Pollution, Waste & Organic Systems Design¶
Document Type: Design Document Version: 0.2 (Draft) Status: In Progress Last Updated: 2026-08-25 Vault destination:
01_Design DocumentsRelated:[25_Power System Design](<./25_Power System Design.md>)·[04_Factory & Resource System Design](<./04_Factory & Resource System Design.md>)·[06_Vertical Layers & Core Power System](<./06_Vertical Layers & Core Power System.md>)·[24_Module System Design](<./24_Module System Design.md>)·[06_Outpost/02_Power Systems](<../06_Outpost/02_Power Systems.md>)
1. Summary¶
Three interlocking systems: pollution as the consequence of industry, waste as its physical residue, and organic farming as the renewable counterweight.
The design goal is that the clean path compounds in the player's favour and the dirty path undermines itself, with no bolted-on punishment system required.
2. The Core Insight¶
Nobody on the planet breathes. Genesis is a robot, there is no organic player character, and there are no biters. Pollution therefore needs a real victim or it is just a number going up.
The answer already exists in the systems built: air pollution blocks sunlight, and sunlight powers both Solar Panels and farms.
Burn fossil fuel → atmosphere thickens → less light reaches surface
↓
Solar output falls + Farm yields fall
↓
Need more power → burn more fossil fuel
That is a genuine feedback trap, it is physically true, and it costs nothing new to build because Solar is already variable and farms are new anyway.
The clean path self-reinforces. The dirty path self-undermines. No punishment mechanic needed.
3. Three Pollutants, Three Media¶
| Pollutant | Where it lives | Emitted by | Effects |
|---|---|---|---|
| Air / Smog | Atmosphere, zonal | Biomass Burner, Coal Generator, Fuel Generator, Smelter, Chemical Plant | Solar output down, farm yields down, building decay up |
| Ground & Water Table | Soil, zonal, leaches downward | Waste water discharge, leaking or dumped waste, buried nuclear waste | Farm yields down, extraction yields down, water quality for nuclear cooling degraded, decay up |
| Solid Waste | Items on belts | Smelting slag, chemical byproduct, nuclear waste, e-waste | Inert while contained. Becomes ground contamination when dumped. E-waste attracts hostiles (§6). |
Correction from an earlier draft: water contamination was previously modelled as living inside the fluid network. That is wrong. Real water pollution is in the ground and the water table, put there by discharge and leaking waste. Contaminated water inside the player's own pipes is a separate problem and an over-complication.
Air pollution is zonal, concentrating around emitters and dispersing with distance, so a dirty smelting district does not ruin a solar farm on the far side of the planet. This keeps factory layout a meaningful decision.
Open items for this document are tracked in docs/open-items.md.
3a. Pollution and Vertical Levels¶
The two media behave differently, and both behaviours are physically true.
| Medium | Vertical behaviour |
|---|---|
| Air / smog | Does not travel between levels. Each level holds its own atmospheric state. |
| Ground contamination | Leaches downward. Never upward. Gravity. |
Air, per level¶
| Level | Dispersal | What air pollution hurts | Net character |
|---|---|---|---|
| Sky | Above the smog layer | Little to nothing. Solar and wind largely unaffected. | Refuge. Clean generation. |
| Surface | Normal atmospheric dispersal | Solar output, farm yields, building decay | Standard. The model in §2. |
| Underground | None. Sealed, no atmosphere to disperse into. | No solar, no farms, so only decay — but concentration climbs far higher, so decay hits much harder. | Dirty industry zone, at a corrosion cost. |
3a.1 Sky levels sit above the smog¶
Real inversion layers hold pollution low. Sky-level Solar Collectors and Wind Turbines are therefore largely unaffected by surface smog.
Consequence: dirtying the surface increases the value of building upward. That gives Sky Levels a concrete purpose beyond the efficiency table in 06_Vertical Layers, and it emerges from the pollution system rather than being granted.
3a.2 Underground has nothing to ruin but nowhere to vent¶
There is no sunlight underground and no farms, so pollution cannot reduce output there. But a sealed level has no dispersal, so concentration climbs faster and to a much higher ceiling, and building decay is severe.
This creates a real strategic geography:
- Bury the dirty industry where there is no sunlight to block
- Put renewables above the smog
- Pay for both in accelerated corrosion below
Counter-pressure: underground is already valuable real estate. Core Drills, Deep Scanners and the best Geothermal Taps all live there (06_Vertical Layers). Filling those levels with smelters costs the player that access.
3a.2a Ground contamination leaches downward¶
Contaminants percolate through soil into the levels below. Downward only, with each level receiving a diminished share, and slowly, so the effect arrives well after the cause.
This produces a delayed consequence that is physically intuitive. A player who dumps freely on the surface in the first hours excavates Underground L1 twenty hours later and finds it already contaminated. They were never warned, but they are not cheated either, because it is obvious in hindsight. Effects of this kind are difficult to design deliberately; here it falls out of the physics.
It also disciplines the underground-dumping strategy. Whatever is dumped on an underground level poisons every level beneath it, and the deepest level becomes the sink where everything accumulates. That is precisely where Core Drills and the best Geothermal Taps live (06_Vertical Layers).
What ground contamination does: - Reduces farm yields (irrigation) - Reduces extraction yields, including Core Drills - Degrades water quality for nuclear cooling - Contributes to building decay (corrosive soil)
Open items for this document are tracked in docs/open-items.md.
Contamination is restorable. See §3a.4.
3a.4 Restoration — Soil Remediation¶
Ground contamination can be cleaned up. A poisoned planet is recoverable, not permanently ruined.
Soil Remediation building: consumes power and an organic input from farms — specifically raw_biomass, from either the Biomass Harvester or the Biomass Farm ([27_Organic Farming & Biomass Design](<./27_Organic Farming & Biomass Design.md>)) — slowly reducing ground contamination in a zone.
The guard rail: poisoning is fast, healing is slow¶
⚠️ Remediation must be far slower than contamination. If it cleared contamination at anything near the rate the player creates it, dumping would become consequence-free with a delay, and the entire waste decision (§5) would collapse into a chore.
Slow and expensive keeps the original choice meaningful. It is also true to life.
Bio-remediation closes a loop¶
Bio-remediation is real: plants and microbes that absorb contaminants. Making Soil Remediation consume an organic input gives farming a second customer beyond fuel and polymers, and it means restoring a planet requires having built the renewable side rather than simply throwing power at the problem.
Restoration is per level¶
Because contamination leaches downward (§3a.2a), cleaning the surface does not clean the levels beneath. Remediation must be run on each level, and the deepest level is the hardest, since it is the sink where everything accumulated.
The full cleanup suite¶
| Building | Medium | Notes |
|---|---|---|
| Air Scrubber | Air | Neutralises local atmospheric pollution. Essential underground. §3a.3 |
| Water Treatment | Water, before discharge | Prevents contamination rather than reversing it. §5 |
| Soil Remediation | Ground, already contaminated | The only reversal tool. Slow, power-hungry, farm-fed. |
Open items for this document are tracked in docs/open-items.md.
3a.3 Air Scrubber — the ventilation answer¶
Without a way to clear it, underground pollution only ever rises, and a level eventually becomes unusable. That is a dead end rather than a decision.
Air Scrubber: a building that consumes power to neutralise local pollution.
- Works on any level; essential underground
- Mine ventilation is a genuine engineering discipline, consistent with the teaching goal
- Ties pollution to the power system the same way recycling does (§5): the clean answer costs electricity, so a player choosing it must first solve generation
- Does not vent pollution to another level. Pollution never travels; the scrubber neutralises it.
Open items for this document are tracked in docs/open-items.md.
4. Building Decay¶
Decay is included, but under one hard rule that determines whether players tolerate it.
4.1 The rule¶
Decay is caused by the player's own pollution. It is never a universal tax.
A clean factory decays at essentially zero. A dirty one corrodes. This makes decay a feedback loop the player controls, not a chore imposed on them. Many factory players actively dislike upkeep mechanics, and Factorio deliberately has none; this framing is what separates the two.
4.2 Never destructive¶
- Decay never destroys a building and never loses player progress
- It reduces efficiency until repaired
- Genesis repairs automatically via the existing task queue, so the game stays AFK-safe
- This matches the stated Outpost Mode principle of no death and no failure, keeping the two modes philosophically consistent
4.3 Counters¶
| Counter | Effect |
|---|---|
| Reduce local air pollution | Root cause. Always the best answer. |
| Maintenance module | Roof module slot. Reduces or eliminates decay for that building. |
| Genesis repair task | Automatic, queued, no player input required |
4.4 Decay affects productivity only¶
Decay is a gradient, not a fault. It reduces a building's productivity and does nothing else.
It therefore does not appear on the base ring. Ring status is reserved for binary fault states (stalled, under-voltage, no power). A machine running at 80% is a number, not an alarm.
Decay feeds the existing Analytics tab, which already shows per-building efficiency percentage, colour-coded and sortable worst-first (17_HUD Panel Flap Tab 3). No new UI is required.
In-world, decay dims the cyan working lights on the machine body, scaling emission energy from 2.5 down to roughly 0.9. A worn machine looks tired; a maintained one glows properly. This is the correct channel for it: decay is continuous and brightness is continuous, while the ring handles binary faults. A neglected district reads as visibly duller across the factory. See 07_Art Direction Style Bible §1.7a.
Brightness is an ambient hint, not a readout — the precise figure stays in Analytics.
This resolves what looked like a three-way contest for amber. Only two fault states remain, and they separate cleanly by system. See
07_Art Direction Style Bible§1.7b.
5. Waste Handling — Three Choices¶
All three are valid. Each has a distinct cost, so this is a real decision rather than a right answer.
This applies identically to solid waste and to contaminated water. One structure, two media, so the player learns it once.
| Option | Solid waste | Contaminated water | Up-front cost | Ongoing cost |
|---|---|---|---|---|
| Store | Silo | Tank | Cheap | Space, and logistics forever. Fills and backs up the line. |
| Treat / Recycle | Recycler | Water Treatment plant | New buildings, research | Power draw, and it is significant |
| Dump / Discharge | Dump | Discharge | Nearly free | Ground contamination (§3a.2a), and e-waste attracts hostiles |
The Water Treatment plant is the direct parallel to the Air Scrubber (§3a.3): the clean answer always costs electricity, so a player choosing it must first solve generation.
5.0a Incinerator — controlled disposal¶
Open dumping and incineration are both disposal, but they create different pollutants:
| Method | Cost |
|---|---|
| Open dumping | Ground contamination. Leaches downward (§3a.2a). Hits extraction and farm yields. |
| Incinerator | Power draw plus air pollution. Hits solar and farm yields. Does not leach. |
The player chooses which pollutant they would rather create. Neither is free.
The Incinerator also answers the inevitable "what do I do with 40,000 spare stone", giving surplus a deliberate exit that still costs something.
It recovers heat as power, but recovery is always a fraction of the item's embodied energy, so burning is never better than not producing. In normal use it remains net-negative or break-even. See 20_Belt Logistics - The Router §3b.2.
DEFERRED: per-building waste heat recovery (smelters, refineries, and similar) is a separate system for a later session.
5.1 Nuclear waste is the exception¶
Nuclear waste does not attract scavengers the way e-waste does. Its distinct character is that dumping or leaking it produces severe, long-lasting ground contamination.
It is therefore the one waste stream a player genuinely cannot be lazy about, which is the right feel for it.
Storage gives the Silo a job nobody wants, which is a good use for it. Recycling ties waste directly to the power system, so a player choosing clean disposal must first solve generation. Dumping is the tempting early shortcut that quietly compounds.
Open items for this document are tracked in docs/open-items.md.
6. Hostiles — Scavengers, Not Biters¶
Hostiles in this world are drawn to electronic waste and power signature, not to pollution generally.
Rogue machines and scrap drones assembling themselves from discarded electronics fit a robot world in a way organic monsters never would, and they connect naturally to the drone hostiles already designed for Outpost Mode.
Attraction factors: - E-waste dumped or stockpiled in the open - High local power signature (large generators, dense grids)
This gives dumping a consequence with teeth rather than a rising number, and it links pollution to the existing war and defence layer.
Open items for this document are tracked in docs/open-items.md.
7. Organic Farming — Feedstock, Not Food¶
Nobody eats. This is industrial agriculture for feedstock, which is a genuinely less common framing than survival farming and fits the world.
Authority: [27_Organic Farming & Biomass Design](<./27_Organic Farming & Biomass Design.md>). This section summarises it. Where the two disagree, that document wins.
7.1 Outputs¶
Two families, not three crops. Both are built as a Control Hut plus Bays, where the head is an ordinary building and the bays are extensions with no ports, no module slots and no base ring.
| Family | Head + extension | Output | Feeds into |
|---|---|---|---|
| Biomass Farm | Control Hut + Greenhouse Bay | raw_biomass |
Biomass Burner (25_Power System Design §5.1) · Polymer Sheets at the Chemical Plant · Soil Remediation (§3a.4) |
| Algae Farm | Pond Head + Pond Bay | Algae | Biofuel → Fuel Generator |
Fast-growth timber and bio-polymer crops are removed. Both duplicated
raw_biomass, which has existed since Phase 1 and is already load-bearing through Polymer Sheets. "Wood" was a naming error: the building is the Biomass Burner. Three invented resources were deleted rather than defined. See[27_Organic Farming & Biomass Design](<./27_Organic Farming & Biomass Design.md>)§2.
Wild biomass still exists alongside cultivated. The Biomass Harvester is slow and infinite, needs no inputs and no research; the Farm is volume. The Harvester is outscaled, never outgrown.
7.2 Inputs¶
Water, land, light, fertiliser and power. Light is reduced by air pollution (§2), and greenhouses may run artificial lighting to escape that at the cost of power — an escape only as clean as the grid behind it.
Full specification, including the open question of a captured air input, is in [27_Organic Farming & Biomass Design](<./27_Organic Farming & Biomass Design.md>) §5.
7.3 The strategic axis¶
| Renewable (farm) | Fossil (mine) | |
|---|---|---|
| Speed | Slow | Fast |
| Supply | Infinite | Finite |
| Land use | High | Low |
| Pollution | Low | High |
Farm biomass forever, or strip-mine coal now. Both are legitimate; they simply have different shapes.
It also makes terraforming a polluted planet a meaningful late-game goal rather than a cosmetic one, feeding Soil Remediation (§3a.4) with the organic input it needs.
7.4 Restoration as a third endgame path¶
The endgame is currently open after Milestone 3, with two directions: war effort or supply chain provider.
Restoration is a natural third path, and a peaceful one. Take a planet that has been wrecked — by the player, or by someone else in the shared persistent galaxy — and bring it back.
- Uses systems that now exist rather than requiring new ones
- Gives players who do not want the war layer somewhere meaningful to go
- Fits the shared galaxy: a wrecked planet is a problem another player can be paid to solve
Open items for this document are tracked in docs/open-items.md, area pollution.
9. Revision History¶
| Version | Date | Changes |
|---|---|---|
| 0.2 | 2026-08-27 | §7 rewritten for two farm families instead of three crops. Fast-growth timber and bio-polymer crops removed as duplicates of raw_biomass; "Wood" identified as a naming error. §7.2 now points at 27_Organic Farming & Biomass Design rather than restating inputs. §3a.4 names Soil Remediation's organic input as raw_biomass. §7.3 and §7.4 unchanged apart from one reference to the deleted Wood resource. |
| 0.1 | 2026-08-25 | Initial draft. Three-pollutant model, decay-from-own-pollution rule, three-way waste choice, scavenger hostiles, feedstock farming. |