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        "code": "GLOBAL",
        "name": "Global",
        "type": "world"
      },
      "period": {
        "start": "2025-10-01",
        "end": "2025-10-01",
        "type": "point"
      },
      "value": 6.5,
      "value_text": "$6.5 trillion",
      "unit": "USD",
      "currency": "USD",
      "scale": "trillion",
      "value_type": "estimate",
      "source": {
        "org": "International Energy Agency",
        "org_short_name": "IEA",
        "org_url": "https://www.iea.org",
        "org_tier": 1,
        "document_title": "Supply concentration, export restrictions and declining investment put critical mineral security at risk",
        "document_url": "https://www.iea.org/news/supply-concentration-export-restrictions-and-declining-investment-put-critical-mineral-security-at-risk",
        "document_type": "press_release",
        "locator": "IEA Global Critical Minerals Outlook 2026 report findings",
        "quote": "In October 2025, these controls were further expanded, and although their implementation was delayed for one year, an estimated $6.5 trillion in annual downstream production outside China could be jeopardised if the measures are enacted fully.",
        "published_date": null,
        "accessed_at": "2026-09-16",
        "license": "see-source",
        "url_status": "ok"
      },
      "verification": "verified",
      "verified_by": "seed:auto-extract-v1",
      "verified_at": "2026-09-17T01:20:19.839Z",
      "confidence": 0.9,
      "is_secondhand": false,
      "supersedes": null,
      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "International Energy Agency. (2025). Supply concentration, export restrictions and declining investment put critical mineral security at risk. Retrieved September 16, 2026, from https://www.iea.org/news/supply-concentration-export-restrictions-and-declining-investment-put-critical-mineral-security-at-risk. Via StatOrigin, https://statorigin.org/stat/stat_XPKT9Z0Y5B9FMVZMH829QAAMCK",
        "bibtex": "@misc{iea2025downstreamqaamck,\n  author       = {{International Energy Agency}},\n  title        = {Supply concentration, export restrictions and declining investment put critical mineral security at risk},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_XPKT9Z0Y5B9FMVZMH829QAAMCK},\n  note         = {Original source: https://www.iea.org/news/supply-concentration-export-restrictions-and-declining-investment-put-critical-mineral-security-at-risk. Accessed September 16, 2026.}\n}"
      },
      "updated_at": "2026-09-17T01:20:19.839Z"
    },
    {
      "id": "stat_01M2KJ7XC42G6MK2ANJH18YFCN",
      "url": "https://statorigin.org/stat/stat_01M2KJ7XC42G6MK2ANJH18YFCN",
      "indicator": {
        "slug": "annual-end-of-life-solar-pv-panel-volume",
        "name": "Annual end-of-life solar PV panel volume",
        "definition": "Total annual volume of solar photovoltaic panels reaching end of life."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
          "isic": "D35",
          "is_primary": true
        }
      ],
      "region": {
        "code": "GLOBAL",
        "name": "Global",
        "type": "world"
      },
      "period": {
        "start": "2050-01-01",
        "end": "2050-12-31",
        "type": "year"
      },
      "value": 25,
      "value_text": "25 million tonnes",
      "unit": "tonnes",
      "currency": null,
      "scale": "million",
      "value_type": "forecast",
      "source": {
        "org": "IRENA",
        "org_short_name": "IRENA",
        "org_url": "https://www.irena.org",
        "org_tier": 1,
        "document_title": "End-of-life management for a circular economy: Solar PV panels",
        "document_url": "https://www.irena.org/Publications/2026/Jul/End-of-life-management-for-a-circular-economy-Solar-PV-panels",
        "document_type": "press_release",
        "locator": "Newsletter",
        "quote": "The annual volume of end-of-life solar PV panels globally is projected to exceed 3 million tonnes by 2035, increasing to over 25 million tonnes by 2050.",
        "published_date": null,
        "accessed_at": "2026-09-15",
        "license": "see-source",
        "url_status": "ok"
      },
      "verification": "verified",
      "verified_by": "seed:auto-extract-v1",
      "verified_at": "2026-09-15T22:15:46.809Z",
      "confidence": 0.9,
      "is_secondhand": false,
      "supersedes": null,
      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "IRENA. (2050). End-of-life management for a circular economy: Solar PV panels. Retrieved September 15, 2026, from https://www.irena.org/Publications/2026/Jul/End-of-life-management-for-a-circular-economy-Solar-PV-panels. Via StatOrigin, https://statorigin.org/stat/stat_01M2KJ7XC42G6MK2ANJH18YFCN",
        "bibtex": "@misc{irena2050life18yfcn,\n  author       = {{IRENA}},\n  title        = {End-of-life management for a circular economy: Solar PV panels},\n  year         = {2050},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC42G6MK2ANJH18YFCN},\n  note         = {Original source: https://www.irena.org/Publications/2026/Jul/End-of-life-management-for-a-circular-economy-Solar-PV-panels. Accessed September 15, 2026.}\n}"
      },
      "updated_at": "2026-09-15T22:15:46.809Z"
    },
    {
      "id": "stat_01M2KJ7XC42G6MK2ANJH18YFCM",
      "url": "https://statorigin.org/stat/stat_01M2KJ7XC42G6MK2ANJH18YFCM",
      "indicator": {
        "slug": "annual-end-of-life-solar-pv-panel-volume",
        "name": "Annual end-of-life solar PV panel volume",
        "definition": "Total annual volume of solar photovoltaic panels reaching end of life."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
          "isic": "D35",
          "is_primary": true
        }
      ],
      "region": {
        "code": "GLOBAL",
        "name": "Global",
        "type": "world"
      },
      "period": {
        "start": "2035-01-01",
        "end": "2035-12-31",
        "type": "year"
      },
      "value": 3,
      "value_text": "3 million tonnes",
      "unit": "tonnes",
      "currency": null,
      "scale": "million",
      "value_type": "forecast",
      "source": {
        "org": "IRENA",
        "org_short_name": "IRENA",
        "org_url": "https://www.irena.org",
        "org_tier": 1,
        "document_title": "End-of-life management for a circular economy: Solar PV panels",
        "document_url": "https://www.irena.org/Publications/2026/Jul/End-of-life-management-for-a-circular-economy-Solar-PV-panels",
        "document_type": "press_release",
        "locator": "Newsletter",
        "quote": "The annual volume of end-of-life solar PV panels globally is projected to exceed 3 million tonnes by 2035, increasing to over 25 million tonnes by 2050.",
        "published_date": null,
        "accessed_at": "2026-09-15",
        "license": "see-source",
        "url_status": "ok"
      },
      "verification": "verified",
      "verified_by": "seed:auto-extract-v1",
      "verified_at": "2026-09-15T22:15:46.809Z",
      "confidence": 0.9,
      "is_secondhand": false,
      "supersedes": null,
      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "IRENA. (2035). End-of-life management for a circular economy: Solar PV panels. Retrieved September 15, 2026, from https://www.irena.org/Publications/2026/Jul/End-of-life-management-for-a-circular-economy-Solar-PV-panels. Via StatOrigin, https://statorigin.org/stat/stat_01M2KJ7XC42G6MK2ANJH18YFCM",
        "bibtex": "@misc{irena2035life18yfcm,\n  author       = {{IRENA}},\n  title        = {End-of-life management for a circular economy: Solar PV panels},\n  year         = {2035},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC42G6MK2ANJH18YFCM},\n  note         = {Original source: https://www.irena.org/Publications/2026/Jul/End-of-life-management-for-a-circular-economy-Solar-PV-panels. Accessed September 15, 2026.}\n}"
      },
      "updated_at": "2026-09-15T22:15:46.809Z"
    },
    {
      "id": "stat_9PF2KCVJQDG3XSQJV2G4TZZFZW",
      "url": "https://statorigin.org/stat/stat_9PF2KCVJQDG3XSQJV2G4TZZFZW",
      "indicator": {
        "slug": "annual-renewable-capacity-additions-forecast-for",
        "name": "Annual renewable capacity additions forecast for 2030",
        "definition": "The forecast annual renewable capacity additions reached in 2030 under the main-case scenario."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
          "isic": "D35",
          "is_primary": true
        }
      ],
      "region": {
        "code": "GLOBAL",
        "name": "Global",
        "type": "world"
      },
      "period": {
        "start": "2030-01-01",
        "end": "2030-12-31",
        "type": "year"
      },
      "value": 940,
      "value_text": "almost 940 GW",
      "unit": "watts",
      "currency": null,
      "scale": "billion",
      "value_type": "forecast",
      "source": {
        "org": "International Energy Agency",
        "org_short_name": "IEA",
        "org_url": "https://www.iea.org",
        "org_tier": 1,
        "document_title": "Executive summary – Renewables 2024",
        "document_url": "https://www.iea.org/reports/renewables-2024/executive-summary",
        "document_type": "press_release",
        "locator": "Global renewables growth set to outpace current government goals for 2030",
        "quote": "This implies that global renewable capacity additions will continue to increase every year, reaching almost 940 GW annually by 2030 – 70% more than the record level achieved last year.",
        "published_date": null,
        "accessed_at": "2026-09-16",
        "license": "see-source",
        "url_status": "ok"
      },
      "verification": "verified",
      "verified_by": "seed:auto-extract-v1",
      "verified_at": "2026-09-17T01:20:19.839Z",
      "confidence": 0.9,
      "is_secondhand": false,
      "supersedes": null,
      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "International Energy Agency. (2030). Executive summary – Renewables 2024. Retrieved September 16, 2026, from https://www.iea.org/reports/renewables-2024/executive-summary. Via StatOrigin, https://statorigin.org/stat/stat_9PF2KCVJQDG3XSQJV2G4TZZFZW",
        "bibtex": "@misc{iea2030renewabletzzfzw,\n  author       = {{International Energy Agency}},\n  title        = {Executive summary – Renewables 2024},\n  year         = {2030},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_9PF2KCVJQDG3XSQJV2G4TZZFZW},\n  note         = {Original source: https://www.iea.org/reports/renewables-2024/executive-summary. Accessed September 16, 2026.}\n}"
      },
      "updated_at": "2026-09-17T01:20:19.839Z"
    },
    {
      "id": "stat_00YT7D3VGY674BSZD1Z67CNYAR",
      "url": "https://statorigin.org/stat/stat_00YT7D3VGY674BSZD1Z67CNYAR",
      "indicator": {
        "slug": "annual-solar-capacity-additions",
        "name": "Annual solar capacity additions",
        "definition": "Amount of new solar photovoltaic generation capacity installed in a given year."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
          "isic": "D35",
          "is_primary": true
        }
      ],
      "region": {
        "code": "GLOBAL",
        "name": "Global",
        "type": "world"
      },
      "period": {
        "start": "2023-01-01",
        "end": "2023-12-31",
        "type": "year"
      },
      "value": 425,
      "value_text": "425 GW",
      "unit": "GW",
      "currency": null,
      "scale": "1",
      "value_type": "actual",
      "source": {
        "org": "International Energy Agency",
        "org_short_name": "IEA",
        "org_url": "https://www.iea.org",
        "org_tier": 1,
        "document_title": "Executive Summary – World Energy Outlook 2024",
        "document_url": "https://www.iea.org/reports/world-energy-outlook-2024/executive-summary",
        "document_type": "press_release",
        "locator": "The world has the need and the capacity to go much faster",
        "quote": "Over the past five years, annual solar capacity additions quadrupled to 425 GW, but annual manufacturing capacity is set for a sixfold increase to more than 1 100 GW, a level that – if deployed in full – would be very close to the amounts needed in the NZE Scenario.",
        "published_date": null,
        "accessed_at": "2026-09-16",
        "license": "see-source",
        "url_status": "ok"
      },
      "verification": "verified",
      "verified_by": "seed:auto-extract-v1",
      "verified_at": "2026-09-17T01:20:19.839Z",
      "confidence": 0.9,
      "is_secondhand": false,
      "supersedes": null,
      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "International Energy Agency. (2023). Executive Summary – World Energy Outlook 2024. Retrieved September 16, 2026, from https://www.iea.org/reports/world-energy-outlook-2024/executive-summary. Via StatOrigin, https://statorigin.org/stat/stat_00YT7D3VGY674BSZD1Z67CNYAR",
        "bibtex": "@misc{iea2023solar7cnyar,\n  author       = {{International Energy Agency}},\n  title        = {Executive Summary – World Energy Outlook 2024},\n  year         = {2023},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_00YT7D3VGY674BSZD1Z67CNYAR},\n  note         = {Original source: https://www.iea.org/reports/world-energy-outlook-2024/executive-summary. Accessed September 16, 2026.}\n}"
      },
      "updated_at": "2026-09-17T01:20:19.839Z"
    },
    {
      "id": "stat_EANQG8X8WJZAPHDD0SADA5N19V",
      "url": "https://statorigin.org/stat/stat_EANQG8X8WJZAPHDD0SADA5N19V",
      "indicator": {
        "slug": "annual-wind-turbine-capacity-installed-by-envision",
        "name": "Annual wind turbine capacity installed by Envision",
        "definition": "Wind turbine capacity installed by manufacturer Envision in a year."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
          "isic": "D35",
          "is_primary": true
        }
      ],
      "region": {
        "code": "GLOBAL",
        "name": "Global",
        "type": "world"
      },
      "period": {
        "start": "2025-01-01",
        "end": "2025-12-31",
        "type": "year"
      },
      "value": 21.8,
      "value_text": "21.8 GW",
      "unit": "GW",
      "currency": null,
      "scale": "1",
      "value_type": "actual",
      "source": {
        "org": "Global Wind Energy Council",
        "org_short_name": "GWEC",
        "org_url": "https://www.gwec.net",
        "org_tier": 2,
        "document_title": "GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW",
        "document_url": "https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw",
        "document_type": "press_release",
        "locator": "Top five turbine suppliers by capacity installed",
        "quote": "Goldwind (29.7 GW) installed the highest volume last year, followed by Envision (21.8 GW), Windey (19.8 GW), Mingyang (18.6 GW) and SANY (15.1 GW).",
        "published_date": null,
        "accessed_at": "2026-09-16",
        "license": "see-source",
        "url_status": "ok"
      },
      "verification": "verified",
      "verified_by": "seed:auto-extract-v1",
      "verified_at": "2026-09-17T01:20:19.839Z",
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      "is_secondhand": false,
      "supersedes": null,
      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "Global Wind Energy Council. (2025). GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW. Retrieved September 16, 2026, from https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw. Via StatOrigin, https://statorigin.org/stat/stat_EANQG8X8WJZAPHDD0SADA5N19V",
        "bibtex": "@misc{gwec2025winda5n19v,\n  author       = {{Global Wind Energy Council}},\n  title        = {GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_EANQG8X8WJZAPHDD0SADA5N19V},\n  note         = {Original source: https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw. Accessed September 16, 2026.}\n}"
      },
      "updated_at": "2026-09-17T01:20:19.839Z"
    },
    {
      "id": "stat_9W1W7N654E7TXPGB158T4TV9ED",
      "url": "https://statorigin.org/stat/stat_9W1W7N654E7TXPGB158T4TV9ED",
      "indicator": {
        "slug": "annual-wind-turbine-capacity-installed-by-goldwind",
        "name": "Annual wind turbine capacity installed by Goldwind",
        "definition": "Wind turbine capacity installed by manufacturer Goldwind in a year."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
          "isic": "D35",
          "is_primary": true
        }
      ],
      "region": {
        "code": "GLOBAL",
        "name": "Global",
        "type": "world"
      },
      "period": {
        "start": "2025-01-01",
        "end": "2025-12-31",
        "type": "year"
      },
      "value": 29.7,
      "value_text": "29.7 GW",
      "unit": "GW",
      "currency": null,
      "scale": "1",
      "value_type": "actual",
      "source": {
        "org": "Global Wind Energy Council",
        "org_short_name": "GWEC",
        "org_url": "https://www.gwec.net",
        "org_tier": 2,
        "document_title": "GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW",
        "document_url": "https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw",
        "document_type": "press_release",
        "locator": "Top five turbine suppliers by capacity installed",
        "quote": "Goldwind (29.7 GW) installed the highest volume last year, followed by Envision (21.8 GW), Windey (19.8 GW), Mingyang (18.6 GW) and SANY (15.1 GW).",
        "published_date": null,
        "accessed_at": "2026-09-16",
        "license": "see-source",
        "url_status": "ok"
      },
      "verification": "verified",
      "verified_by": "seed:auto-extract-v1",
      "verified_at": "2026-09-17T01:20:19.839Z",
      "confidence": 0.9,
      "is_secondhand": false,
      "supersedes": null,
      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "Global Wind Energy Council. (2025). GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW. Retrieved September 16, 2026, from https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw. Via StatOrigin, https://statorigin.org/stat/stat_9W1W7N654E7TXPGB158T4TV9ED",
        "bibtex": "@misc{gwec2025wind4tv9ed,\n  author       = {{Global Wind Energy Council}},\n  title        = {GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_9W1W7N654E7TXPGB158T4TV9ED},\n  note         = {Original source: https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw. Accessed September 16, 2026.}\n}"
      },
      "updated_at": "2026-09-17T01:20:19.839Z"
    },
    {
      "id": "stat_ZYNKKF0G7JRVKE4ZMJKRQ359E1",
      "url": "https://statorigin.org/stat/stat_ZYNKKF0G7JRVKE4ZMJKRQ359E1",
      "indicator": {
        "slug": "annual-wind-turbine-capacity-installed-by-mingyang",
        "name": "Annual wind turbine capacity installed by Mingyang",
        "definition": "Wind turbine capacity installed by manufacturer Mingyang in a year."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
          "isic": "D35",
          "is_primary": true
        }
      ],
      "region": {
        "code": "GLOBAL",
        "name": "Global",
        "type": "world"
      },
      "period": {
        "start": "2025-01-01",
        "end": "2025-12-31",
        "type": "year"
      },
      "value": 18.6,
      "value_text": "18.6 GW",
      "unit": "GW",
      "currency": null,
      "scale": "1",
      "value_type": "actual",
      "source": {
        "org": "Global Wind Energy Council",
        "org_short_name": "GWEC",
        "org_url": "https://www.gwec.net",
        "org_tier": 2,
        "document_title": "GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW",
        "document_url": "https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw",
        "document_type": "press_release",
        "locator": "Top five turbine suppliers by capacity installed",
        "quote": "Goldwind (29.7 GW) installed the highest volume last year, followed by Envision (21.8 GW), Windey (19.8 GW), Mingyang (18.6 GW) and SANY (15.1 GW).",
        "published_date": null,
        "accessed_at": "2026-09-16",
        "license": "see-source",
        "url_status": "ok"
      },
      "verification": "verified",
      "verified_by": "seed:auto-extract-v1",
      "verified_at": "2026-09-17T01:20:19.839Z",
      "confidence": 0.9,
      "is_secondhand": false,
      "supersedes": null,
      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "Global Wind Energy Council. (2025). GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW. Retrieved September 16, 2026, from https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw. Via StatOrigin, https://statorigin.org/stat/stat_ZYNKKF0G7JRVKE4ZMJKRQ359E1",
        "bibtex": "@misc{gwec2025windq359e1,\n  author       = {{Global Wind Energy Council}},\n  title        = {GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_ZYNKKF0G7JRVKE4ZMJKRQ359E1},\n  note         = {Original source: https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw. Accessed September 16, 2026.}\n}"
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        "name": "Annual wind turbine capacity installed by SANY",
        "definition": "Wind turbine capacity installed by manufacturer SANY in a year."
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        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
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        }
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        "code": "GLOBAL",
        "name": "Global",
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      },
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        "start": "2025-01-01",
        "end": "2025-12-31",
        "type": "year"
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      "currency": null,
      "scale": "1",
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        "bibtex": "@misc{gwec2025wind1sn2tw,\n  author       = {{Global Wind Energy Council}},\n  title        = {GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_R1F89CH0YY216P3613PB1SN2TW},\n  note         = {Original source: https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw. Accessed September 16, 2026.}\n}"
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      "id": "stat_YN67T2T6SGYGC7T5VKBFCP6RJR",
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        "slug": "annual-wind-turbine-capacity-installed-by-windey",
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        "definition": "Wind turbine capacity installed by manufacturer Windey in a year."
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        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
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        "name": "Global",
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      },
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        "start": "2025-01-01",
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        "type": "year"
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        "org": "Global Wind Energy Council",
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        "document_title": "GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW",
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        "quote": "Goldwind (29.7 GW) installed the highest volume last year, followed by Envision (21.8 GW), Windey (19.8 GW), Mingyang (18.6 GW) and SANY (15.1 GW).",
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        "accessed_at": "2026-09-16",
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        "url_status": "ok"
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      "verified_at": "2026-09-17T01:20:19.839Z",
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      "is_secondhand": false,
      "supersedes": null,
      "superseded_by": null,
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        "apa": "Global Wind Energy Council. (2025). GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW. Retrieved September 16, 2026, from https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw. Via StatOrigin, https://statorigin.org/stat/stat_YN67T2T6SGYGC7T5VKBFCP6RJR",
        "bibtex": "@misc{gwec2025windcp6rjr,\n  author       = {{Global Wind Energy Council}},\n  title        = {GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_YN67T2T6SGYGC7T5VKBFCP6RJR},\n  note         = {Original source: https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw. Accessed September 16, 2026.}\n}"
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        "slug": "auctioned-renewable-capacity-growth-rate",
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      },
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        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
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      "scale": "1",
      "value_type": "actual",
      "source": {
        "org": "International Energy Agency",
        "org_short_name": "IEA",
        "org_url": "https://www.iea.org",
        "org_tier": 1,
        "document_title": "Renewables 2020",
        "document_url": "https://www.iea.org/reports/renewables-2020",
        "document_type": "press_release",
        "locator": "Renewables’ resilience is driven by the electricity sector",
        "quote": "From January to October 2020, auctioned renewable capacity was 15% higher than for the same period last year, a new record.",
        "published_date": null,
        "accessed_at": "2026-09-16",
        "license": "see-source",
        "url_status": "ok"
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      "verified_at": "2026-09-17T01:20:19.839Z",
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      "is_secondhand": false,
      "supersedes": null,
      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "International Energy Agency. (2020). Renewables 2020. Retrieved September 16, 2026, from https://www.iea.org/reports/renewables-2020. Via StatOrigin, https://statorigin.org/stat/stat_78PDM0C6EXN3ZNGZY5SVERGPQ4",
        "bibtex": "@misc{iea2020auctionedergpq4,\n  author       = {{International Energy Agency}},\n  title        = {Renewables 2020},\n  year         = {2020},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_78PDM0C6EXN3ZNGZY5SVERGPQ4},\n  note         = {Original source: https://www.iea.org/reports/renewables-2020. Accessed September 16, 2026.}\n}"
      },
      "updated_at": "2026-09-17T01:20:19.839Z"
    },
    {
      "id": "stat_EJ7MMYVCBNJ31KCCQPV4WC72ZF",
      "url": "https://statorigin.org/stat/stat_EJ7MMYVCBNJ31KCCQPV4WC72ZF",
      "indicator": {
        "slug": "auctions-and-green-certificate-schemes-coverage-of-capacity-expansion",
        "name": "Auctions and green certificate schemes coverage of capacity expansion",
        "definition": "Share of renewable capacity expansion covered by auctions and green certificate schemes."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
          "isic": "D35",
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        "code": "GLOBAL",
        "name": "Global",
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      },
      "period": {
        "start": "2020-01-01",
        "end": "2025-12-31",
        "type": "point"
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      "value": 60,
      "value_text": "60%",
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      "currency": null,
      "scale": "1",
      "value_type": "forecast",
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        "org": "International Energy Agency",
        "org_short_name": "IEA",
        "org_url": "https://www.iea.org",
        "org_tier": 1,
        "document_title": "Renewables 2020",
        "document_url": "https://www.iea.org/reports/renewables-2020",
        "document_type": "press_release",
        "locator": "Renewables are set to lead the global electricity sector",
        "quote": "Auctions and green certificate schemes are forecast to cover 60% of renewable capacity expansion globally over the next five years.",
        "published_date": null,
        "accessed_at": "2026-09-16",
        "license": "see-source",
        "url_status": "ok"
      },
      "verification": "verified",
      "verified_by": "seed:auto-extract-v1",
      "verified_at": "2026-09-17T01:20:19.839Z",
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      "is_secondhand": false,
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      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "International Energy Agency. (2025). Renewables 2020. Retrieved September 16, 2026, from https://www.iea.org/reports/renewables-2020. Via StatOrigin, https://statorigin.org/stat/stat_EJ7MMYVCBNJ31KCCQPV4WC72ZF",
        "bibtex": "@misc{iea2025auctionswc72zf,\n  author       = {{International Energy Agency}},\n  title        = {Renewables 2020},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_EJ7MMYVCBNJ31KCCQPV4WC72ZF},\n  note         = {Original source: https://www.iea.org/reports/renewables-2020. Accessed September 16, 2026.}\n}"
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    },
    {
      "id": "stat_01M2KJ7XC3BMVT0FP162MBJPVF",
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        "slug": "average-annual-electricity-demand-growth",
        "name": "Average annual electricity demand growth",
        "definition": "Compound or compound-equivalent average annual percentage change in total electricity demand across a multi-year period."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
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          "is_primary": true
        }
      ],
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        "code": "GLOBAL",
        "name": "Global",
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      },
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        "start": "2025-01-01",
        "end": "2027-12-31",
        "type": "year"
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      "value_text": "3.9%",
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      "currency": null,
      "scale": "1",
      "value_type": "forecast",
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        "org": "International Energy Agency",
        "org_short_name": "IEA",
        "org_url": "https://www.iea.org",
        "org_tier": 1,
        "document_title": "Emissions",
        "document_url": "https://www.iea.org/reports/electricity-2025/emissions",
        "document_type": "press_release",
        "locator": "Clean energy mitigates CO2 power emissions in 2025-2027",
        "quote": "In our 2025-2027 outlook period, global CO₂ emissions from the power sector are expected to stay relatively flat (-0.1%), due to substantial growth in clean energy sources, even as demand is forecast to grow by an annual average of 3.9%.",
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        "accessed_at": "2026-09-15",
        "license": "see-source",
        "url_status": "ok"
      },
      "verification": "verified",
      "verified_by": "seed:auto-extract-v1",
      "verified_at": "2026-09-15T22:15:46.809Z",
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      "is_secondhand": false,
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      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "International Energy Agency. (2027). Emissions. Retrieved September 15, 2026, from https://www.iea.org/reports/electricity-2025/emissions. Via StatOrigin, https://statorigin.org/stat/stat_01M2KJ7XC3BMVT0FP162MBJPVF",
        "bibtex": "@misc{iea2027averagembjpvf,\n  author       = {{International Energy Agency}},\n  title        = {Emissions},\n  year         = {2027},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC3BMVT0FP162MBJPVF},\n  note         = {Original source: https://www.iea.org/reports/electricity-2025/emissions. Accessed September 15, 2026.}\n}"
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      "updated_at": "2026-09-15T22:15:46.809Z"
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      "id": "stat_01M2KJ7XC3BMVT0FP162MBJPN2",
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        "slug": "average-annual-electricity-demand-growth",
        "name": "Average annual electricity demand growth",
        "definition": "Compound or compound-equivalent average annual percentage change in total electricity demand across a multi-year period."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
          "isic": "D35",
          "is_primary": true
        }
      ],
      "region": {
        "code": "GLOBAL",
        "name": "Global",
        "type": "world"
      },
      "period": {
        "start": "2015-01-01",
        "end": "2023-12-31",
        "type": "year"
      },
      "value": 2.6,
      "value_text": "2.6%",
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      "currency": null,
      "scale": "1",
      "value_type": "actual",
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        "org": "International Energy Agency",
        "org_short_name": "IEA",
        "org_url": "https://www.iea.org",
        "org_tier": 1,
        "document_title": "Executive summary – Electricity Mid-Year Update 2025",
        "document_url": "https://www.iea.org/reports/electricity-mid-year-update-2025/executive-summary",
        "document_type": "press_release",
        "locator": "Global electricity demand on course to expand robustly in 2025 and 2026 despite economic headwinds",
        "quote": "While slower than the 4.4% surge in 2024, growth forecasts of 3.3% for 2025 and 3.7% for 2026 remain among the highest rates observed in the past decade and well above the 2015-2023 average of 2.6%.",
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        "accessed_at": "2026-09-15",
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        "url_status": "ok"
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      "verification": "verified",
      "verified_by": "seed:auto-extract-v1",
      "verified_at": "2026-09-15T22:15:46.809Z",
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      "is_secondhand": false,
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      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "International Energy Agency. (2023). Executive summary – Electricity Mid-Year Update 2025. Retrieved September 15, 2026, from https://www.iea.org/reports/electricity-mid-year-update-2025/executive-summary. Via StatOrigin, https://statorigin.org/stat/stat_01M2KJ7XC3BMVT0FP162MBJPN2",
        "bibtex": "@misc{iea2023averagembjpn2,\n  author       = {{International Energy Agency}},\n  title        = {Executive summary – Electricity Mid-Year Update 2025},\n  year         = {2023},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC3BMVT0FP162MBJPN2},\n  note         = {Original source: https://www.iea.org/reports/electricity-mid-year-update-2025/executive-summary. Accessed September 15, 2026.}\n}"
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      "updated_at": "2026-09-15T22:15:46.809Z"
    },
    {
      "id": "stat_01M2KJ7XC42G6MK2ANJH18YFC7",
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      "indicator": {
        "slug": "average-daily-electricity-generation",
        "name": "Average daily electricity generation",
        "definition": "The average volume of electric power generated per day during the period."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
          "isic": "D35",
          "is_primary": true
        }
      ],
      "region": {
        "code": "CN",
        "name": "China",
        "type": "country"
      },
      "period": {
        "start": "2026-07-01",
        "end": "2026-07-31",
        "type": "month"
      },
      "value": 30.45,
      "value_text": "30.45 billion kWh",
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      "currency": null,
      "scale": "billion",
      "value_type": "actual",
      "source": {
        "org": "National Bureau of Statistics of China",
        "org_short_name": "NBS China",
        "org_url": "https://www.stats.gov.cn",
        "org_tier": 1,
        "document_title": "Energy Production in July 2026",
        "document_url": "https://www.stats.gov.cn/english/PressRelease/202608/t20260819_1965079.html",
        "document_type": "press_release",
        "locator": "II. Electricity Generation",
        "quote": "In July, electricity generation by industrial enterprises above the designated size was 943.9 billion kWh, down slightly by 0.1%; the average daily electricity generation was 30.45 billion kWh.",
        "published_date": null,
        "accessed_at": "2026-09-15",
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      "is_secondhand": false,
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      "superseded_by": null,
      "is_current": true,
      "citation": {
        "apa": "National Bureau of Statistics of China. (2026). Energy Production in July 2026. Retrieved September 15, 2026, from https://www.stats.gov.cn/english/PressRelease/202608/t20260819_1965079.html. Via StatOrigin, https://statorigin.org/stat/stat_01M2KJ7XC42G6MK2ANJH18YFC7",
        "bibtex": "@misc{nbschina2026average18yfc7,\n  author       = {{National Bureau of Statistics of China}},\n  title        = {Energy Production in July 2026},\n  year         = {2026},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC42G6MK2ANJH18YFC7},\n  note         = {Original source: https://www.stats.gov.cn/english/PressRelease/202608/t20260819\\_1965079.html. Accessed September 15, 2026.}\n}"
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      "updated_at": "2026-09-15T22:15:46.809Z"
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      "indicator": {
        "slug": "average-electricity-interruption-duration-per-customer",
        "name": "Average electricity interruption duration per customer",
        "definition": "Average hours per year that electricity customers experience non-momentary power interruptions (SAIDI)."
      },
      "industry": [
        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
          "isic": "D35",
          "is_primary": true
        }
      ],
      "region": {
        "code": "US",
        "name": "United States",
        "type": "country"
      },
      "period": {
        "start": "2024-01-01",
        "end": "2024-12-31",
        "type": "year"
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      "unit": "hours",
      "currency": null,
      "scale": "1",
      "value_type": "actual",
      "source": {
        "org": "U.S. Energy Information Administration",
        "org_short_name": "EIA",
        "org_url": "https://www.eia.gov",
        "org_tier": 1,
        "document_title": "Hurricanes in 2024 led to the most hours without power in the United States in 10 years",
        "document_url": "https://www.eia.gov/todayinenergy/detail.php?id=66744",
        "document_type": "press_release",
        "locator": "Hurricanes in 2024 led to the most hours without power in the United States in 10 years",
        "quote": "U.S. electricity customers experienced an average of 11 hours of electricity interruptions in 2024, or nearly twice as many as the annual average experienced in the decade before, according to our Electric Power Annual 2024 report.",
        "published_date": null,
        "accessed_at": "2026-09-15",
        "license": "see-source",
        "url_status": "ok"
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        "bibtex": "@misc{eia2024averagembjpvk,\n  author       = {{U.S. Energy Information Administration}},\n  title        = {Hurricanes in 2024 led to the most hours without power in the United States in 10 years},\n  year         = {2024},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC3BMVT0FP162MBJPVK},\n  note         = {Original source: https://www.eia.gov/todayinenergy/detail.php?id=66744. Accessed September 15, 2026.}\n}"
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          "slug": "utilities",
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        "code": "US",
        "name": "United States",
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        "start": "2024-01-01",
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        "bibtex": "@misc{eia2024averagembjpvt,\n  author       = {{U.S. Energy Information Administration}},\n  title        = {Hurricanes in 2024 led to the most hours without power in the United States in 10 years},\n  year         = {2024},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC3BMVT0FP162MBJPVT},\n  note         = {Original source: https://www.eia.gov/todayinenergy/detail.php?id=66744. Accessed September 15, 2026.}\n}"
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        "slug": "average-hourly-electricity-load",
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      "scale": "1",
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        "bibtex": "@misc{eia2026average18yfaj,\n  author       = {{U.S. Energy Information Administration}},\n  title        = {Weekly average load in ERCOT continues near record high},\n  year         = {2026},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC42G6MK2ANJH18YFAJ},\n  note         = {Original source: https://www.eia.gov/todayinenergy/detail.php?id=68084. Accessed September 15, 2026.}\n}"
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        "slug": "average-hourly-electricity-load",
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          "slug": "utilities",
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        "slug": "average-negative-wholesale-electricity-price",
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        "definition": "The arithmetic average of wholesale electricity prices during intervals when the price is below zero."
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        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
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        "org": "International Energy Agency",
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        "url_status": "ok"
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        {
          "slug": "utilities",
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        }
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        "code": "FI",
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        "start": "2024-01-01",
        "end": "2024-12-31",
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        "slug": "average-offshore-wind-turbine-size",
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        {
          "slug": "utilities",
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        }
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        "name": "Global",
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        "start": "2025-01-01",
        "end": "2025-12-31",
        "type": "year"
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      "scale": "1",
      "value_type": "actual",
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        "accessed_at": "2026-09-16",
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      "superseded_by": null,
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        "bibtex": "@misc{gwec2025averagenqpynv,\n  author       = {{Global Wind Energy Council}},\n  title        = {GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_RVF9BG7TG936HXKJDMJ8NQPYNV},\n  note         = {Original source: https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw. Accessed September 16, 2026.}\n}"
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      "id": "stat_418A870A2MCRXW0729R4FHP6E6",
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        {
          "slug": "utilities",
          "name": "Electricity, gas, steam and air conditioning supply",
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        }
      ],
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        "start": "2025-01-01",
        "end": "2025-12-31",
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        "bibtex": "@misc{gwec2025averagefhp6e6,\n  author       = {{Global Wind Energy Council}},\n  title        = {GWEC records sharp rise in wind turbine installations, as five OEMs exceed 100 GW},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_418A870A2MCRXW0729R4FHP6E6},\n  note         = {Original source: https://www.gwec.net/news/gwec-records-sharp-rise-in-wind-turbine-installations-as-five-oems-exceed-100-gw. Accessed September 16, 2026.}\n}"
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          "slug": "utilities",
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        "apa": "International Energy Agency. (2025). Prices: Trends in wholesale markets differ across regions – Electricity Mid-Year Update 2025. Retrieved September 15, 2026, from https://www.iea.org/reports/electricity-mid-year-update-2025/prices-trends-in-wholesale-markets-differ-across-regions. Via StatOrigin, https://statorigin.org/stat/stat_01M2KJ7XC3BMVT0FP162MBJPRS",
        "bibtex": "@misc{iea2025averagembjprs,\n  author       = {{International Energy Agency}},\n  title        = {Prices: Trends in wholesale markets differ across regions – Electricity Mid-Year Update 2025},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC3BMVT0FP162MBJPRS},\n  note         = {Original source: https://www.iea.org/reports/electricity-mid-year-update-2025/prices-trends-in-wholesale-markets-differ-across-regions. Accessed September 15, 2026.}\n}"
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      "id": "stat_01M2KJ7XC3BMVT0FP162MBJPSD",
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        {
          "slug": "utilities",
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        "org": "International Energy Agency",
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        "bibtex": "@misc{iea2025averagembjpsd,\n  author       = {{International Energy Agency}},\n  title        = {Prices: Trends in wholesale markets differ across regions – Electricity Mid-Year Update 2025},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC3BMVT0FP162MBJPSD},\n  note         = {Original source: https://www.iea.org/reports/electricity-mid-year-update-2025/prices-trends-in-wholesale-markets-differ-across-regions. Accessed September 15, 2026.}\n}"
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      "id": "stat_01M2KJ7XC3BMVT0FP162MBJPS2",
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        {
          "slug": "utilities",
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      ],
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        "start": "2025-01-01",
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        "locator": "Prices: Trends in wholesale markets differ across regions",
        "quote": "In France, average wholesale electricity prices rose around 45% y-o-y in H1 2025 to USD 73/MWh.",
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        "accessed_at": "2026-09-15",
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        "bibtex": "@misc{iea2025averagembjps2,\n  author       = {{International Energy Agency}},\n  title        = {Prices: Trends in wholesale markets differ across regions – Electricity Mid-Year Update 2025},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC3BMVT0FP162MBJPS2},\n  note         = {Original source: https://www.iea.org/reports/electricity-mid-year-update-2025/prices-trends-in-wholesale-markets-differ-across-regions. Accessed September 15, 2026.}\n}"
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        {
          "slug": "utilities",
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        "quote": "Germany saw an increase in wholesale electricity prices in H1 2025 (+37%), with average prices slightly below USD 100/MWh.",
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        "bibtex": "@misc{iea2025averagembjps0,\n  author       = {{International Energy Agency}},\n  title        = {Prices: Trends in wholesale markets differ across regions – Electricity Mid-Year Update 2025},\n  year         = {2025},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_01M2KJ7XC3BMVT0FP162MBJPS0},\n  note         = {Original source: https://www.iea.org/reports/electricity-mid-year-update-2025/prices-trends-in-wholesale-markets-differ-across-regions. Accessed September 15, 2026.}\n}"
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        "start": "2025-01-01",
        "end": "2025-06-30",
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        "quote": "In India, electricity prices fell by about 15% y-o-y in the first half of 2025, averaging USD 51/MWh.",
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        "accessed_at": "2026-09-15",
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          "slug": "utilities",
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        "start": "2025-01-01",
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        "quote": "In Japan, wholesale electricity prices were up by about 15% y-o-y in H1 2025, averaging USD 76/MWh.",
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        "accessed_at": "2026-09-15",
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        {
          "slug": "utilities",
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        "name": "United Kingdom",
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        "end": "2025-06-30",
        "type": "point"
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        {
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        "bibtex": "@misc{iea2015batterykfa0ym,\n  author       = {{International Energy Agency}},\n  title        = {Context and scenario design – World Energy Outlook 2024},\n  year         = {2015},\n  howpublished = {StatOrigin, https://statorigin.org},\n  url          = {https://statorigin.org/stat/stat_MXMRHHAAA8BVK814YHQ8KFA0YM},\n  note         = {Original source: https://www.iea.org/reports/world-energy-outlook-2024/context-and-scenario-design. Accessed September 16, 2026.}\n}"
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