Fissile Fuel: Difference between revisions

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Fissile Fuel is "burned" in a [[Fission Reactor]] to produce Nuclear Waste and heated coolant.
'''Fissile Fuel''' is a type of nuclear fuel, consumed in a [[Fission Reactor]] to produce radioactive [[Nuclear Waste]] and heated coolant (typically [[Steam]], fed to an [[Industrial Turbine]], or [[Superheated sodium]], fed to a [[Thermoelectric Boiler]]).


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== Fissile Fuel Production Chain ==
== Basic Production Chain ==
# Refine [[Uranium Ore]] into [[Uranium Ingot]]s, preferably by the [[Ore Processing|Tier 4 ore quintupling process]].
# Refine [[Uranium Ore]] into [[Uranium Ingot]]s, preferably by the [[Ore Processing|Tier 4 ore quintupling process]].
# Process the [[Uranium Ingot]]s in an [[Enrichment Chamber]] to produce [[Yellow Cake Uranium]].
# Process the [[Uranium Ingot]]s in an [[Enrichment Chamber]] to produce [[Yellow Cake Uranium]].

Revision as of 07:34, 14 November 2024

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Fissile Fuel is a type of nuclear fuel, consumed in a Fission Reactor to produce radioactive Nuclear Waste and heated coolant (typically Steam, fed to an Industrial Turbine, or Superheated sodium, fed to a Thermoelectric Boiler).

Fissile Fuel
Fission fuel.png
Mod

Mekanism

Type

Gas

Tool

None

Stackable

None

Basic Production Chain

  1. Refine Uranium Ore into Uranium Ingots, preferably by the Tier 4 ore quintupling process.
  2. Process the Uranium Ingots in an Enrichment Chamber to produce Yellow Cake Uranium.
  3. Process the Yellow Cake Uranium in a Chemical Oxidizer to produce Uranium Oxide.
  4. Process Fluorite with Sulfuric Acid (such as from the Tier 4 ore process) in a Chemical Dissolution Chamber to produce Hydrofluoric Acid.
  5. Combine the Hydrofluoric Acid and Uranium Oxide in a Chemical Infuser to produce Uranium Hexafluoride.
  6. Process the Uranium Hexafluoride in an Isotopic Centrifuge to get Fissile Fuel.

Fissile Fuel Processing Diagram

Detailed Production Chain

To produce Fissile Fuel, from the basic inputs of: Water, Coal (or similar), Oxygen, Fluorite and Uranium Ingots is an involved process. Ideally, you would have 3 Chemical Infusers, and 2 Chemical Oxidizers. As well as one each of: Enrichment Chamber, Pressurized Reaction Chamber, Rotary Condensentrator, Chemical Dissolution Chamber, Isotopic Centrifuge.

Listed here are the steps in counterclockwise order from the screenshot below.

The first step, of creating Sulfur Dust has multiple paths. Using Coal is convenient, but alternatives include Hydrogen Chloride + Gunpowder (From crushing Flint)

  1. Making Sulfuric Acid: (Orange below)
    1. Pressurized Reaction Chamber: Oxygen + Water + Coal (etc) = Sulfur Dust
    2. Chemical Oxidizer: Sulfur Dust = Sulfur Dioxide
    3. Chemical Infuser: Sulfur Dioxide + Oxygen = Sulfur Trioxide
    4. Chemical Infuser: Sulfur Trioxide + Water Vapor = Sulfuric Acid
    5. Rotary Condensentrator: Water = Water Vapor
  2. Making Fissile Fuel: (Pink below)
    1. Chemical Dissolution Chamber: Sulfuric Acid + Fluorite = Hydrofluoric Acid
    2. Chemical Infuser: Hydrofluoric Acid + Uranium Oxide = Uranium Hexafluoride
    3. Isotopic Centrifuge: Uranium Hexafluoride = Fissile Fuel
  3. Making Uranium Oxide (Green below)
    1. Enrichment Chamber: Uranium Ingot = Yellow Cake Uranium
    2. Chemical Oxidizer: Yellow Cake Uranium = Uranium Oxide

Detail of one way to layout machines to make fissile fuel

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