FIELD GUIDE / Aquaponic raft system

Choose viable fish: temperature, feed and purpose

Compare six practical fish groups, then narrow them by your actual water conditions and a verified hatchery plan.

6 min + guided practiceWorked quantities & explicit assumptionsReview status ↗
3D FIELD MODEL / AQUA–01
Aquaponic raft system: Fish and feed → Separate particles → Support microbial conversion → Supply the plants → Collect and return. Fish tank, solids handling, biofilter, raft bed and sump.1 / TANKFish and feed2 / SOLIDSSeparate particles3 / BIOFILTERSupport microbial conve…4 / BEDSupply the plants5 / SUMPCollect and returnConceptual sequence. Follow the guide for full operation and return.

Loading the interactive model. The complete lesson is available below.

All components and instructions are available without 3D. Illustrative geometry and flow. Not a simulation.
AFTER THIS CHAPTER
  • Compare fish by purpose and temperature.
  • Separate survival from a productive operating range.
  • Prepare an exact-species procurement and care plan.
WORK THE NUMBERS

Fish comparison tool

Filters match a published planning band, not survival limits or stocking permission. Confirm exact species, hatchery requirements and local rules. Temperature alone cannot establish suitability.

6 temperature / purpose candidates

Food

Tilapia

27.229.4°C / 8185°F

Warm, stable systems with an available lawful seedstock supply.

Heating demand in cool seasons; breeding and size variation need management. Confirm the exact species/strain.

Planning-band source ↗
Food

Trout

12.818.3°C / 5565°F

Reliably cool water and strong oxygen delivery.

Higher oxygen requirement; warm weather and cooling failure can dominate the design. Identify trout species and hatchery requirements.

Planning-band source ↗
Food

Catfish

23.929.4°C / 7585°F

Warm-water production with good bottom access and solids collection.

“Catfish” covers multiple species. Confirm hatchery stocking, growth and handling guidance.

Planning-band source ↗
Food

Bass

23.326.7°C / 7480°F

Experienced operators with suitable stock and market.

Predatory behavior, size grading and feed acceptance complicate mixed groups. Identify species before design.

Planning-band source ↗
Ornamental

Goldfish

18.323.9°C / 6575°F

An ornamental or teaching system without a food-fish harvest goal.

Still requires mature filtration, oxygen, welfare and a long-term home; not disposable cycling stock.

Planning-band source ↗
Ornamental

Koi

18.323.9°C / 6575°F

Long-term ornamental systems planned around mature fish.

Large adult space and handling needs; plan lifetime biomass, quarantine and secure containment.

Planning-band source ↗

01 / Choose the fish before the stocking number

Start with the water temperature you can maintain throughout the year, the purpose of the fish and the stock you can obtain lawfully from a reputable source. A fish that survives a short temperature excursion is not necessarily growing or feeding well there.

The table uses published planning bands, not lethal limits. “Trout,” “bass” and “catfish” are broad common names: exact species, strain, age and hatchery guidance must refine the design. Do not assume a pet-store fish or locally caught fish is suitable food-production stock.

Reading: Aquaponics (HLA-6721) · Fish Health Management Considerations in Recirculating Aquaculture Systems—Part 3

02 / Compare candidate groups

OSU’s introductory table supplies the catfish, bass, trout, goldfish and koi temperature bands below. Tilapia uses NMSU’s warmer 81–85°F maximum-growth discussion; different references use different objectives and bands. This difference is kept visible rather than averaged into a false universal optimum.

CandidatePurposePublished planning water bandFeed / constraint
TilapiaFood81–85°F (27.2–29.4°C)Species- and size-appropriate complete tilapia feed. Heating demand in cool seasons; breeding and size variation need management. Confirm the exact species/strain.
TroutFood55–65°F (12.8–18.3°C)Complete trout feed matched to life stage. Higher oxygen requirement; warm weather and cooling failure can dominate the design. Identify trout species and hatchery requirements.
CatfishFood75–85°F (23.9–29.4°C)Complete aquaculture feed for the selected species and size. “Catfish” covers multiple species. Confirm hatchery stocking, growth and handling guidance.
BassFood74–80°F (23.3–26.7°C)Species-appropriate pellets; confirm fish are feed trained. Predatory behavior, size grading and feed acceptance complicate mixed groups. Identify species before design.
GoldfishOrnamental65–75°F (18.3–23.9°C)Complete feed suitable for the stock, sized to mouths. Still requires mature filtration, oxygen, welfare and a long-term home; not disposable cycling stock.
KoiOrnamental65–75°F (18.3–23.9°C)Complete koi feed appropriate to size and temperature. Large adult space and handling needs; plan lifetime biomass, quarantine and secure containment.

Reading: Aquaponics (HLA-6721) · Important Water Quality Parameters in Aquaponics Systems (CR680)

03 / Check the conditions together

NMSU describes about 5 mg/L dissolved oxygen for warmwater fish and about 6.5 mg/L for coldwater trout health and growth. These are source planning references, not alarm thresholds for every species and loading. Confirm operating and emergency limits with the stock supplier or aquaculture specialist.

Temperature influences oxygen capacity, feed intake, waste production and crop fit simultaneously. Tilapia heating and trout cooling can dominate energy use. A cool-water fish system and warm-season basil do not necessarily share an efficient operating point.

Reading: Important Water Quality Parameters in Aquaponics Systems (CR680)

04 / Write a stocking specification

Before buying fish, obtain the scientific name, size range, health history, feed type and size, temperature guidance, transport method and applicable local requirements. Plan quarantine with separate equipment, filtration and water; a spare uncycled bucket is not quarantine capacity.

Use the feed-balance chapter to model a planned ration and growing area, then separately verify fish-tank, oxygen and biofilter capacity. Do not increase fish numbers just because plant leaves look pale.

  1. Log realistic seasonal water temperatures and the cost of controlling them.
  2. Shortlist fish by purpose, exact species, hatchery availability and local permission.
  3. Confirm complete feed availability and appropriate pellet sizes through the growth cycle.
  4. Prepare a cycled quarantine and a supplier-specific transport/acclimation plan.
  5. Stock conservatively within the verified system design, observe closely and increase loading only after stable measurements.

Reading: Fish Health Management Considerations in Recirculating Aquaculture Systems—Part 3

05 / Plan the endpoint

Food fish need a lawful, humane harvest and handling plan before they outgrow the system. Ornamental fish need space and care at mature size, even when their role is to support plant nutrition. Never release unwanted fish into waterways.

The comparison tool filters only the published temperature bands and purpose. A match is a candidate for further design, not a species recommendation or permission to stock. No match is useful evidence that the temperature plan needs reconsideration.

FIELD QUESTIONWhy is “hardy fish” an incomplete purchasing criterion?

Tolerance does not establish good growth, welfare, feed conversion, legal availability or suitability for your seasonal water temperature and treatment capacity.

ILLUSTRATED SYSTEM INVENTORY

Parts & buying criteria

Showing aquaponic raft system. Quantities describe the teaching model. Specify real working volume, support, fittings and instruments for your installation.

01Fish tank1 · illustrated quantity+

Houses fish and receives the pumped return. Feed is an input to this living system.

Inspect: The fish are generic silhouettes, with no species or stocking-rate recommendation. Cutaway reveals the tank interior.

Maintain: Observe behavior and feeding response; keep a record of water tests and changes.

BUYING CRITERIA

Smooth accessible tank, secure cover and species-appropriate volume determined by an aquaculture design.

Supplier links can be added by the publisher. The criteria stand independently.
02Solids separator1 · illustrated quantity+

Intercepts settleable waste before it accumulates in later treatment and growing components.

Inspect: Open the front of the vessel. Brown particles beneath the central baffle represent collected waste, not a settling simulation.

Maintain: Inspect accumulation and remove it on an observation-based schedule without flushing it into the growing bed.

BUYING CRITERIA

Accessible waste drain, removable internals and a design matched to expected solids and flow.

Supplier links can be added by the publisher. The criteria stand independently.
03Biological filter1 · illustrated quantity+

Provides wetted surface for nitrifying organisms. This teaching layout shows a separate biofilter.

Inspect: The blue carriers indicate surface area; cyan flow does not measure nitrification or oxygen availability.

Maintain: Protect the established community during service. Verify nitrogen readings before and after changing loading or equipment.

BUYING CRITERIA

Media and aeration matched to the intended feed load, water conditions and an independently reviewed design.

Supplier links can be added by the publisher. The criteria stand independently.
04Raft growing bed1 · illustrated quantity+

Holds plants above water after solids handling and biofiltration. Roots hang below the raft.

Inspect: Compare the depth of this growing section with the shallow channels in the hydroponic lesson.

Maintain: Keep drains accessible and inspect root congestion. Remove crop debris without sending it downstream.

BUYING CRITERIA

Cleanable bed, supported raft, access to drains and a root-zone aeration plan.

Supplier links can be added by the publisher. The criteria stand independently.
05Sump & return pump1 · illustrated quantity+

Collects gravity drainage and pumps water to the fish tank, closing this particular circuit.

Inspect: This is the lowest collection point. The tank, filters and bed have progressively lower illustrative water levels.

Maintain: Check sump level, intake and leaks. Test whether drainage can be contained when power stops.

BUYING CRITERIA

Usable reserve volume, pump service access, level protection and verified delivery at the required head.

Supplier links can be added by the publisher. The criteria stand independently.
06Air supply1 · illustrated quantity+

A separate air pump supplies diffusers to the fish tank, biofilter and growing bed.

Inspect: White bubbles indicate air delivery only; bubble count is not a dissolved-oxygen reading.

Maintain: Check air lines, diffusers and backup arrangements. Verify oxygen with suitable measurement.

BUYING CRITERIA

Airflow at operating depth, compatible diffusers and resilience reviewed for the living load.

Supplier links can be added by the publisher. The criteria stand independently.
SOURCES & EDITORIAL STATUS

Evidence beside the lesson.

Source checks: September 2026. The geometry, inspection exercises and worksheets are original teaching material. The named organizations have not endorsed or reviewed this site.

Independent specialist review is pending.

Published recipe rates and planning ranges retain their source context. Calculator equations are accounting tools; they do not predict uptake, yield, toxicity or safe stocking. Model dimensions, water speeds, roots and fish counts are illustrative. Verify species, crop, source water and product labels for a real system.

  1. Oklahoma State University ExtensionAquaponics (HLA-6721)

    Coupled fish, microbes and plant needs.

  2. University of Florida IFAS ExtensionFish Health Management Considerations in Recirculating Aquaculture Systems—Part 3

    Biosecurity, quarantine, health monitoring and diagnosis.

  3. New Mexico State University ExtensionImportant Water Quality Parameters in Aquaponics Systems (CR680)

    Fish-system water chemistry, oxygen, temperature and nitrification.

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