{
  "slug": "wildfire-death",
  "question": "What are the odds of being killed by a wildfire?",
  "quick_answer": "Direct wildfire death, the wall-of-flame version people picture, runs about 1 in 100,000 over a global lifetime. But wildfire-smoke death is roughly 100x larger, near 1 in 400, and is the real mortality story almost nobody fears.\n",
  "category": "natural",
  "no_reliable_estimate": false,
  "perceived": {
    "description": "Fear of wildfire is strongly geographic and strongly episodic. No widely cited national survey isolates \"fear of being killed by a wildfire\" from general natural-disaster or climate anxiety, so we mark the perceived side as editorial intuition. Anecdotally, the prior is shaped almost entirely by the last headline event the reader lived near or watched — Paradise, California in 2018; the Australian Black Summer of 2019-2020; Lahaina on Maui in 2023; the Los Angeles county fires of January 2025 — and reverts to roughly zero in the years between. Residents of the Western US Wildland-Urban Interface and of fire-prone parts of Mediterranean Europe and Australia carry a persistent prior; almost everyone else treats wildfire as televised rather than real, and almost nobody of any geography has an explicit prior for the much larger smoke-mortality burden downwind.\n",
    "rough_estimate": "33.1% of US adults report being afraid or very afraid of a devastating wildfire (Chapman Survey 2024)",
    "kind": "survey",
    "survey_source": {
      "title": "Chapman University Survey of American Fears, Wave 10 — Complete List of Fears 2024",
      "publisher": "Chapman University",
      "url": "https://www.chapman.edu/wilkinson/research-centers/babbie-center/_files/2024-csaf-fears-high-to-low.pdf",
      "year": 2024
    }
  },
  "native": {
    "display": "~1 in 100,000 global adult lifetime (direct wildfire death)",
    "numerator": 800,
    "denominator": 8000000000,
    "unit": "per year",
    "population": "global"
  },
  "normalized": {
    "lifetime_us_adult": 0.00001,
    "display": "1 in ~100,000 lifetime (global adult, direct wildfire death)",
    "log_value": -5,
    "assumptions": "The headline is DIRECT wildfire deaths — people killed by the fire itself (burns, entrapment during evacuation, structure collapse, heat). A separate and much larger number, wildfire-smoke mortality, is called out prominently in the body and regional_breakdown below. In normal US years civilian direct wildfire deaths are in the 5-20 range, spiking hard in megafire years: Camp Fire 2018 killed 85 people in Paradise, California; the 2023 Lahaina fire on Maui killed ~100; the January 2025 Eaton and Palisades fires killed 18 and 12 respectively. Australia's 2019-2020 Black Summer killed ~33 people directly plus several hundred more from smoke exposure. Globally, including Mediterranean Europe, Indonesia peat fires, and boreal Russia/Canada, a rough long-run direct-death anchor is a few hundred to ~1,000 per year. Using ~800/yr globally and a population of ~8 billion gives ~1e-7 per year; compounded over 60 adult years ≈ 6e-6, rounded upward to 1e-5 ≈ 1 in 100,000 to reflect the rising trend in WUI exposure in the US West and boreal forests since ~2000. This is a small number, and it is the wrong number for anyone who wants to know their actual lifetime wildfire risk — see regional_breakdown and the smoke paragraph in the body.\n",
    "uncertainty": {
      "low": 0.000003,
      "high": 0.00003
    },
    "scope": "global_adult_lifetime"
  },
  "sources": [
    {
      "url": "https://www.nifc.gov/fire-information/statistics/wildfires",
      "title": "Wildfires — Statistics",
      "publisher": "National Interagency Fire Center (NIFC)",
      "source_type": "govt_report",
      "statistic": "US wildfire totals by year: 2020 = 58,950 fires / 10,122,336 acres (highest on record); 2024 = 64,897 fires / 8,924,884 acres; 2023 = 56,580 fires / 2,693,910 acres; 2025 = 77,850 fires / 5,131,474 acres",
      "excerpt": "\"2025: 77,850 fires; 5,131,474 acres burned. 2024: 64,897 fires; 8,924,884 acres burned. 2023: 56,580 fires; 2,693,910 acres burned. ... Prior to 1983, the federal wildland fire agencies did not track official wildfire data using current reporting processes.\"\n",
      "source_date": "2026-01-01",
      "source_accessed": "2026-04-11",
      "archive_url": "http://web.archive.org/web/20260411191535/https://www.nifc.gov/fire-information/statistics/wildfires",
      "calculation_notes": "NIFC publishes annual US fire counts and acreage but not civilian fatality tolls — those are compiled downstream by the Insurance Information Institute and by NFPA from NWCG / state fire marshal reports. We use NIFC as the authoritative anchor for fire activity and as the upstream source for the \"fire activity is rising\" framing in the body (2020 and 2024 are the two largest US acreage years ever recorded). Fatality anchoring comes from the Insurance Information Institute tabulation cited below, which in turn draws on NIFC, NWCG, and state-level fire-marshal records.\n",
      "independence_note": "NIFC is the upstream source for most US wildfire activity data; the III table cited below republishes it with added fatality commentary. Treat as a single authoritative chain for activity data, but independent on fatality attribution because III pulls event death tolls from state fire marshals rather than NIFC.\n"
    },
    {
      "url": "https://pubmed.ncbi.nlm.nih.gov/22456494/",
      "title": "Estimated global mortality attributable to smoke from landscape fires",
      "publisher": "Johnston FH et al., Environmental Health Perspectives (NIH/NIEHS), 2012",
      "source_type": "peer_reviewed",
      "statistic": "Estimated average global mortality attributable to landscape fire smoke (1997-2006): 339,000 deaths per year (interquartile range 260,000-600,000); highest regional burdens in sub-Saharan Africa (157,000) and Southeast Asia (110,000)",
      "excerpt": "\"Our principal estimate for the average mortality attributable to LFS exposure was 339,000 deaths annually. In sensitivity analyses the interquartile range of all tested estimates was 260,000-600,000.\"\n",
      "source_date": "2012-05-01",
      "source_accessed": "2026-04-11",
      "archive_url": "http://web.archive.org/web/20260523092329/https://pubmed.ncbi.nlm.nih.gov/22456494/",
      "calculation_notes": "Johnston's 339,000 deaths/year is the canonical peer-reviewed estimate for global wildfire-smoke mortality. 339,000 / 8,000,000,000 ≈ 4.24e-5 per year; compounded over 60 adult years ≈ 2.54e-3 ≈ 1 in ~390, which appears in regional_breakdown as \"Wildfire smoke-attributable death (global)\" at 0.0025. The headline normalized figure is INTENTIONALLY the much smaller direct-fire number because that is the hazard readers actually fear; the smoke number is ~100x larger, represents a different cognitive frame (chronic PM2.5 exposure vs burning-to-death), and is the central finding of the body text. Both numbers are real; the site's editorial choice is to lead with the one readers ask about and then immediately show the one they don't.\n",
      "independence_note": "Johnston 2012 is a primary peer-reviewed estimate from the NIEHS/EHP literature. Fully independent of NIFC, which does not publish smoke-mortality figures at all.\n"
    },
    {
      "url": "https://www.iii.org/fact-statistic/facts-statistics-wildfires",
      "title": "Facts + Statistics: Wildfires",
      "publisher": "Insurance Information Institute (data sourced from NIFC / NFPA / state fire marshals)",
      "source_type": "reputable_reference",
      "statistic": "Camp Fire (November 2018): 85 deaths, deadliest California wildfire on record; 2024 US wildfire activity: 64,897 fires / 8,924,884 acres; Eaton Fire (January 2025): 18 deaths; Palisades Fire (January 2025): 12 deaths",
      "excerpt": "\"The Camp Fire (November 2018) resulted in 85 deaths, making it the deadliest California wildfire on record. ... The Eaton Fire (January 2025) resulted in 18 deaths, and the Palisades Fire (January 2025) caused 12 deaths.\"\n",
      "source_date": "2025-12-01",
      "source_accessed": "2026-04-11",
      "archive_url": "http://web.archive.org/web/20260324081914/https://www.iii.org/fact-statistic/facts-statistics-wildfires",
      "calculation_notes": "Used as the event-level anchor for direct-death tolls in the body and in regional_breakdown. The III table is the cleanest single tabulation of modern US megafire death tolls we can cite without paywalls; individual event numbers are corroborated by Cal Fire, the Maui County medical examiner, and contemporary NFPA investigations.\n",
      "independence_note": "III republishes NIFC data for activity counts. Event-level death tolls (Camp, Lahaina, Eaton, Palisades) come from state fire marshals and county coroners, so on fatality attribution the two sources are methodologically distinct.\n"
    },
    {
      "url": "https://www.pnas.org/doi/10.1073/pnas.2403960121",
      "title": "Long-term exposure to wildland fire smoke PM2.5 and mortality in the contiguous United States",
      "publisher": "Ma Y et al. (Yale School of Public Health), Proceedings of the National Academy of Sciences (PNAS), 2024",
      "source_type": "peer_reviewed",
      "statistic": "Long-term exposure to wildland fire smoke PM2.5 contributed to ~11,415 non-accidental deaths/year (95% CI 6,754-16,075) in the contiguous US, 2007-2020, of which ~4,512/year (95% CI 1,922-7,102) were cardiovascular; excess mortality was concentrated in adults aged 65+ (7.08 deaths per 100,000/month vs 0.55 for ages 0-64 in the highest 5+ µg/m³ smoke-PM2.5 bin)",
      "excerpt": "\"approximately 11,415 non-accidental deaths (95% CI: 6,754, 16,075) were attributable to smoke PM2.5 in the contiguous U.S. per year ... approximately 4,512 deaths (95% CI: 1,922, 7,102) from cardiovascular diseases ... greater increases in mortality rates were observed among people who aged above 65 across all smoke PM2.5 concentration bins.\"\n",
      "source_date": "2024-09-24",
      "source_accessed": "2026-06-14",
      "archive_url": "http://web.archive.org/web/20250803191301/https://www.pnas.org/doi/10.1073/pnas.2403960121",
      "calculation_notes": "Ma et al. 2024 is the modern US-specific replacement for the older global Johnston 2012 anchor on smoke mortality. 11,415 non-accidental deaths/year across a contiguous-US adult population of ~258 million ≈ 4.42e-5 per year; compounded over 59 adult years ≈ 2.6e-3 ≈ 1 in ~385, which corroborates (rather than revises) the global \"smoke-attributable\" row in regional_breakdown at 0.0025. The headline normalized figure is INTENTIONALLY the much smaller DIRECT-fire number; this source modernizes and US-localizes the smoke-mortality counterpoint that is the central finding of the body text. The age-65+ stratification (7.08 vs 0.55 deaths/100k/month at the highest exposure bin, a ~13x excess-rate ratio) is the source for the new \"age 65+ (smoke exposure)\" personal_factor_multiplier.\n",
      "independence_note": "Ma et al. 2024 (PNAS, Yale) is an independent primary peer-reviewed US-specific estimate, methodologically distinct from Johnston 2012 (global, EHP) and from NIFC/III activity and direct-death data, which do not address smoke-attributable mortality at all.\n"
    }
  ],
  "comparison_anchors": [
    {
      "label": "Death by lightning strike (lifetime, US adult)",
      "lifetime_us_adult": 0.00000354
    },
    {
      "label": "Death by tornado (lifetime, US adult average)",
      "lifetime_us_adult": 0.0000124
    },
    {
      "label": "Death by plane crash (lifetime, US adult, regular flyer)",
      "lifetime_us_adult": 0.000017
    },
    {
      "label": "Death by earthquake (lifetime, global adult average)",
      "lifetime_us_adult": 0.000263
    },
    {
      "label": "Death by tropical cyclone (lifetime, global adult average)",
      "lifetime_us_adult": 0.000112
    },
    {
      "label": "Death in a car crash (lifetime, US)",
      "lifetime_us_adult": 0.0108
    }
  ],
  "regional_breakdown": [
    {
      "region": "Direct wildfire death (global average)",
      "probability": 0.00001,
      "notes": "Headline figure — people killed by fire itself (burns, entrapment, structure collapse)."
    },
    {
      "region": "Wildfire smoke-attributable death (global)",
      "probability": 0.0025,
      "notes": "Johnston et al. 2012 — ~339,000 deaths/year globally from landscape fire PM2.5 exposure. ~100x the direct-fire figure and the main wildfire mortality story."
    },
    {
      "region": "US smoke-attributable death (modern, 2007-2020)",
      "probability": 0.0026,
      "notes": "Ma et al. 2024 (PNAS, Yale) — ~11,415 non-accidental US deaths/year from long-term wildland-fire smoke PM2.5 (~4,512 cardiovascular). Over a 59-year adult life across ~258M US adults this is ~1 in 385, corroborating the global smoke row above. The newer US-specific anchor; Qiu et al. 2025 (Nature) project >71,000/year by 2050 under high warming."
    },
    {
      "region": "California WUI resident, direct fire",
      "probability": 0.0002,
      "notes": "Wildland-Urban Interface residents of fire-prone California face a direct-fire lifetime risk roughly an order of magnitude above the US average — driven by Paradise 2018, Tubbs 2017, Eaton and Palisades 2025."
    },
    {
      "region": "Urban/suburban smoke exposure, California 2020-2025",
      "probability": 0.005,
      "notes": "Downwind PM2.5 exposure from the 2020 August Complex, 2021 Dixie Fire, and 2025 LA county fires has produced multi-week air-quality events affecting tens of millions. Cardiopulmonary excess mortality in these windows is the dominant modern wildfire death mechanism in the US West."
    },
    {
      "region": "Indonesia peat-fire smoke (2015 El Niño event)",
      "probability": 0.003,
      "notes": "Koplitz et al. 2016 estimated ~100,000 excess deaths from the 2015 Indonesia peat fire haze across Indonesia, Malaysia, and Singapore — a single event comparable in smoke mortality to a decade of global direct wildfire deaths."
    },
    {
      "region": "Inland temperate / high-latitude cities with no wildfire exposure",
      "probability": 1e-7,
      "notes": "Essentially zero direct-fire risk; smoke exposure still non-zero during hemispheric-scale events (Canadian boreal smoke over US East Coast and Western Europe in June 2023)."
    }
  ],
  "personal_factor_multipliers": [
    {
      "factor": "Wildland-Urban Interface (WUI) residence",
      "multiplier": 20,
      "notes": "WUI residents account for a disproportionate share of US direct wildfire fatalities. The multiplier applies to direct-fire risk, not smoke exposure."
    },
    {
      "factor": "defensible space + hardened structure (ember-resistant vents, Class A roof)",
      "multiplier": 0.3,
      "notes": "Post-Camp Fire analyses and IBHS fire-performance data show hardened structures survive ember attack at substantially higher rates; applies to direct-fire risk."
    },
    {
      "factor": "pre-existing cardiopulmonary disease (smoke exposure)",
      "multiplier": 3,
      "notes": "Applies to wildfire-smoke mortality, not direct fire. PM2.5 exposure during smoke events produces large short-term increases in cardiac and respiratory event rates, concentrated in people with existing disease."
    },
    {
      "factor": "firefighter occupational exposure",
      "multiplier": 10,
      "notes": "Wildland firefighters face substantially elevated direct-fire risk during deployment seasons and elevated chronic smoke exposure over a career. The multiplier is a rough career-average anchor, not a shift-level estimate."
    },
    {
      "factor": "age 65+ (smoke exposure)",
      "multiplier": 13,
      "notes": "Applies to wildfire-smoke mortality, not direct fire. Ma et al. 2024 (PNAS, Yale) found excess smoke-PM2.5 mortality concentrated in adults 65+: 7.08 deaths per 100,000/month versus 0.55 for ages 0-64 in the highest (5+ µg/m³) smoke-PM2.5 bin — roughly a 13x excess-rate ratio. The multiplier reflects that excess-mortality ratio, not a direct-fire shift."
    }
  ],
  "short_label": "Wildfire",
  "myth_framing": "underrated",
  "outcome_severity": "fatal",
  "exposure_pattern": "acute",
  "outcome_type": "death",
  "valence": "negative",
  "caveats": "The headline \"1 in 100,000\" number only covers direct wildfire deaths — the vivid, cinematic version of the fear. It is the wrong number in two directions. It is too high for almost everyone who does not live in a Wildland-Urban Interface community on a fire-prone coast, mountainside, or boreal forest edge: a resident of downtown Chicago or central London has essentially zero direct wildfire mortality risk. And it is dramatically too low as a description of total wildfire-attributable mortality, because it excludes smoke exposure. Johnston et al. 2012 estimated ~339,000 global deaths per year from landscape fire smoke, and subsequent work on the 2015 Indonesia peat fire haze (Koplitz et al.) and on recent Western US seasons suggests the number has grown since. Smoke mortality is roughly 100x the direct-fire mortality and is concentrated in populations — urban, downwind, cardiopulmonary-compromised — that do not typically see themselves as at wildfire risk at all. The gap between how the fear is framed (a wall of flame in your neighborhood) and where the deaths actually happen (a cardiac event on day five of a PM2.5 spike 400 km downwind) is the central feature of this entry. Modern US-specific work sharpens the gap: Ma et al. 2024 (PNAS, Yale) attribute ~11,415 non-accidental US deaths per year (95% CI 6,754-16,075) to long-term wildland-fire smoke PM2.5 over 2007-2020, of which ~4,512 are cardiovascular, with the excess concentrated in adults aged 65+. Qiu et al. 2025 (Nature) project that figure could exceed 71,000 deaths per year by 2050 under a high-warming scenario — a ~73% rise over the 2011-2020 baseline. The January 2025 Los Angeles county fires are the same story in miniature: against roughly 31 direct deaths (18 Eaton + 12 Palisades + 1), the projected indirect smoke-attributable toll runs into the thousands.\n",
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    "d2": 5,
    "d3": 4,
    "d4": 5,
    "d5": 5,
    "d6": 5,
    "d7": 5,
    "d8": 5,
    "avg": 4.875,
    "scored_by": "claude-code-8d",
    "scored_at": "2026-05-25",
    "methodology_version": "1.2"
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  "reviewer": "likelier-phase-5-agent",
  "last_reviewed": "2026-06-14",
  "reviewed": true,
  "generated_at": "2026-04-11",
  "image": {
    "alt": "A single stylized ember shape rising against a muted dusty sky, rendered as a flat geometric spark, vector illustration."
  },
  "attribution": "Likelier — https://likelier.app",
  "license": "https://creativecommons.org/licenses/by-sa/4.0/",
  "support": "https://buymeacoffee.com/kgluszczyk?via=likelier&utm_content=api-fear-single",
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}