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  2. Stove - Wikipedia

    en.wikipedia.org/wiki/Stove

    Coal stoves came in all sizes and shapes and different operating principles. Coal burns at a much higher temperature than wood, and coal stoves must be constructed to resist the high heat levels. A coal stove can burn either wood or coal, but a wood stove might not burn coal unless a grate is supplied. The grate may be removable or an "extra".

  3. Grate heater - Wikipedia

    en.wikipedia.org/wiki/Grate_heater

    However the unique environment of a fireplace and the burning of gas, wood, coal, pellets, etc., require specific heater designs and material construction making few, if any, grate heaters compatible with all fuels. The most critical elements of any tubular grate heater are: Safety - construction material and method, design and features.

  4. Multi-fuel stove - Wikipedia

    en.wikipedia.org/wiki/Multi-fuel_stove

    Multifuel refers to the capability of the stove to burn wood and also coal, wood pellets, or peat. Stoves that have a grate for the fire to burn on and a removable ash pan are generally considered multi-fuel stoves. [1] If the fire simply burns on a bed of ash, it is a wood-only fuelled appliance, and cannot be used for coal or peat.

  5. Pulverized coal-fired boiler - Wikipedia

    en.wikipedia.org/wiki/Pulverized_coal-fired_boiler

    The raw coal is then fed into the pulverizer along with air heated to about 650 °F (340 °C) from the boiler. As the coal gets crushed by the rolling action, the hot air dries it and blows out the usable fine coal powder to be used as fuel. The powdered coal from the pulverizer is directly blown to a burner in the boiler.

  6. Grate firing - Wikipedia

    en.wikipedia.org/wiki/Grate_firing

    Grate firing is a type of industrial combustion system used for solid fuels. It now is used mainly for burning waste and biomass, but also for smaller coal furnaces. Capacities 0.3 to 175 MWth in industry and CHP; Fuel fired per grate area 1-2 MW/m 2, maximum grate area 100 m 2

  7. Firebox (steam engine) - Wikipedia

    en.wikipedia.org/wiki/Firebox_(steam_engine)

    This is achieved by maintaining a supply of fuel to the fire, monitoring the smoke from the fire and controlling it by the use of primary air through the fire bed/grate and secondary air through the firebox door and maintaining the boiler water level by use of steam injectors so that it covers the firebox crown sheet at all times – otherwise ...

  8. Chimney fire - Wikipedia

    en.wikipedia.org/wiki/Chimney_fire

    There are several major issues that are at risk from a chimney fire event. There is the danger of burning debris being expelled from the top of the chimney that could ignite other portions of the structure. The major cause of damage is where the heat of the chimney fire will pass through the masonry materials and overheat nearby combustibles.

  9. Hot blast - Wikipedia

    en.wikipedia.org/wiki/Hot_blast

    Hot blast allowed the use of anthracite in iron smelting. It also allowed use of lower quality coal because less fuel meant proportionately less sulfur and ash. [11]At the time the process was invented, good coking coal was only available in sufficient quantities in Great Britain and western Germany, [12] so iron furnaces in the US were using charcoal.