[T1-EV] Making aviation kerosene NO.3 and dense 肼 joint production line [GTNH] Gray Technology: New Vision (GT: New Hori

Note: This tutorial is suitable for GTNH 2.4.0 version. If it is found that it is different from the author, please check the version first.

It is suitable for the middle period of the EV after T1, and the titanium has been successfully obtained, and platinum treatment and 钯 treatment have been built.

The densely mixed fuel is only required by one chemical plant. The author uses a chemical factory with titanium shell, titanium pipeline, TPV coil, and EV machine block.

After T2 has a large amount of tungsten steel, it can transform the production of purple fuel. The burning value is twice the densely mixed fuel!

When EV, you can make a unilateral rocket engine or a rocket engine F1-A.It is not recommended to use F1-A because in the EV period, high cost.After the quantum processor can be made, using a general chemical energy engine is the best solution (but the ZPM circuit board is required, EV cannot be made).

After T2, it is recommended to transform the purple fuel and Jet Fuel A, high alkane -value gasoline.

The production line step table is as follows:

React 1 React 2 Reactor 3 Reactor 4 Reactor Product 1 Product 2 Product 3 Product 4 Products 5 Power consumption 1728B Coal Tar

Distillation tower720b coal tar il144b naphtha216b ethylbenzne72b anthracene576b kerosene7777600720b coal tar

Distillery216B CyClopeentadiene

86400000216B Hydrogen Gas216B CHLORINE

Large Chemical Reactor216B Hydrochloric Acid

90720108*Iron Dust324B Hydrochloric Acid

Large Chemical Reactor108B Iron III Chloride324B Hydrogen Gas

129600108B Iron III Chloride108B Hydrogen Gas

Large Chemical Reactor108B IRON II Chloride108B Hydrochloric Acid

1036800432B water

Vacuum Freezer432B Crushed Ice

2592000216B Cyclopentadiene108B IRON II ChLORIDE 864B DiethyLaMine432B Crushed Ice

Large Chemical Reactor1620B IMPURE FERROCENE MIXTURE

31104000216B Ether1620B IMPure Ferrocene Mixture

Mixer216B Ferrocene Solution1080B Ferrocene Waste

20736000216B Ferrocene solution

Distillation tower108*Ferrocene dust108B Ether

155520001080B Ferrocene Waste

Distillation tower540b ether432B water864b diedhylamine

77760000720B LIGHT Fuel 140B Heavy Fuel

Mixer840b fuel

268800840b fuel

Distillery504b kerosene

344064027b nitrogen gas81B hydrogen gas

Large Chemical Reactor27B AMMONIA

331776054B ETHYLENE108B STEAM

Large Chemical Reactor54B Ethanol

1036800027B ammonia54B Ethanol

Large Chemical Reactor27B DIETHYLAMINE54B Water

64800072B Saltwater

Electrolyzer216*Sodium Hydroxide Dust72B CHLORINE72B Hydrogen Gas

15552001080B Kerosene81B Naphtha27B DiethyLaMine108*Ferrocene Dust216*Sodium Hydroxide Dustlarge Chemical Reactor1188B Jet Fuel No.312441600072B A nthracene7200B 2-ethylanthrahydroquinone14400B Oxygen Gas

Chemical Plant7200B 2-Ethylanthraquinone7200B Hydrogen Peroxide

345600007200B 2-Ethylanthraquinone14400B Hydrogen Gas

Chemical Plant7200B 2-Ethylanthrahydroquinone

69120000014400b nitrogen gas43200b hydrogen gas

Large Chemical Reactor14400B AMMONIA

176947200014400B AMMONIA7200B Hydrogen Peroxide

Chemical Plant7200B Hydrazine

51840000010800B Carbon Monoxide43200B Hydrogen Gas

Large Chemical Reactor10800B Methanol

12441600010800B Methanol7200B Hydrazine

Chemical Plant18000B DENSE HYDRAZINE Fuel Mixture

259200000

Consume:

1728B Coal Tar

144B chlorine

108*Iron Dust

54B Ethylene

108B STEAM

72B SALT WATER

700b light fuel

140B Heavy Fuel

100809B Hydrogen Gas

14400B Oxygen Gas

14427B nitrogen Gas

10800B Carbon Monoxide

output:

216b ethylbenzene

63B naphtha

432B Ether

54B WATER

1188b jet fuel no.3

18000B DENSE HYDRAZINE Fuel Mixture

Power consumption 3854423520EU

It should be noted here that the source of coal coke can be supplied to use EEC or charcoal production line. The author is a by -product of the EEC brushing the flames.

The required hydrogen and carbon dioxide can be used to distille methane after the heavy hydrogen is cracked.

The manufacturing of chlorine metal iron is actually a cycle process, which only consume iron powder and chlorine:

React 1 Reactor 2 Machine Product 1 Product 2B Hydrogen Gas2B CHLORINE LARGE Chemical Reactor2B Hydrochloric Acid

840EU1*Iron Dust3b Hydrochloric Acidlarge Chemical Reactor1B Iron III Chloride3B Hydrogen Gas12000EU1B IRON III Chloride1b Hydrogen Gaslarge Chemical Rea CTOR1B IRON II Chloride1b Hydrochloric Acid9600EU

Ferrocene Dust does not need to invest in DiethyLimine.

React 1 React 2 Reactor 4 Machine Product 1 Product 2 Product 3 Power 2B Cyclopentadiene1b IRON II ChLORIDE 8B DIETHYLAMINE4B CRUSHELALELACAL Reactor15B IMPure FerroCene28 80002B Ether15B IMPure Ferrocene Mixture

Mixer2B Ferrocene Solution 10B Ferrocene Waste

1920002B Ferrocene Solution

Distillation tower1*Ferrocene dust1b ether

14400010B Ferrocene Waste

Distillation tower5b ether4b water8b diedhylamine720000

It is worth noting that the petrochemical line is required to provide heavy fuel and light fuel to produce Kerosne (kerosene), because the Cyclopentadiene produced by Cyclopentadiene provided by coal burnt distillation will lack KEROSENE (coal oil).You can apply the automatic production line built in the MV period and apply it to the joint production line.