortUnit | display | columnOrder | originalMetadata | grapherConfigAdmin | shortName | catalogPath | dimensions | schemaVersion | processingLevel | processingLog | titlePublic | titleVariant | attributionShort | attribution | descriptionShort | descriptionFromProducer | descriptionKey | descriptionProcessing | licenses | license | grapherConfigETL | type | sort | dataChecksum | metadataChecksum |
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577091 | Greenhouse gas emissions per person | tonnes | Greenhouse gas emissions per person are calculated by Our World in Data based on emissions data from Jones et al. (2023) and population data from HYDE and the UN World Population Prospects. Jones et al. (2023) give methane and nitrous oxide emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 273 for nitrous oxide, 29.8 for methane from fossil sources, and 27.2 for methane from agricultural and land use sources (as per the IPCC AR6 report). | 2023-03-27 12:43:32 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_ghg_co2eq_per_capita | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_ghg_co2eq_per_capita | 1 | ||||||||||||||||||||||
577090 | Nitrous oxide emissions per person | tonnes | Nitrous oxide emissions per person are calculated by Our World in Data based on emissions data from Jones et al. (2023) and population data from HYDE and the UN World Population Prospects. Jones et al. (2023) give nitrous oxide emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 273 (as per the IPCC AR6 report). | 2023-03-27 12:43:32 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_n2o_per_capita | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_n2o_per_capita | 1 | ||||||||||||||||||||||
577089 | Methane emissions per person | tonnes | Methane emissions per person are calculated by Our World in Data based on emissions data from Jones et al. (2023) and population data from HYDE and the UN World Population Prospects. Jones et al. (2023) give methane emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 29.8 for fossil sources, and 27.2 for agricultural and land use sources (as per the IPCC AR6 report). | 2023-03-27 12:43:31 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_ch4_per_capita | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_ch4_per_capita | 1 | ||||||||||||||||||||||
577088 | Share of contribution to global warming | % | This measures each country's contribution to global mean surface temperature (GMST) rise from its cumulative emissions of carbon dioxide, methane and nitrous oxide. The warming effects of each gas are calculated based on cumulative CO2-equivalent emissions using the Global Warming Potential (GWP*) approach. | 2023-03-27 12:43:29 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | % | { "unit": "%", "shortUnit": "%" } |
0 | share_global_warming | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#share_global_warming | 1 | ||||||||||||||||||||||
577087 | Change in global mean surface temperature from greenhouse gas emissions | °C | This measures each country's contribution to global mean surface temperature (GMST) rise from its cumulative emissions of carbon dioxide, methane and nitrous oxide. The warming effects of each gas are calculated based on cumulative CO2-equivalent emissions using the Global Warming Potential (GWP*) approach. | 2023-03-27 12:43:29 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_ghg | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_ghg | 1 | ||||||||||||||||||||||
577086 | temp_land_ghg | °C | 2023-03-27 12:43:28 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_land_ghg | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_land_ghg | 1 | |||||||||||||||||||||||
577085 | temp_fossil_ghg | °C | 2023-03-27 12:43:27 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_fossil_ghg | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_fossil_ghg | 1 | |||||||||||||||||||||||
577084 | Change in global mean surface temperature from nitrous oxide emissions | °C | This measures each country's contribution to global mean surface temperature (GMST) rise from its cumulative nitrous oxide emissions. The warming effects of each gas are calculated based on cumulative CO2-equivalent emissions using the Global Warming Potential (GWP*) approach. | 2023-03-27 12:43:25 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_n2o | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_n2o | 1 | ||||||||||||||||||||||
577083 | temp_land_n2o | °C | 2023-03-27 12:43:25 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_land_n2o | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_land_n2o | 1 | |||||||||||||||||||||||
577082 | temp_fossil_n2o | °C | 2023-03-27 12:43:23 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_fossil_n2o | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_fossil_n2o | 1 | |||||||||||||||||||||||
577081 | Change in global mean surface temperature from methane emissions | °C | This measures each country's contribution to global mean surface temperature (GMST) rise from its cumulative emissions of methane. The warming effects of each gas are calculated based on cumulative CO2-equivalent emissions using the Global Warming Potential (GWP*) approach. | 2023-03-27 12:43:23 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_ch4 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_ch4 | 1 | ||||||||||||||||||||||
577080 | temp_land_ch4 | °C | 2023-03-27 12:43:23 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_land_ch4 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_land_ch4 | 1 | |||||||||||||||||||||||
577079 | temp_fossil_ch4 | °C | 2023-03-27 12:43:22 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_fossil_ch4 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_fossil_ch4 | 1 | |||||||||||||||||||||||
577078 | Change in global mean surface temperature from CO2 emissions | °C | This measures each country's contribution to global mean surface temperature (GMST) rise from its cumulative emissions of carbon dioxide. The warming effects of each gas are calculated based on cumulative CO2-equivalent emissions using the Global Warming Potential (GWP*) approach. | 2023-03-27 12:43:21 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_co2 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_co2 | 1 | ||||||||||||||||||||||
577077 | temp_land_co2 | °C | 2023-03-27 12:43:21 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_land_co2 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_land_co2 | 1 | |||||||||||||||||||||||
577076 | temp_fossil_co2 | °C | 2023-03-27 12:43:20 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | °C | { "unit": "\u00b0C", "shortUnit": "\u00b0C" } |
0 | temp_fossil_co2 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#temp_fossil_co2 | 1 | |||||||||||||||||||||||
577075 | Cumulative greenhouse gas emissions | tonnes | Greenhouse gas emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC AR6 conversion factors. Jones et al. (2023) give methane and nitrous oxide emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 273 for nitrous oxide, 29.8 for methane from fossil sources, and 27.2 for methane from agricultural and land use sources (as per the IPCC AR6 report). | 2023-03-27 12:43:19 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_ghg | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_ghg | 1 | ||||||||||||||||||||||
577074 | cumulative_land_ghg | tonnes | 2023-03-27 12:43:17 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_land_ghg | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_land_ghg | 1 | |||||||||||||||||||||||
577073 | cumulative_fossil_ghg | tonnes | 2023-03-27 12:43:17 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_fossil_ghg | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_fossil_ghg | 1 | |||||||||||||||||||||||
577072 | cumulative_n2o | tonnes | 2023-03-27 12:43:12 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_n2o | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_n2o | 1 | |||||||||||||||||||||||
577071 | cumulative_fossil_n2o | tonnes | 2023-03-27 12:43:12 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_fossil_n2o | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_fossil_n2o | 1 | |||||||||||||||||||||||
577070 | cumulative_land_n2o | tonnes | 2023-03-27 12:43:12 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_land_n2o | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_land_n2o | 1 | |||||||||||||||||||||||
577069 | cumulative_ch4 | tonnes | 2023-03-27 12:43:12 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_ch4 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_ch4 | 1 | |||||||||||||||||||||||
577068 | cumulative_fossil_ch4 | tonnes | 2023-03-27 12:43:12 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_fossil_ch4 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_fossil_ch4 | 1 | |||||||||||||||||||||||
577067 | cumulative_land_ch4 | tonnes | 2023-03-27 12:43:12 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_land_ch4 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_land_ch4 | 1 | |||||||||||||||||||||||
577066 | cumulative_co2 | tonnes | 2023-03-27 12:43:11 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_co2 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_co2 | 1 | |||||||||||||||||||||||
577065 | cumulative_land_co2 | tonnes | 2023-03-27 12:43:10 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_land_co2 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_land_co2 | 1 | |||||||||||||||||||||||
577064 | cumulative_fossil_co2 | tonnes | 2023-03-27 12:43:09 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | cumulative_fossil_co2 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#cumulative_fossil_co2 | 1 | |||||||||||||||||||||||
577063 | Share of global greenhouse gas emissions | % | Greenhouse gas emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC AR6 conversion factors. Jones et al. (2023) give methane and nitrous oxide emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 273 for nitrous oxide, 29.8 for methane from fossil sources, and 27.2 for methane from agricultural and land use sources (as per the IPCC AR6 report). | 2023-03-27 12:43:09 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | % | { "unit": "%", "shortUnit": "%" } |
0 | share_global_ghg | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#share_global_ghg | 1 | ||||||||||||||||||||||
577062 | Share of global methane emissions | % | Methane emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC conversion factors. Jones et al. (2023) give methane emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 29.8 for fossil sources, and 27.2 for agricultural and land use sources (as per the IPCC AR6 report). | 2023-03-27 12:43:02 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | % | { "unit": "%", "shortUnit": "%" } |
0 | share_global_ch4 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#share_global_ch4 | 1 | ||||||||||||||||||||||
577061 | Share of global nitrous oxide emissions | % | Nitrous oxide emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC AR6 conversion factors. Jones et al. (2023) give nitrous oxide emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 273 (as per the IPCC AR6 report). | 2023-03-27 12:43:02 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | % | { "unit": "%", "shortUnit": "%" } |
0 | share_global_n2o | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#share_global_n2o | 1 | ||||||||||||||||||||||
577060 | Annual nitrous oxide emissions | tonnes | Nitrous oxide emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC AR6 conversion factors. Jones et al. (2023) give nitrous oxide emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 273 (as per the IPCC AR6 report). | 2023-03-27 12:43:02 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_n2o_co2eq | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_n2o_co2eq | 1 | ||||||||||||||||||||||
577059 | Annual greenhouse gas emissions from agriculture and land use | tonnes | Greenhouse gas emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC AR6 conversion factors. Jones et al. (2023) give methane and nitrous oxide emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 273 for nitrous oxide, 29.8 for methane from fossil sources, and 27.2 for methane from agricultural and land use sources (as per the IPCC AR6 report). | 2023-03-27 12:43:02 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_land_co2eq | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_land_co2eq | 1 | ||||||||||||||||||||||
577058 | Annual greenhouse gas emissions from fossil fuels and industry | tonnes | Greenhouse gas emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC AR6 conversion factors. Jones et al. (2023) give methane and nitrous oxide emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 273 for nitrous oxide, 29.8 for methane from fossil sources, and 27.2 for methane from agricultural and land use sources (as per the IPCC AR6 report). | 2023-03-27 12:43:02 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_fossil_co2eq | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_fossil_co2eq | 1 | ||||||||||||||||||||||
577057 | Annual greenhouse gas emissions | tonnes | Greenhouse gas emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC AR6 conversion factors. Jones et al. (2023) give methane and nitrous oxide emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 273 for nitrous oxide, 29.8 for methane from fossil sources, and 27.2 for methane from agricultural and land use sources (as per the IPCC AR6 report). | 2023-03-27 12:43:02 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_ghg_co2eq | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_ghg_co2eq | 1 | ||||||||||||||||||||||
577056 | Annual nitrous oxide emissions from agriculture and land use | tonnes | Nitrous oxide emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC AR6 conversion factors. Jones et al. (2023) give nitrous oxide emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 273 (as per the IPCC AR6 report). | 2023-03-27 12:43:01 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_land_n2o_co2eq | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_land_n2o_co2eq | 1 | ||||||||||||||||||||||
577055 | Annual nitrous oxide emissions from fossil fuels and industry | tonnes | Nitrous oxide emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC AR6 conversion factors. Jones et al. (2023) give nitrous oxide emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 273 (as per the IPCC AR6 report). | 2023-03-27 12:43:00 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_fossil_n2o_co2eq | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_fossil_n2o_co2eq | 1 | ||||||||||||||||||||||
577054 | Annual methane emissions from agriculture and land use | tonnes | Methane emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC conversion factors. Jones et al. (2023) give methane emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 29.8 for fossil sources, and 27.2 for agricultural and land use sources (as per the IPCC AR6 report). | 2023-03-27 12:43:00 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_land_ch4_co2eq | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_land_ch4_co2eq | 1 | ||||||||||||||||||||||
577053 | Annual methane emissions | tonnes | Methane emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC conversion factors. Jones et al. (2023) give methane emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 29.8 for fossil sources, and 27.2 for agricultural and land use sources (as per the IPCC AR6 report). | 2023-03-27 12:43:00 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_ch4_co2eq | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_ch4_co2eq | 1 | ||||||||||||||||||||||
577052 | Annual methane emissions from fossil fuels and industry | tonnes | Methane emissions are calculated by Our World in Data based on emissions data from Jones et al. (2023) and IPCC conversion factors. Jones et al. (2023) give methane emissions in standard metric tonnes per year. We have converted these emissions to carbon-dioxide equivalents over a 100-year timescale using a conversion factor of 29.8 for fossil sources, and 27.2 for agricultural and land use sources (as per the IPCC AR6 report). | 2023-03-27 12:42:48 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_fossil_ch4_co2eq | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_fossil_ch4_co2eq | 1 | ||||||||||||||||||||||
577051 | annual_n2o | tonnes | 2023-03-27 12:42:48 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_n2o | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_n2o | 1 | |||||||||||||||||||||||
577050 | annual_land_n2o | tonnes | 2023-03-27 12:42:48 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_land_n2o | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_land_n2o | 1 | |||||||||||||||||||||||
577049 | annual_ch4 | tonnes | 2023-03-27 12:42:48 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_ch4 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_ch4 | 1 | |||||||||||||||||||||||
577048 | annual_fossil_n2o | tonnes | 2023-03-27 12:42:48 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_fossil_n2o | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_fossil_n2o | 1 | |||||||||||||||||||||||
577047 | annual_land_ch4 | tonnes | 2023-03-27 12:42:48 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_land_ch4 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_land_ch4 | 1 | |||||||||||||||||||||||
577046 | annual_fossil_ch4 | tonnes | 2023-03-27 12:42:48 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_fossil_ch4 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_fossil_ch4 | 1 | |||||||||||||||||||||||
577045 | Annual CO2 emissions | tonnes | 2023-03-27 12:42:48 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_co2 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_co2 | 1 | |||||||||||||||||||||||
577044 | Annual CO2 emissions from agriculture and land use | tonnes | 2023-03-27 12:42:48 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_land_co2 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_land_co2 | 1 | |||||||||||||||||||||||
577043 | Annual fossil CO2 emissions | tonnes | 2023-03-27 12:42:48 | 2023-10-27 12:25:39 | 1851-2021 | Global warming contributions 5926 | Matthew Jones et al. (2023) 27451 | t | { "unit": "tonnes", "shortUnit": "t" } |
0 | annual_fossil_co2 | grapher/fasttrack/2023-03-27/global_warming_contributions/global_warming_contributions#annual_fossil_co2 | 1 |
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CREATE TABLE "variables" ( "id" INTEGER PRIMARY KEY AUTOINCREMENT, "name" VARCHAR(750) NULL , "unit" VARCHAR(255) NOT NULL , "description" TEXT NULL , "createdAt" DATETIME NOT NULL DEFAULT CURRENT_TIMESTAMP , "updatedAt" DATETIME NULL , "code" VARCHAR(255) NULL , "coverage" VARCHAR(255) NOT NULL , "timespan" VARCHAR(255) NOT NULL , "datasetId" INTEGER NOT NULL , "sourceId" INTEGER NULL , "shortUnit" VARCHAR(255) NULL , "display" TEXT NOT NULL , "columnOrder" INTEGER NOT NULL DEFAULT '0' , "originalMetadata" TEXT NULL , "grapherConfigAdmin" TEXT NULL , "shortName" VARCHAR(255) NULL , "catalogPath" VARCHAR(767) NULL , "dimensions" TEXT NULL , "schemaVersion" INTEGER NOT NULL DEFAULT '1' , "processingLevel" VARCHAR(30) NULL , "processingLog" TEXT NULL , "titlePublic" VARCHAR(512) NULL , "titleVariant" VARCHAR(255) NULL , "attributionShort" VARCHAR(512) NULL , "attribution" TEXT NULL , "descriptionShort" TEXT NULL , "descriptionFromProducer" TEXT NULL , "descriptionKey" TEXT NULL , "descriptionProcessing" TEXT NULL , "licenses" TEXT NULL , "license" TEXT NULL , "grapherConfigETL" TEXT NULL , "type" TEXT NULL , "sort" TEXT NULL , "dataChecksum" VARCHAR(64) NULL , "metadataChecksum" VARCHAR(64) NULL, FOREIGN KEY("datasetId") REFERENCES "datasets" ("id") ON UPDATE RESTRICT ON DELETE RESTRICT, FOREIGN KEY("sourceId") REFERENCES "sources" ("id") ON UPDATE RESTRICT ON DELETE RESTRICT ); CREATE UNIQUE INDEX "idx_catalogPath" ON "variables" ("catalogPath"); CREATE UNIQUE INDEX "unique_short_name_per_dataset" ON "variables" ("shortName", "datasetId"); CREATE UNIQUE INDEX "variables_code_fk_dst_id_7bde8c2a_uniq" ON "variables" ("code", "datasetId"); CREATE INDEX "variables_datasetId_50a98bfd_fk_datasets_id" ON "variables" ("datasetId"); CREATE UNIQUE INDEX "variables_name_fk_dst_id_f7453c33_uniq" ON "variables" ("name", "datasetId"); CREATE INDEX "variables_sourceId_31fce80a_fk_sources_id" ON "variables" ("sourceId");