Deuterium: Difference between revisions
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{{:{{PAGENAME}}/ItemInfo}} |
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==Summary== |
==Summary== |
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'''Deuterium''' is stable heavier isotope of [[Hydrogen]]. Rarely exists under natural conditions. Most comes from the reprocessing of hydrogen and collection from [[Gas Giant]]s via [[Orbital Collector]]s. |
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==Production Chain== |
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==Required Technology== |
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{{ProductionChainTable/head}} |
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{| class="wikitable" style="text-align:center" |
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{{ProductionChain |
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!Technology |
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|Building=Fractionator |
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|- |
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|Replicator=No |
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! Deuterium Fractionation |
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|Technology=Deuterium Fractionation |
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|- |
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|Recipe= |
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| [[File:Tech_Deuterium Fractionation.png|link=Deuterium Fractionation_(Tech)]] |
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{{ItemRecipe |
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|Out1=Deuterium |
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|Out1Qty=1 |
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|CraftTime=1 % |
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|In1=Hydrogen |
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|In1Qty=1 |
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}} |
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}} |
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|- |
|- |
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{{ProductionChain |
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! Miniature Particle Collider |
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|Building=Miniature Particle Collider |
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|Replicator=No |
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|Technology=Miniature Particle Collider |
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|Recipe= |
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{{ItemRecipe |
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|Out1=Deuterium |
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|Out1Qty=5 |
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|CraftTime=2.5 s |
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|In1=Hydrogen |
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|In1Qty=10 |
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}} |
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}} |
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|- |
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{{ProductionChain |
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| [[File:Tech_Miniature_Particle_Collider.png|link=Miniature_Particle_Collider_(Tech)]] |
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|Building=Orbital Collector |
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|Replicator=Mine |
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|Technology=Gas Giants Exploitation |
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|Recipe= |
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{{ItemRecipe |
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|Out1=Deuterium |
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|Out1Qty=1 |
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|In1=Gas Giant |
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|In1Qty= |
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|CraftTime=? |
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}} |
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}} |
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|} |
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==Production |
==Production Progression Chart== |
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{{ProgressionChartCollapsible/begin}} |
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{| class="wikitable" |
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{| class="wikitable" style="text-align:center; background-color:#0b161c |
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|+ |
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|+Critical Photon-based production |
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!Stage 1 |
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!Stage 2 |
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!Stage 3 |
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|- |
|- |
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| {{riq|Critical Photon|2}} |
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! [[File:Icon_Hydrogen.png|link=Hydrogen]] x1 || [[File:Icon_Fractionator.png|link=Fractionator]] || '''<big>1% <br> ------> </big>''' || [[File:Icon_Deuterium.png|link=Deuterium]] x1 |
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| {{riq|Hydrogen|2}} {{riq|Antimatter|2}} |
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|+ |
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| {{riq|Deuterium|2}} {{riq|Antimatter|2}} |
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|} |
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{| class="wikitable" style="text-align:center; background-color:#0b161c |
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|+Fire Ice-based production |
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!Stage 1 |
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!Stage 2 |
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!Stage 3 |
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|- |
|- |
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| {{riq|Fire Ice|2}} |
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! [[File:Icon_Hydrogen.png|link=Hydrogen]] x10 || [[File:Icon_Miniature_Particle_Collider.png|link=Miniature_Particle_Collider]] || '''<big> 5s <br> ------> </big>''' || [[File:Icon_Deuterium.png|link=Deuterium]] x5 |
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| {{riq|Hydrogen|1}} {{riq|Graphene|2}} |
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|+ |
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| {{riq|Deuterium|1}} {{riq|Graphene|2}} |
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|} |
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{| class="wikitable" style="text-align:center; background-color:#0b161c |
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|+Crude Oil-based production |
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!Stage 1 |
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!Stage 2 |
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!Stage 3 |
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!Stage 4 |
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|- |
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| {{riq|Crude Oil|2}} |
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! [[File:Icon_Orbit Collector.png|link=Orbit Collector]] || [[File:Icon_Deuterium.png|link=Deuterium]] |
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| {{riq|Hydrogen|1}} {{riq|Refined Oil|2}} |
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| {{riq|Hydrogen|3}} {{riq|Energetic Graphite|2}} |
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| {{riq|Deuterium|3}} {{riq|Energetic Graphite|2}} |
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|} |
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'''Note:''' [[Hydrogen]] created during [[Crude Oil]]-based production must be recycled through the system to ensure full efficiency. Final stage quantities are remaining surplus available for distribution. |
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{{ProgressionChartCollapsible/end}} |
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==Used In== |
==Used In== |
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{{ProductionChainTable/head}} |
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{| class="wikitable" |
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{{ProductionChain |
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|+ |
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|Building=Assembling Machine |
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|Replicator=Yes |
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|Technology=Mini Fusion Power Generation |
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|Recipe= |
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{{ItemRecipe |
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|Out1=Deuteron Fuel Rod |
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|Out1Qty=2 |
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|CraftTime=12 s |
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|In1=Titanium Alloy |
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|In1Qty=1 |
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|In2=Deuterium |
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|In2Qty=20 |
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|In3=Super-Magnetic Ring |
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|In3Qty=1 |
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}} |
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}} |
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|- |
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{{ProductionChain |
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! [[File:Icon_Titanium_Alloy.png|link=Titanium_Alloy]] x1 [[File:Icon_Deuterium.png|link=Deuterium]] x10 [[File:Icon_Super-Magnetic_Ring.png|link=Super-Magnetic_Ring]] x1 || '''</big> ------> </big>''' ||[[File:Icon_Assembling_Machine_Mk.I.png|link=Assembling Machine Mk.I]] || '''</big>6s <br> ------> </big> || [[File:Icon_Deuteron_Fuel_Rod.png|link=Deuteron Fuel Rod]] x1 |
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|Building=Miniature Particle Collider |
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|+ |
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|Replicator=No |
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|Technology=Strange Matter |
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|Recipe= |
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{{ItemRecipe |
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|Out1=Strange Matter |
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|Out1Qty=1 |
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|CraftTime=8 s |
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|In1=Particle Container |
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|In1Qty=2 |
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|In2=Iron Ingot |
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|In2Qty=2 |
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|In3=Deuterium |
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|In3Qty=10 |
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}} |
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}} |
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|- |
|- |
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{{ProductionChain |
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! [[File:Icon_Particle_Container.png|link=Particle_Container]] x2 [[File:Icon_Iron_Ingot.png|link=Iron_Ingot]] x2 [[File:Icon_Deuterium.png|link=Deuterium]] x10 || '''</big> ------> </big>''' || [[File:Icon_Assembling_Machine_Mk.I.png|link=Assembling_Machine_Mk.I]] || '''</big>8s <br> ------> </big>''' || [[File:Icon_Strange_Matter.png|link=Strange_Matter]] x1 |
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|Building=Assembler |
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|Replicator=Yes |
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|Technology=Plasma Turret |
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|Recipe= |
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{{ItemRecipe |
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|Out1=Plasma Capsule |
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|Out1Qty=1 |
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|CraftTime=2 s |
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|In1=Graphene |
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|In1Qty=1 |
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|In2=Magnet |
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|In2Qty=2 |
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|In3=Deuterium |
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|In3Qty=10 |
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}} |
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}} |
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|} |
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==Player Tips & Tricks== |
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==Player Tips & Tricks== |
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* Using Fractionators to produce Deuterium is roughly 5 times more energy efficient (Using MkIII conveyers) than Particule Colliders. It takes more space to setup, but works in a simple loop (with a buffer liquid storage slowly refilled with Hydrogen). |
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*Using [[Fractionator|Fractionators]] to produce Deuterium is roughly 2.5 times more energy efficient (using [[Conveyor Belt Mk.III|Mk.III Conveyor Belts]]) than [[Miniature Particle Collider|Particle Colliders]]. It takes more space to set up but works in a simple loop (with a buffer liquid storage slowly refilled with Hydrogen). A Fractionator processing Hydrogen piled four times using the [[Automatic Piler]] consumes 1.375 times as much energy per Deuterium as a normal Fractionator, with throughput closer to the Particle Collider's Deuterium production, and it can be a middle ground on energy usage and space while retaining the 1:1 Hydrogen to Deuterium conversion. |
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{| class="wikitable" |
{| class="wikitable" |
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|+ Comparative Data |
|+ Comparative Data |
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|- |
|- |
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! Units !! Fractionator !! |
! Units !! Fractionator !! Particle Collider !! Fractionator 4-stack |
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|- |
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| kW (kJ/s) || 720 || 12000 |
| kW (kJ/s) || 720 || 12000 || 3960 |
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|- |
|- |
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| Deuterium /s|| 0.3 || 1 |
| Deuterium /s|| 0.3 || 2 || 1.2 |
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|- |
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| kJ per Deuterium || 2400 || |
| kJ per Deuterium || 2400 || 6000 || 3300 |
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|} |
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{{Item Navbox}} |
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[[Category:Item]] |
[[Category:Item]] |
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[[Category: |
[[Category:Components]] |
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[[Category:Material]] |
[[Category:Material]] |
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[[Category:Natural Resource]] |
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[[Category:Crafting Material]] |
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[[Category:Fuel]] |
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Latest revision as of 20:35, 19 January 2024
Deuterium
Material, Fuel
A stable isotope of hydrogen. Rarely exists under natural conditions. Most of them come from the reprocessing of hydrogen and the collection from the Gas Giant.

| Fuel Type | Chemical | |
| Energy | 9.00 MJ | |
| Fuel Chamber Gen. | +100% | |
| Made In | Fractionator, Particle Collider Cannot make in replicator | |
| Gathered From | Gas Giant Orbit | |
| Stack Size | 20 |
Summary
Deuterium is stable heavier isotope of Hydrogen. Rarely exists under natural conditions. Most comes from the reprocessing of hydrogen and collection from Gas Giants via Orbital Collectors.
Production Chain
| Recipe | Building | Replicator? | Technology |
|---|---|---|---|
| ✖ | |||
| ✖ | |||
| ⛏️ |
Production Progression Chart
- For more information on reading and using these charts, see Production Progression Chart.
| Stage 1 | Stage 2 | Stage 3 |
|---|---|---|
| Stage 1 | Stage 2 | Stage 3 |
|---|---|---|
| Stage 1 | Stage 2 | Stage 3 | Stage 4 |
|---|---|---|---|
Note: Hydrogen created during Crude Oil-based production must be recycled through the system to ensure full efficiency. Final stage quantities are remaining surplus available for distribution.
Used In
| Recipe | Building | Replicator? | Technology |
|---|---|---|---|
| ✔ | |||
| ✖ | |||
| ✔ |
Player Tips & Tricks
- Using Fractionators to produce Deuterium is roughly 2.5 times more energy efficient (using Mk.III Conveyor Belts) than Particle Colliders. It takes more space to set up but works in a simple loop (with a buffer liquid storage slowly refilled with Hydrogen). A Fractionator processing Hydrogen piled four times using the Automatic Piler consumes 1.375 times as much energy per Deuterium as a normal Fractionator, with throughput closer to the Particle Collider's Deuterium production, and it can be a middle ground on energy usage and space while retaining the 1:1 Hydrogen to Deuterium conversion.
| Units | Fractionator | Particle Collider | Fractionator 4-stack |
|---|---|---|---|
| kW (kJ/s) | 720 | 12000 | 3960 |
| Deuterium /s | 0.3 | 2 | 1.2 |
| kJ per Deuterium | 2400 | 6000 | 3300 |

























































































































































































