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Sulfuric acid: Difference between revisions

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The optimal ratio for Sulfuric Acid production is two Sulfuric acid Chemical plants for every five Sulfur Chemical plants.
The optimal ratio for Sulfuric Acid production is two Sulfuric acid Chemical plants for every five Sulfur Chemical plants.


Two Sulfuric acid Chemical plants produce enough Sulfuric acid for 25 Battery Chemical plants, or for 300 Processing unit assemblers (if Assembler 3 is used).
Two Sulfuric acid Chemical plants produce enough Sulfuric acid for 25 Battery Chemical plants, or for 200 Processing unit assemblers (if Assembler 3 is used).


== See also ==
== See also ==

Revision as of 19:42, 26 December 2017

Sulfuric acid.png
Sulfuric acid

Sulfuric acid fluid.png

Recipe

Time.png
1
+
Iron plate.png
1
+
Sulfur.png
5
+
Water.png
100
Sulfuric acid.png
50

Total raw

Time.png
1
+
Iron plate.png
1
+
Sulfur.png
5
+
Water.png
100

Prototype type

fluid

Internal name

sulfuric-acid

Required technologies

Sulfur processing (research).png

Produced by

Chemical plant.png

Consumed by

Processing unit.png
Battery.png
Uranium ore.png
Fill sulfuric acid barrel.png

Sulfuric Acid is a liquid that is used to create batteries and processing units. It is converted, by the chemical plant, from sulfur, water, and iron plates. In 0.15 it must also be piped into electric mining drills to mine Uranium ore.

Optimal Ratio

The optimal ratio for Sulfuric Acid production is two Sulfuric acid Chemical plants for every five Sulfur Chemical plants.

Two Sulfuric acid Chemical plants produce enough Sulfuric acid for 25 Battery Chemical plants, or for 200 Processing unit assemblers (if Assembler 3 is used).

See also