FIELD GUIDE / Nutrient film technique

Algae in hydroponic reservoirs and channels: find the light, protect the flow

Inspect exposed nutrient solution, restore access and flow, and plan cleaning between crops without guessing a chemical dose.

6 min + guided practiceSourced concepts & guided practiceReview status ↗
In this chapter
3D FIELD MODEL / NFT–01
Nutrient film technique: Start with the solution → Lift and distribute → Pass the root zone → Recover the outflow. Two shallow channels with branched supply and gravity recovery.1 / RESERVOIRStart with the solution2 / PUMPLift and distribute3 / CHANNELSPass the root zone4 / RETURNRecover the outflowConceptual 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
  • Locate exposed nutrient solution throughout a system.
  • Separate algae appearance from a flow or oxygen problem.
  • Plan repairs and cleaning without inventing a live-system chemical dose.

01 / Start with exposed wet surfaces

A functioning hydroponic system supplies water and nutrients. When light reaches that solution or wet growing surfaces, algae can establish. UNH recommends excluding light and cleaning between crops. Follow the green film upstream and downstream rather than assuming the main reservoir is the only source.

Opaque covers are a useful first control, but inspect their fit and suitability. Do not seal air passages that the design needs or block overflow, inspection access and ventilation. A cover that excludes light while preventing a drain check creates a different maintenance problem.

Reading: Hydroponics at Home

02 / Check function as well as appearance

Oklahoma State describes algae obstructing irrigation equipment and attracting nuisance insects, with oxygen consumption during decomposition of dying mats. A thin visible film and a blocked intake are different operating situations. Record the location, extent and effect on delivery before choosing the response.

Check actual flow through each branch, look for restricted screens and inspect root access. Do not rely on the pump’s sound or the return from one channel. Algae control is not a reason to stop needed aeration or let NFT roots dry during a lengthy inspection.

Reading: Algae Control for Greenhouse Production · Small-scale hydroponics

03 / Trace a complete light-leak route

Use this inspection route as a practical checklist. Look during the normal lighting period and include translucent fittings, open plant holes and edges that became exposed after a transplant or harvest. Photograph repeat locations so you can see whether the same gap reopens.

LocationLook forPractical correction
ReservoirTranslucent walls, lifted lid and open service portsUse a suitable opaque cover while preserving access and required airflow
NFT channelsUnoccupied holes, translucent end caps and return fittingsClose unused holes and shade compatible wet components
DWC surfaceGaps around rafts or lidsFit light-excluding pieces without restricting the system
Feed and return tubingClear lengths exposed to lamps or sunUse suitable opaque tubing or an accessible external shade
Plug and media surfacesContinuously wet, illuminated areasReview irrigation and support; do not dry out seedlings
Bench and floorLeaks and nutrient spillsRepair the leak and remove standing water

Reading: Hydro hints: Deep water culture · Cornell Controlled Environment Agriculture Hydroponic Lettuce Handbook (2013)

04 / Make an operating repair safely

If a pump or intake needs hands-on service, isolate electrical equipment as its instructions require and provide an appropriate temporary delivery plan for living plants. Keep the interruption brief and verify function after reassembly. Route cables and water according to the equipment and electrical installation requirements.

Remove accessible debris without pushing it into roots or the recirculating return. Preserve the system’s intended aeration and circulation, but recognize that moving water can still grow algae. Aeration supports roots; it is not a substitute for light exclusion and hygiene.

Feed to the crop program rather than starving the crop to suppress algae. Verify EC and the batch record before changing concentration. A rising EC with falling volume is a useful observation, but it does not establish the exact ion balance or automatically specify a top-up dose.

  1. Identify and record the exposed wet locations and any restricted delivery.
  2. Restore essential flow and aeration, using the equipment’s safe service procedure.
  3. Close light leaks with materials suited to the system and preserve inspection access.
  4. Repair leaks and remove spills around the system.
  5. Recheck actual flow after the repair and review the nutrient record.
  6. Inspect the same points on the next daily round and schedule accessible deep cleaning between crops.

Reading: Small-scale hydroponics · Electrical Conductivity and pH Guide for Hydroponics · Algae Control for Greenhouse Production

05 / Clean first, then disinfect empty equipment

Between crops, remove residues and physically clean serviceable tanks, channels, screens and pump components. Follow material compatibility guidance. Cleaning removes deposits; disinfection is a subsequent step with a suitable labeled product, the specified contact time and any required rinsing.

Do not carry a greenhouse surface-disinfectant concentration into a living nutrient reservoir. This guide specifies no hydrogen peroxide, copper or algaecide dose around roots, and none for fish-connected water. If algae remain disruptive despite light exclusion and maintenance, seek system-specific advice before introducing a treatment.

Reading: Clean and disinfect the greenhouse · Hydroponics at Home

06 / Worked case: a covered tank, a green return

A reservoir has a fitted opaque lid, but a clear return pipe and three empty basket holes show green growth. The remaining crop looks healthy and return flow is still adequate. The inspection has identified exposed locations, not proof of a fertilizer shortage or plant infection.

Shade or replace the compatible clear section, close unused holes and confirm the return remains accessible. Record the spots and monitor flow; remove accessible debris using the operating procedure and schedule full cleaning between crops. If growth interferes with delivery, address that fault promptly instead of waiting for harvest.

FIELD QUESTIONShould you increase fertilizer strength to make the crop outcompete the algae?

No. Follow the crop’s nutrient program, fix light exposure and operating faults, and verify measurements. A stronger solution can create plant stress and does not resolve the exposed wet surface.

Reading: Small-scale hydroponics · Algae Control for Greenhouse Production

ILLUSTRATED SYSTEM INVENTORY

Parts & buying criteria

Build your own parts & cost worksheet →

Showing nutrient film technique. Quantities describe the teaching model. Specify real working volume, support, fittings and instruments for your installation.

01Reservoir1 · illustrated quantity+

Holds the recirculating nutrient solution. This is the common sampling and refill point for both channels.

Inspect: In cutaway view, compare the water surface with the pump intake. The drawing leaves room above the water; it does not specify a working volume.

Maintain: Record the level before adding water. Inspect the cover, clean accessible deposits and keep the intake submerged during use.

BUYING CRITERIA

Opaque, cleanable container rated by its manufacturer for the intended use; accessible lid and drain.

Check size, materials and operating conditions with your chosen supplier before ordering.
02Pump & supply1 · illustrated quantity+

Lifts solution from the reservoir to the channel inlets. Cyan packets indicate the direction of delivery.

Inspect: Follow the rising supply pipe and its branch to each channel. Both inlets need an observable supply.

Maintain: Disconnect power before opening the pump. Inspect its inlet screen and confirm both branches flow after reassembly.

BUYING CRITERIA

Compare the pump curve at the installed lift and pipe resistance; include service access and replacement availability. Supply the pump, timer and any air pump through ground-fault protection (GFCI/RCD), keep plugs and cord connections above the water line with a drip loop, and switch off and unplug before reaching into the solution.

Check size, materials and operating conditions with your chosen supplier before ordering.
03Growing channels1 · illustrated quantity+

Contain the shallow stream beneath the plants and guide it toward the return.

Inspect: Open the cutaway to find the channel floor beneath the roots. The slope is exaggerated for reading.

Maintain: Look along each channel for ponding, debris or an obstructing root mat; inspect the outlet before changing the pump.

BUYING CRITERIA

Removable covers, supported slope, smooth cleanable surfaces and outlets accessible with plants in place.

Check size, materials and operating conditions with your chosen supplier before ordering.
04Plant baskets6 illustrated · illustrated quantity+

Bridge the opening in the channel cover while allowing roots to pass through.

Inspect: In exploded view, the baskets lift above the channels. The open slats reveal the relationship between support and roots.

Maintain: Check that each rim sits securely and that roots are not pinched at transplanting or inspection.

BUYING CRITERIA

Match the basket rim and hole diameter; allow removal without damaging adjacent plants.

Check size, materials and operating conditions with your chosen supplier before ordering.
05Support mediumFor 6 baskets · illustrated quantity+

The illustrated expanded clay supports the seedling in its basket. The channels are not filled with aggregate.

Inspect: Select the brown pebbles and separate the basket in exploded view. Media texture is simplified.

Maintain: Remove loose particles before installation. Inspect whether the starter plug stays appropriately moist.

BUYING CRITERIA

Select a stable grade that stays in the basket; compare water retention, dust and cleaning requirements.

Check size, materials and operating conditions with your chosen supplier before ordering.
06Gravity return1 · illustrated quantity+

Collects channel outflow and brings it back to the reservoir without a second pump.

Inspect: Trace the low ends of both channels into the common return. Inspect the full path before assuming the circuit is clear.

Maintain: Remove obstructions and check for leaks. Test drainage with the pump off during commissioning.

BUYING CRITERIA

Removable unions, supported pipe and sufficient drain capacity under the actual installation conditions.

Check size, materials and operating conditions with your chosen supplier before ordering.
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. University of New Hampshire ExtensionHydroponics at Home

    Algae conditions, light exclusion, aeration and cleaning between crops.

  2. Oklahoma State University ExtensionAlgae Control for Greenhouse Production

    Algae effects, light exclusion and prevention. Chemical treatment tables are not reproduced.

  3. University of Minnesota ExtensionSmall-scale hydroponics

    Root support, transplanting, light, aeration and cleaning.

  4. Oregon State University ExtensionHydro hints: Deep water culture

    Aerated water culture layout and operation.

  5. Cornell University CEA Program (M. Brechner and A. J. Both)Cornell Controlled Environment Agriculture Hydroponic Lettuce Handbook (2013)

    Pond-stage lighting: supplemental 100–200 µmol/m²/s at plant level for a total of 17 mol/m²/d of natural plus supplemental light; the 17 mol/m²/d target having to be matched with downward airflow to prevent tip burn, and the statement that without that airflow the authors were not able to go over 12 mol/m²/d, with the caveat that the data are for cultivar Ostinata only.

  6. Oklahoma State University ExtensionElectrical Conductivity and pH Guide for Hydroponics

    Water analysis, salinity, pH and monitoring.

  7. NSW Department of Primary IndustriesClean and disinfect the greenhouse

    Physical cleaning followed by appropriate disinfection.

CONTINUE LEARNING

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