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== Description == <!--T:7-->
 
== Description == <!--T:7-->
Used to smelt [[Ore|ore]] into ingots and alloys using an oxygen/volatile gas mix. [[Special:MyLanguage/Ice (Oxite)|Ice (Oxite)]] and [[Special:MyLanguage/Ice (Volatiles)|Ice (Volatiles)]] can be manually input directly in the furnace in order to create crude gas mixtures, or to be directly extracted as an easy trick for melting the ice.
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Used to smelt ingots and alloys using an oxygen/volatile gas mix. [[Special:MyLanguage/Ice (Oxite)|Ice (Oxite)]] and [[Special:MyLanguage/Ice (Volatiles)|Ice (Volatiles)]] can be manually input directly in the furnace in order to create crude gas mixtures, or to be directly extracted as an easy trick for melting the ice.
  
 
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While smelting steel is easily achieved with ice, other recipes usually require a working piping setup (a valve and passive vent at bare minimum to vent the internal gasses). This can be done by separating gases into tanks using atmospheric units and piping individual gases through a mixer and a [[Special:MyLanguage/Pressure Regulator|Pressure Regulator]] or a [[Special:MyLanguage/Pipe Volume Pump|Pipe Volume Pump]] connected to the furnace input. Output should also be extracted and vented/recycled through a backpressure regulator to keep furnace pressure in check. The optimal gas mix that burns completely is 1 part (33.3%) oxygen to 2 parts (66.6%) volatiles, other mixes would also work but leave you with leftover oxygen or volatiles depending on the percentages used. It could also result in lower temperature if that is desired, but you could also use a volume pump with a lower fuel input setting.
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While smelting steel is easily achieved with ice, other recipes usually require a working piping setup. This can be done by separating gases into tanks using atmospheric units and piping individual gases through a mixer and a [[Special:MyLanguage/Pressure Regulator|Pressure Regulator]] or a [[Special:MyLanguage/Pipe Volume Pump|Pipe Volume Pump]] connected to the furnace input. Output should also be extracted and vented/recycled through a backpressure regulator to keep furnace pressure in check. The optimal gas mix that burns completely is 1 part (33.3%) oxygen to 2 parts (66.6%) volatiles, other mixes would also work but leave you with leftover oxygen or volatiles depending on the percentages used. It could also result in lower temperature if that is desired, but you could also use a volume pump with a lower fuel input setting.
  
  
 
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'''Make sure to put the fuel in first, then press the activate button. Afterwards put in the ingredients and press the handle after you see the "will produce" while hovering over the furnace.'''  Also, You MUST put in exact amounts matching the recipe amounts. For instance, you must put in 12 iron and 4 coal to make 16 steel. You cannot put in 12 iron and 7 coal. The furnace will not manufacture anything if the ingredient ratios are not correct and you will have to eject it all or add resources to balance the recipe.
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'''Make sure to put the fuel in first, then press the activate button. Afterwards put in the ingredients and press the handle after you see the "will produce" while hovering over the furnace.'''  Also, You MUST put in exact amounts matching the recipe amounts. For instance, you must put in 12 iron and 4 coal to make 16 steel. You cannot put in 12 iron and 7 coal. The furnace will not manufacture anything if the ingredient ratios are not correct and you will have to eject it all.
 
{{:Furnace/Recipes}}  
 
{{:Furnace/Recipes}}  
  
 
=== Tips === <!--T:12-->
 
=== Tips === <!--T:12-->
 
*Placing 15 ice(volatiles) and 15 ice(oxite) will bring pressure to around 22000kpa and temp 2000k. For Invar, you will have to wait for the temperature to drop before you can process. You can use this time while the pressure is still over 20000kpa to make constantan. <br />
 
*Placing 15 ice(volatiles) and 15 ice(oxite) will bring pressure to around 22000kpa and temp 2000k. For Invar, you will have to wait for the temperature to drop before you can process. You can use this time while the pressure is still over 20000kpa to make constantan. <br />
*All other alloys can be achieved with a ratio of 2 volatiles to 1 oxite
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*All other alloys can be achieved with 2 volatiles and 1 oxite
 
*If atmosphere inside and/or around furnace is too cold to melt ice one can press 'activate' button to manually melt one ice per ignition attempt. You will need to press the ignition button for each piece of ice from the first stack that you put in. Until all solid matter was melted the import slot will remain blocked.
 
*If atmosphere inside and/or around furnace is too cold to melt ice one can press 'activate' button to manually melt one ice per ignition attempt. You will need to press the ignition button for each piece of ice from the first stack that you put in. Until all solid matter was melted the import slot will remain blocked.
*[[Special:MyLanguage/Reagent Mix|Reagent Mix]] can be re-melted to continue balancing the recipe should you need to gather more resources or find yourself unable to balance the temperature/pressure manually.
 
  
 
===Some example fuel mixes=== <!--T:13-->
 
===Some example fuel mixes=== <!--T:13-->
  
 
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<div style="overflow-x: auto;">
 
 
{| class="wikitable"
 
{| class="wikitable"
 
! colspan="1" rowspan="2" |Prime
 
! colspan="1" rowspan="2" |Prime
 
! colspan="1" rowspan="2" |FAR
 
! colspan="1" rowspan="2" |FAR
 
! colspan="2" rowspan="1" |In: Mols
 
! colspan="2" rowspan="1" |In: Mols
! colspan="3" rowspan="1" |Result
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! colspan="2" rowspan="1" |Result
 
! colspan="4" rowspan="1" |Out: Mols
 
! colspan="4" rowspan="1" |Out: Mols
 
|-
 
|-
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!Press.
 
!Press.
 
!Celcius
 
!Celcius
!Kelvin
 
 
!O2
 
!O2
 
!H2
 
!H2
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|2 135
 
|2 135
 
|1 953
 
|1 953
|2 216
 
 
|1
 
|1
 
|3
 
|3
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|4 500
 
|4 500
 
|2 000
 
|2 000
|2 273
 
 
|1
 
|1
 
|5
 
|5
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|3 400
 
|3 400
 
|1 900
 
|1 900
|2 173
 
 
|2
 
|2
 
|26
 
|26
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|3 000
 
|3 000
 
|1 800
 
|1 800
|2 273
 
 
|1
 
|1
 
|40
 
|40
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|3 493
 
|3 493
 
|1 917
 
|1 917
|2 190
 
 
|22
 
|22
 
|2
 
|2
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|1 646
 
|1 646
 
|1 319
 
|1 319
|1 592
 
 
|63
 
|63
 
|2
 
|2
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|6 850
 
|6 850
 
|2 109
 
|2 109
|2 382
 
 
|2
 
|2
 
|7
 
|7
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|108
 
|108
 
|19.25 MPa
 
|19.25 MPa
|2 054
+
|2054
|2 357
 
 
|70
 
|70
 
|7
 
|7
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|120
 
|120
 
|21.62 MPa
 
|21.62 MPa
|2 061
+
|2061
|2 334
 
 
|74
 
|74
 
|7
 
|7
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|204
 
|204
 
|35.34 MPa
 
|35.34 MPa
|2 121
+
|2121
|2 394
 
 
|10
 
|10
 
|20
 
|20
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|581
 
|581
 
|}
 
|}
</div>
 
  
 
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{{Data Parameters}}
 
{{Data Parameters}}
{| class="wikitable mw-collapsible"
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{| class="wikitable"
 
|-
 
|-
 
! Parameter Name !! Data Type !! Description
 
! Parameter Name !! Data Type !! Description
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{{Data Outputs}}
 
{{Data Outputs}}
{| class="wikitable mw-collapsible"
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{| class="wikitable"
 
|-
 
|-
 
! Output Name !! Data Type !! Description
 
! Output Name !! Data Type !! Description

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