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Difference between revisions of "v0.34:Dolomite"
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'''Dolomite''' is a [[color|white]] medium-[[value]] and economic type of [[sedimentary layer|sedimentary]] [[stone]] that forms entire layers. It is also a [[flux]] stone, meaning it can be used in the production of [[pig iron]] and [[steel]]. Additionally, it is [[magma safe]], with an extremely high melting point of {{ct|16507}}, in fact, the highest [[Temperature#Melting point|melting point]] of all common stones, barring [[raw adamantine]] (and, because it cannot be melted, [[slade]]<sup>[[#notes|1]]</sup>). Its melting point exceeds that of even [[iron]], and in fact all metals barring [[adamantine]]. It is not safe from the scorching {{ct|50000}} heat of [[dragon]] fire, though it will last longer than most minerals. | '''Dolomite''' is a [[color|white]] medium-[[value]] and economic type of [[sedimentary layer|sedimentary]] [[stone]] that forms entire layers. It is also a [[flux]] stone, meaning it can be used in the production of [[pig iron]] and [[steel]]. Additionally, it is [[magma safe]], with an extremely high melting point of {{ct|16507}}, in fact, the highest [[Temperature#Melting point|melting point]] of all common stones, barring [[raw adamantine]] (and, because it cannot be melted, [[slade]]<sup>[[#notes|1]]</sup>). Its melting point exceeds that of even [[iron]], and in fact all metals barring [[adamantine]]. It is not safe from the scorching {{ct|50000}} heat of [[dragon]] fire, though it will last longer than most minerals. |
Revision as of 07:22, 10 August 2012
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This article is about an older version of DF. |
Dolomite is a white medium-value and economic type of sedimentary stone that forms entire layers. It is also a flux stone, meaning it can be used in the production of pig iron and steel. Additionally, it is magma safe, with an extremely high melting point of 16507 °U , in fact, the highest melting point of all common stones, barring raw adamantine (and, because it cannot be melted, slade1). Its melting point exceeds that of even iron, and in fact all metals barring adamantine. It is not safe from the scorching 50000 °U heat of dragon fire, though it will last longer than most minerals.
1: Sphalerite cannot be melted, but will boil before dolomite melts. Graphite, lignite, and bituminous coal cannot be melted and will boil after dolomite melts, but will ignite long before that.
Because of its abundance and utility, dolomite is one of the most remarkable non-ore stones, and is much more useful than many other flux stones. Unfortunately, dolomite cannot be found in volcanic biomes.
Dolomite is slightly denser than the average rock, inhibiting hauling. Because of its status as a flux stone, which are in high demand in steel-making, wheelbarrows are useful for the transport of dolomite.
In Real Life
Dolomite is comprised of calcium magnesium carbonate (CaMg(CO3)2) and is related to limestone, chalk, and marble. Its ionic and crystalline nature contributes to its high melting point.
[INORGANIC:DOLOMITE]
[USE_MATERIAL_TEMPLATE:STONE_TEMPLATE]
[STATE_NAME_ADJ:ALL_SOLID:dolomite][DISPLAY_COLOR:7:7:1][TILE:'`'][REACTION_CLASS:FLUX]
[SEDIMENTARY]
[MATERIAL_VALUE:2]
[IS_STONE]
[MELTING_POINT:16507]
[BOILING_POINT:18000]
[SOLID_DENSITY:2850] |
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Igneous |
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Other |
Alunite · Anhydrite · Bauxite · Borax · Brimstone · Chromite · Cinnabar · Cobaltite · Cryolite · Graphite · Hornblende · Ilmenite · Jet · Kimberlite · Marcasite · Mica · Microcline · Olivine · Orpiment · Orthoclase · Periclase · Petrified wood · Pitchblende · Puddingstone · Pyrolusite · Realgar · Rutile · Saltpeter · Serpentine · Slade · Stibnite · Sylvite · Talc |