Smouldering

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Embers 01
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Papierosa 1 ubt 0069
File:Nasa Microgravity Smoldering Combustion experiments.jpg
Nasa Microgravity Smoldering Combustion experiments
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TOMS indonesia smog lrg
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WTCgroundzero

Smouldering (or smoldering in American English) is a process of combustion that occurs at a lower temperature and without a flame. Smouldering is typically characterized by the slow, low-temperature, flameless form of combustion, sustained by the heat evolved when oxygen directly attacks the surface of a condensed-phase fuel. It is a common phenomenon in materials such as coal, biomass, tobacco, and peat, and can lead to spontaneous fire incidents in circumstances where materials are stored in bulk. Smouldering is often the initial phase of combustion, which may lead to a flame or fire if provided with sufficient oxygen, fuel, and heat to transition into flaming combustion.

Characteristics[edit]

Smouldering combustion is distinguished by its slow, flameless burning and is driven by the heat evolved from the oxidation of the material. This type of combustion can persist for extended periods, often producing significant amounts of smoke and toxic gases due to incomplete combustion. The temperature of smouldering combustion is typically much lower than that of flaming combustion, making it less visible and more difficult to detect in its early stages.

Causes and Prevention[edit]

The initiation of smouldering can be caused by various factors, including heat sources such as lightning, electrical faults, or chemical reactions. Once initiated, smouldering can be sustained by the material's inherent properties, such as its porosity, moisture content, and chemical composition. Preventing smouldering involves controlling these factors, including reducing the availability of oxygen, maintaining low temperatures, and ensuring materials are stored in conditions that minimize the risk of combustion.

Detection and Control[edit]

Detecting smouldering at an early stage is crucial for preventing the transition to flaming combustion and a potential fire outbreak. Smoke detectors and thermal imaging cameras are commonly used tools for early detection. Controlling smouldering once detected involves removing the heat source, reducing oxygen levels around the material, and, if necessary, applying water or fire retardants to cool the material and inhibit the combustion process.

Environmental and Health Impacts[edit]

Smouldering combustion can have significant environmental and health impacts due to the emission of carbon monoxide, volatile organic compounds (VOCs), and particulate matter. These emissions can contribute to air pollution, smog, and health problems in humans, including respiratory issues and cardiovascular diseases. Managing and reducing smouldering combustion in industrial and natural settings is therefore important for environmental health and safety.

Applications[edit]

In some contexts, smouldering is used beneficially. For example, it is a principle in the traditional production of charcoal, where wood is converted into a more energy-dense form through controlled smouldering. Similarly, smouldering is used in certain smoking processes for food preservation and flavoring.

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