Thruster oxidizer: Difference between revisions
Same recipe table for alternative recipes as the rest of the pages, not a stub, remove duplication of recipe from infobox, combine duplicate thruster sentences into one |
Thruster ratios. |
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Because thruster oxidizer cannot be [[barrel]]ed, each platform must produce its own oxidizer. | Because thruster oxidizer cannot be [[barrel]]ed, each platform must produce its own oxidizer. | ||
Thrusters have a maximum consumption of 120 oxidizer per second. It requires 3.2 [[chemical plant]]s producing oxidizer to keep a single thruster operating at maximum consumption. It also requires nearly the full output of a single chemical plant executing [[ice melting]] to supply this amount of oxidizer production. | |||
== Alternative recipes == | == Alternative recipes == | ||
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It requires less than one [[chemical plant]] producing oxidizer with this recipe to keep a single thruster operating at maximum consumption. Half the output of a chemical plant melting ice can keep up with this chemical plant. | |||
== History == | == History == |
Latest revision as of 06:00, 29 August 2025
Thruster oxidizer |
Recipe |
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+ + → | |
Total raw |
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+ + | |
Prototype type |
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Internal name |
thruster-oxidizer |
Required technologies |
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Produced by |
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Space Age expansion exclusive feature.
Thruster oxidizer is a liquid and is one of the two main ingredients, along with thruster fuel, for running the thruster to allow a space platform to move from planet to planet.
Because thruster oxidizer cannot be barreled, each platform must produce its own oxidizer.
Thrusters have a maximum consumption of 120 oxidizer per second. It requires 3.2 chemical plants producing oxidizer to keep a single thruster operating at maximum consumption. It also requires nearly the full output of a single chemical plant executing ice melting to supply this amount of oxidizer production.
Alternative recipes
Process | Input | Output | Made in | Required technology |
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Advanced thruster oxidizer | + + + | Advanced asteroid processing (research) |
It requires less than one chemical plant producing oxidizer with this recipe to keep a single thruster operating at maximum consumption. Half the output of a chemical plant melting ice can keep up with this chemical plant.