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MNO2-CASO4 production line [NCO] nuclear power process: Nuclearcraft: Overhauled Minecraft Game

2024-12-10 17:49:08|Myriagame |source:minecraft skins

This tutorial is set by the author's setting without permission.

As one of the metals of nuclear power process, manganese consumes huge amounts and troubles; and calcium sulfate is one of the materials of crystal adhesives and requires a lot of preparation.Since the formula of the two is somewhat intertwined, I made a production line.

Part 1: Calcium sulfate

First place two stone machinery machines to produce granite (below) and glittering rocks (above)

Place a crushed rock next to the granite stone machine, extract sulfur from the upper side, extract rhombus manganese on the right, extract fluoride salt on the front and connect to the trash.

A crushed rock machine is placed next to the flashes of the flashes, which extract fluorite, and the front output is the product except the fluorite and throw it into the trash can to deal with the production.

In order to save space, we placed a melting machine (upper left) above the granite stone machine and pushed sulfur.

A fluid catheter is connected behind the sulfur machine (front) (recommended EIO because it can save space with the energy catheter) and connect Rongli to a chemical reactor (left).

The interoperability pipeline of the chemical reactor is connected to an electrolytic (middle) to provide oxygen, and the hydrogen can be threw away from the fluid trash can.

This chemical reactor is used to make sulfur dioxide.The sulfur dioxide is pulled out from the right side of the sulfur dioxide reactor (left) and the next chemical reactor (right) is entered.At the same time, oxygen is connected to this chemical reactor.

This chemical reactor is used to produce sulfur dioxide.Third sulfur dioxide (left) was pulled out of the third chemical reactor (medium), and water was connected to the top of the third chemical reactor.

Back to the flaspy rocky rockmaker, a solubvice (middle) was placed next to the ducting ducts that was placed at first, and the fluorite was input and input water at the same time.

Extract fluorite solution from this solubility (right), extract sulfuric acid from the third chemical reactor (left), and enter the last chemical reactor of both liquids.

From this chemical reactor (left), the calcium sulfate solution is extracted and the crystallizer (right) is connected, and the hydrofluoric acid is entered into the trash can.

Finally, calcium sulfate can be extracted from the crystal device.

Part 2: Manganese system

The manganese line here refers to MN, MNO, MNO2, and the three can be transformed into each other, so only the tutorial of synthetic MNO2 is provided here.

Let's return to the granite stone machine, and there was a rhombus and manganese -manganese catheter before.

Remove the rhombus and manganese into any melting furnace to make manganese dioxide.

The fired manganese dioxide access fluid injection (lower right) and connect the oxygen from the original electrolytic machine used to provide oxygen.

Manga injection manganese -produced manganese -produced molten mangible manganese dioxide.

Input manganese dioxide into the cooler (right) into manganese dioxide ingots.

At this point we have obtained manganese dioxide ingots.Send the manganese dioxide ingot into the furnace to burn it once to get manganese oxide ingots, and furnish manganese oxide ingots again to become manganese ingot.Conversely, manganese ingot fluid injection becomes manganese oxide ingots, and once again becomes manganese dioxide ingot.

The whole picture of the production line is very chaotic because the NC machine does not support active input and output, and the catheter needs to be discharged, and the use of different catheter channels will cause the production line to be difficult to repair once the bug appears.

This production line can obtain unlimited calcium sulfate, manganese, and other by -products.If you have a better logistics module, you can try to repair it, which only provides ideas.