Age | Commit message (Collapse) | Author | |
---|---|---|---|
2017-08-25 | Revised Hydrochloric Acid recycling, Salt electrolyzation cost | Johannes Gäßler | |
Hydrochloric Acid can be recycled at 100% efficiency. The production of Dimethylhydrazine, Tetrafluoroethylene, Polydimethylsiloxane, and Hypochlorous Acid yields Diluted Hydrochloric Acid, which can be recycled at 50% efficiency. The energy cost of 21600 EU per 2 Salt -> Sodium + Chlorine has turned out to be too high. The cost is now 9600 EU. | |||
2017-08-24 | Added missing Tetraitromethane, Polymerization recipes | Johannes Gäßler | |
2017-08-23 | Fixed Nitric Oxide EUt, halved Ammonia cost | Johannes Gäßler | |
To prevent the construction of perpetua mobilia via Rocket Fuel the EU cost of making Dimethylhydrazine has been increased. | |||
2017-08-21 | Fixed inconsistent SMD capacitor recipes | Johannes Gäßler | |
2017-08-21 | Fixed collision between Acetic Acid and Vinyl Chloride recipes | Johannes Gäßler | |
2017-08-21 | Added Assembler recipes for Small Coils, can use Annealed Copper | Johannes Gäßler | |
2017-08-21 | Added scalable Methane + Water -> Hydrogen + CarbonDioxide recipes | Johannes Gäßler | |
2017-08-20 | Added missing Tetrafluoroethylene recipes | Johannes Gäßler | |
2017-08-20 | All SMD Components now use Plastic, MV | Johannes Gäßler | |
2017-08-19 | Fixed Chloroform recipe | Johannes Gäßler | |
2017-08-19 | Added multi-step recipes for the Large Chemical Reactor | Johannes Gäßler | |
Added recipes for the Large Chemical Reactor that perform several steps of a processing line in a single recipe. | |||
2017-08-19 | Merge remote-tracking branch 'origin/unstable' into | Johannes Gäßler | |
CircuitChemistryUpdateFollowup Conflicts: src/main/java/gregtech/api/enums/Materials.java src/main/java/gregtech/common/GT_RecipeAdder.java src/main/java/gregtech/loaders/postload/GT_MachineRecipeLoader.java | |||
2017-08-19 | Reduced Oxygen consumption of Plastic Production by 50% | Johannes Gäßler | |
2017-08-19 | Old chemical recipes are now enabled by default, marked as deprecated | Johannes Gäßler | |
2017-08-18 | Greatly increased IC2 Biomass consumption, added scaleable FB recipes | Johannes Gäßler | |
Previously the energy density of IC2 Biomass was very high. 1000L of IC2 biomass could be converted into 32000L of IC2 Biogas in the Distillery or into 64000L of IC2 Biogas in the Distillation Tower. With an IC2 Canning Machine and a Distillery you got 128000 EU from 1 Potato. With a Pyrolyse Oven and a Distillation Tower you got 320000 EU from 1 Potato. With the increased consumption rates (x16/x32) of Biomass the energy Density has been greatly reduced. 1 Potato now yields 8000 EU with an IC2 Canning Machine and 12000 EU with a Pyrolyse Oven. Also, scaleable Recipes for Fermented Biomass has been added. It is now possible to produce Fermented Biomass in the Pyrolyse Oven without the need of any Fermenters. | |||
2017-08-18 | Reenabled several old recipes regardless of the config | Johannes Gäßler | |
-IC2 Biomass -> IC2 Biogas -Forestry Biomass -> Ethanol -LPG -> Super Fuel -Food --Centrifuge--> Methane -Heavy Fuel/Light Fuel --Distillery--> Toluene | |||
2017-08-17 | Fix use of RedstoneAlloy resulting in broken recipe | Muramasa- | |
2017-08-13 | Added Ass. recipes for Electronic Circuit components, reduced GT time | Johannes Gäßler | |
The following components can now be made in an Assembling Machine: -Coated Circuit Board (-62.5% Sticky Resin cost) -Vacuum Tube (-33% Copper/Paper cost) -Phenolic Circuit Board (-20% Glue/Bisphenol A cost) The time needed to make Glass Tube in the Alloy Smelter has been reduced: 12s -> 8s | |||
2017-08-13 | Reverted the changes to basic machine processing. | Johannes Gäßler | |
Basic Machines no longer automatically add an integrated circuit to their input. | |||
2017-08-11 | Merge pull request #1162 from JohannesGaessler/CrackingBalanceFollowup | Blood-Asp | |
Cracking Balance Followup | |||
2017-08-02 | Merge branch 'unstable' into AshRebalance | Johannes Gäßler | |
Conflicts: src/main/java/gregtech/api/enums/Materials.java | |||
2017-08-01 | Reduced SMD Capacitor cost | Johannes Gäßler | |
2017-08-01 | Reduced the cost of Microprocessors | Johannes Gäßler | |
2017-08-01 | Made Niobium more accessible | Johannes Gäßler | |
Niobium can now be obtained from Apatite and Pyrolusite as Byproducts. apatite veins now also contain Pyrochlore (new materials, contains Niobium) instead of Phosphate (PO4). | |||
2017-08-01 | Adapted the Large Chemical Reactor recipes for the Int. Circuits | Johannes Gäßler | |
2017-08-01 | Moved Synthetic Rubber requirement: EV -> IV, made it more convenient | Johannes Gäßler | |
Cable insulation works as it did before for EV cables. IV+ Cables can be insulated with only molten Silicone. Insulation now also works with whole Dusts at 4x the batch size. | |||
2017-08-01 | Added a line to the NEI handler that hints at leaving IntCirc(0) empty | Johannes Gäßler | |
2017-08-01 | Made it so that if two inputs are equal an Integr. Circuit (0) is added | Johannes Gäßler | |
2017-08-01 | Empty slots are only used as IntCirc(0) if no other IntCirc is in input | Johannes Gäßler | |
2017-07-31 | Overhauled Chemical recipes | Johannes Gäßler | |
Chemical Recipes now have a controllable output pattern. By adding an Integrated Circuit the Fluid output can automatically be canned into empty cells. Water outputs can also be automatically voided. This reduces the need for fluid Canners in a processing line. | |||
2017-07-31 | Added a new Basic Circuit: Microprocessor | Johannes Gäßler | |
Produced similarly to the Integrated Processor, but yields 2 Basic Circuits instead of 1 Good Circuit. | |||
2017-07-31 | Overhauled the Wetware Circuit recipes | Johannes Gäßler | |
They no longer need beer. Also the basic Wetware Processor only needs 1 Wetware Circuit Board. | |||
2017-07-31 | Reduced Circuit costs | Johannes Gäßler | |
From Integrated Processors onward: -The basic Circuit Tier yields 4 Circuits -The conversion rate has been changed: Old: Basic --3--> Assembly --2--> Computer --4--> Mainframe New: Basic --2--> Assembly --3--> Computer --4--> Mainframe | |||
2017-07-26 | Overhauled Fiberglass Circuit Board | Johannes Gäßler | |
Renamed: Fiberglass Circuit Board -> Fiber-Reinforced Circuit Board Fiber-Reinforced Boards are now made by combining Epoxy Resin with either Glass Fiber or Carbon Fiber. Glass Fiber is produced from Borosilicate Glass, which is in turn produced from Glass and Boron. To make this feasible Salt and Rock Salt now yield Borax as a byproduct. | |||
2017-07-25 | Reduced cost of Small Coil to 50%, added Ferrite for 25% cost | Johannes Gäßler | |
2017-07-25 | Added a new Circuit board tier: Plastic Circuit Board | Johannes Gäßler | |
2017-07-24 | Fixed a bug where a recipe had the wrong amount of Cells | Johannes Gäßler | |
2017-07-23 | Fixed accidental change to the Cumene recipes due to not pulling | Johannes Gäßler | |
2017-07-23 | Fixed Salt processing recipes | Johannes Gäßler | |
SaltWater now yields the same amount of material as Salt Dust. Increased the energy cost of electrolyzing Salt to make netto energy yield via NaOH+Hydrogen negative. | |||
2017-07-22 | Fix imbalanced recipe | Antifluxfield | |
2017-07-16 | Adjusted cracked fluid distillation speed, LightFuel/Naphtha balance | Johannes Gäßler | |
2017-07-16 | Added config options for old ash recipes, tweaking ash output | Johannes Gäßler | |
2017-07-16 | Added recipes for CaO, MgO, reenabled falsely disabled Steel Ash output | Johannes Gäßler | |
2017-07-15 | Changed the Ash centrifugation recipe to the new materials. | Johannes Gäßler | |
2017-07-06 | Merge pull request #1126 from Antifluxfield/PE-polymerization-fix | JohannesGaessler | |
Trying to fix PE polymerizing recipe | |||
2017-07-03 | Update GT_MachineRecipeLoader.java | Antifluxfield | |
2017-07-02 | Fixed Diluted Sulfuric Acid recipes, PTFE Pipe Casing name | Johannes Gäßler | |
2017-07-01 | Make assembly line use cheaper circuit techs. #1114 | Blood-Asp | |
2017-06-30 | Update GT_MachineRecipeLoader.java | Antifluxfield | |
2017-06-28 | Trying to fix PE polymerizing recipe | Antifluxfield | |
These recipe confilcts with the PE polymerizing recipe with oxygen. Just add an Integrated Circuit in the recipe. |