Borneo forest fires spike again: Why El Niño isn’t the sole culprit

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Forest and land fires across Indonesia have spiked once again. News and social media in the country are flooded with images of thick plumes of smoke from Kalimantan (or Borneo) — the world’s third largest island, which are choking residential areas and even drifting into neighbouring countries.It is tempting to write this off as a purely weather-driven crisis: the dry season is well underway, and a strengthening El Niño is driving temperatures towards predicted historic highs around the globe.While these conditions undoubtedly amplify the risk, the crucial question isn’t just why El Niño’s impact is so severe — it is why parts of the landscape have become so flammable in the first place. Unsurprisingly, human activities play a major role.Fires don’t start in a vacuum. Major infernos happen when dry weather meets a Bornean landscape that has lost its natural capacity to retain water due to expansions of industrial plantations such as pulpwood and oil palm — a loss that has been nearly irreversible for decades. Baca juga: People, palm oil, pulp and planet: four perspectives on Indonesia’s fire-stricken peatlands How widespread are the Kalimantan fires?Our analysis draws on data from NASA’s Fire Information for Resource Management System (FIRMS) — a satellite-based monitoring system providing near-real-time fire activity data.To track how fire activity has evolved, we analysed detection data from two satellite instruments with different spatial resolutions: MODIS (approximately 1-kilometre resolution) and VIIRS (375-metre resolution). Analysis across Kalimantan’s five provinces reveals a sharp uptick in fire activity leading into mid-August.On 18 August 2026, MODIS via FIRMS detected roughly 5,206 thermal anomaly pixels across Kalimantan. At a resolution of roughly one kilometre, the observation pixel area totals 520,600 hectares — though this figure does not reflect the actual burned area.Meanwhile, VIIRS data shows that West Kalimantan recorded the highest cumulative detections, with 82,728 active pixels at nominal-to-high confidence levels between 1 and 18 August 2026. Central Kalimantan followed with 34,105 pixels, East Kalimantan with 20,686, South Kalimantan with 16,602 and North Kalimantan with 5,157.Given the 375-metre resolution of the VIIRS sensor, these detections collectively cover a total pixel area of roughly 2.24 million hectares.It is important to note that this figure does not mean 2.24 million hectares of burned area (burn scar). That figure simply multiplies the total number of detected pixels by the area of a single pixel. Thermal signatures in satellite imagery can indicate either small but high-intensity fires or broad sprawling blazes.Why do fires keep recurring?Indonesia has repeatedly paid a devastating price for forest and land fires. The catastrophic fire seasons of 1997–1998, 2015 and 2019 demonstrated a predictable pattern: droughts striking severely degraded landscapes.The World Bank estimated economic losses from the 2015 fires at US$16.1 billion — roughly 1.9% of Indonesia’s GDP. Four years later, history repeated itself. The World Bank’s analysis of the 2019 fires estimated damages and economic losses at around US$5.2 billion, or approximately 0.5% of GDP.This cycle proves that land fires cannot simply be treated as natural weather disasters. El Niño weather patterns come and go, but landscape vulnerability persists for decades.A recent study published in npj Natural Hazards underscores this reality. El Niño increases the risk of mega-fires in Kalimantan matching or exceeding the 1997 and 2015 events by roughly 2.7 times. Yet, severe fires continue to break out across all ENSO phases (both El Niño and La Niña).The root lies in the soilDiscussions surrounding land fires often focus on flame, smoke, wind and rain. Soil is usually an afterthought, even though that is where the problem originates.Soil plays a fundamental role in water storage. Soil structure, organic matter, porosity, groundwater levels and vegetation cover determine how long moisture remains after the rain stops. When these natural functions are disrupted, landscapes become hyper-sensitive to dry spells.This is especially critical given that 4.5 million hectares of Kalimantan consist of peatland — ecosystems naturally formed under waterlogged conditions. As long as water tables remain high, peat is naturally resilient to fire. However, drainage networks constructed to clear peatlands for plantations have upended that balance. Draining peatlands through canals speeds up soil drying and breakdown.Research on the physical properties of Indonesian peat demonstrates that declining groundwater levels are a primary driver of peatland degradation and fires, particularly during El Niño. The presence of drainage canals is linked to an increased fire probability roughly 4.5-fold. Baca juga: Lessons from South Sumatra: extend the palm oil moratorium to restore peatlands and prevent fires On mineral soils, fires leave lasting scars. A study in the Journal of Forestry Research reveals that high-intensity fires deplete organic matter, destroy soil microorganisms, break down its stability and make the soil water-resistant.This creates a vicious cycle: dry soil fuels fires, and fires leave the soil even more vulnerable to future degradation and drought.El Niño isn’t the sole culpritWhile powerful, El Niño conditions alone do not explain why fires mostly recur in the exact same area.Weather dictates when a landscape becomes flammable; soil and land management determine how easily fires ignite, spread and persist. Baca juga: Alternative data: setting the record straight on the scale of Indonesia’s 2019 fires Although government agencies battle blazes through ground efforts, aerial firefighting, patrols and cloud seeding, rigorous law enforcement remains vital — particularly against concession holders who fail to protect their land from fires.Long-term strategies must move towards true prevention. This means halting further peatland conversion.Restoring degraded peatlands is equally critical: maintaining their water level, blocking peat canals, and restoring vegetation. A study in Nature Communications estimates that restoring 2.49 million hectares of degraded peatland could save US$8.4 billion in avoided fire impact.Additionally, central and local governments must integrate soil moisture and peat-water level monitoring into fire early warning systems. Fires are not merely thermal events. They are symptoms of a disturbed relationship between water, soil, vegetation and human activity.If Indonesia continues to act only after hotspots appear, we will forever be stuck playing catch-up with active blazes.Real prevention starts long before the smoke rises: by ensuring the land retains its water and preserves its ecological resilience.Para penulis tidak bekerja, menjadi konsultan, memiliki saham atau menerima dana dari perusahaan atau organisasi mana pun yang akan mengambil untung dari artikel ini, dan telah mengungkapkan bahwa ia tidak memiliki afiliasi di luar afiliasi akademis yang telah disebut di atas.