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Guide to Ordnance
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==[[File:Tritium.png]]Tritium Synthesis== Tritium is still relatively simple to grasp, but it is prone to failure which can render your workplace hazardous to work in. Don't lose hope if you fail, even experienced players make mistakes. The production of tritium requires the combustion of plasma inside a heavily oxygenated environment. Tritium also combusts relatively rapidly with oxygen, which means you will need to upgrade the scrubber network to get sizable amounts of it. This guide will assume that you do not have the means to do that. [[File:Trit Setup Ordnance.png|thumb|Metastation Ordnance]] # Set the [[File:Atmos_mixer.png]] first and second mixer to 100% Main Node. #: <b>Color Code:</b> Red #: <b>Why:</b> We require oxygen in the chamber, this setting will fully pump the oxygen in. # Open the [[File:Dvalve.png]] valve connecting the Mix Line (yellow) with the Burn Line (black) #: <b>Color Code:</b> Orange #: <b>Why:</b> This will route the oxygen into the chamber. # Open the [[File:AirAlarm.png]] air alarm and look for the scrubber inside the burn chamber. Set it to expanded mode and to scrub only Tritium. #: <b>Color Code:</b> Brown #: <b>Why:</b> The first one will allow us to clear the yellow/black line quicker, while the second one will let less tritium burn. # Click the [[File:Airlock_Control_Panel.png]] chamber control panel, and open the interior airlock. Wait for it to cycle. Then enter the outer part of the chamber and maximize the [[File:ppump.png]] pump leading in and pump leading out. #: <b>Color Code:</b> Beige #: <b>Why:</b> Maximizing the first pump will allow tritium to be produced more quickly, while the second one will let less tritium burn. # Open the [[File:Atmostankcontrol.png]] Atmos Monitor, switch the chamber to the Burn Chamber if it isn't already set. turn on the injector and maximize it. Oxygen should be showing up in the sensor. #: <b>Color Code:</b> Yellow #: <b>Why:</b> The black line is where our oxygen is currently residing, but the injector starts off. So we need to turn it on first. # Head back down to the Oxygen Stationary Tanks, use your analyzer on them and turn the first mixer off (Ctrl-Click) once you are satisfied with how much oxygen is in the chamber. #: <b>Color Code:</b> Red #: <b>Why:</b> However much gas you leave in the tanks is completely optional. Keeping a reserve of around 2-3k (around 1-2 canisters) might be a good idea in case you decided to pursue another experiment that needs oxygen. # Wait for the black and yellow line to empty out and turn the injector off with the [[File:Atmostankcontrol.png]] Atmos Monitor. The monitor should read around 1-2k moles of oxygen. #: <b>Color Code:</b> Yellow #: <b>Why:</b> We will need the plasma to be trickled in slowly, turning the injector off first will give us ample time to prepare the plasma. # Wrench a [[File:Plasma_Canister.png]] plasma canister in to the first mixer side port. Set the Side Node to 100% and turn it on. #: <b>Color Code:</b> Pink #: <b>Why:</b> We are now ready to route the plasma into the chamber. The black and yellow line should be filling up with unadulterated plasma. # Activate the burn button. Make sure you don't press the vent button. #: <b>Color Code:</b> Green #: <b>Why:</b> This button will trigger the igniter in the chamber and allow the plasma to ignite. # Head back to the [[File:Atmostankcontrol.png]] Atmos Monitor and start trickling the plasma. Start with a small number, turn the injector on, and keep adding the rate slowly until the temperature is above 1.7k Kelvins. You are free to increase or decrease the rate afterwards. #: <b>Color Code:</b> Yellow #: <b>Why:</b> Tritium is made when there are around 100x as much oxygen as plasma, we trickle the plasma slowly so this ratio is maintained. We also aim for the temperature to be above 1.7k Kelvins because the oxygen consumption is most efficient at that temperature. Higher rates mean more tritium made per second, but it also means a higher burden on your cooling system. # If all goes well, tritium should be made and collected by the scrubber. Go to the [[File:Freezer.gif]] freezer and crank the temperature down. You should wait a bit and then wrench a [[File:Canister.png]] canister or a [[File:PortablePump.png]] portable pump to the output [[File:Atmos_Connector.png]] connector port when finished. #: <b>Color Code:</b> Light Blue #: <b>Why:</b> The canister is withheld because wrenching it means a smaller volumetric share for the freezer. Rather than being (200L / Pipe volume), the gas that the freezer can cool directly becomes (200 L / (Pipe volume + Canister volume)). Read more on gas equalization [[Guide to atmospherics#Pipeline and Pipenet Theory|here]] ===Addendum=== In most cases, you will <b>need</b> to add more scrubbers to the chamber. You should do this before adding anything to the chamber. To do this simply: # Grab a firesuit and fire helmet from a [[File:Firesafetycloset.png]] Fire Closet, wear them. # Equip and activate [[File:AirTank.png]] internals. # Use the [[File:Airlock_Control_Panel.png]] door control and open the interior airlock. Wait for it to cycle and then enter it. # Open the exterior airlock by interfacing with the same console again. # Unwrench either the scrubber line [[File:Ppump.png]] pump or pipe and replace them with a [[File:Manifold.png]] layer manifold of a suitable color. # Add four more [[File:Scrub.png]] scrubbers to the chamber. You will most likely need to do this in another layer, feel free to choose any. # Go out by using the airlock panel once again. Wait for it to cycle.
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