Algae Scrubber Screen Size Calculator

Algae Scrubber Screen Size Calculator

Size a turf algae scrubber screen from food input, system volume, nutrient target, screen type, lighting, lit sides, harvest interval, and safety margin.

Unit system and presets

🌱Scrubber sizing inputs

Use the dry or thawed drained food weight fed per day.

Use actual system volume, not the display label.

Measure or estimate average PAR across the wet screen.

Recommended lit screen
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Run the calculator
Screen dimensions
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Suggested cut size
Nutrient load score
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Food plus nutrient gap
Harvest capacity
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Expected wet algae per harvest

Calculation breakdown

📊Screen sizing reference

12
in² per g/day single side
6
in² per g/day double side
50-150
PAR common scrubber range
7-14
day normal harvest cycle

🧪Screen type comparison grid

Waterfall roughed meshHigh contact, strong oxygenation, reliable for compact sump builds. Baseline efficiency 1.00.
Upflow air bubblerGentle vertical bubbles and submerged screen. Useful for smaller chambers. Efficiency 0.82.
Horizontal trayBroad shallow sheet flow with easy harvest access. Needs even spread. Efficiency 0.78.
High-flow racewayLong illuminated flow path for large systems. Strong if lighting is even. Efficiency 1.08.

📋Screen type sizing factors

Screen typeEfficiency factorBest usePlanning note
Waterfall roughed mesh1.00Mixed reef, fish room sumpRough both sides until algae grips the plastic.
Waterfall slotted pipe0.94Compact vertical sumpSlot width and pipe level affect wet coverage.
Upflow air bubbler0.82Nano and all-in-one tanksAir lift contact is gentler, so size a little larger.
Horizontal tray0.78Low cabinet traysUse a level tray to avoid dry corners.
Floating mat scrubber0.64Ponds, refugium surface matsOpen surface light and flow vary widely.
Chaeto hybrid panel0.70Refugium add-on exportTreat as supplemental, not full turf capacity.
Nano hang-on screen0.88Small back chambersUseful when harvests are frequent and gentle.
High-flow raceway1.08Large stocked displaysWorks best with uniform red/blue coverage.

📏Common tank examples

TankVolumeTypical feedingDouble-lit screen
10 gal nano38 L0.4-0.8 g/day4-8 in² / 26-52 cm²
20 gal cube76 L0.8-1.5 g/day8-14 in² / 52-90 cm²
40 gal breeder151 L1.5-3 g/day14-28 in² / 90-181 cm²
75 gal display284 L3-5 g/day28-48 in² / 181-310 cm²
120 gal reef454 L5-8 g/day48-76 in² / 310-490 cm²
240 gal predator908 L8-14 g/day76-132 in² / 490-852 cm²

💡Light and harvest adjustments

ConditionCalculator effectWhy it mattersBest target
PAR below 50Raises screen areaGrowth is light limited and slower to fill in.Improve spread before shrinking screen.
PAR 70-120Near baselineGood balance for steady turf growth.Keep coverage even across edges.
PAR over 160Slightly raises areaVery high light can pale fresh growth.Shorten photoperiod or diffuse hot spots.
Harvest under 7 daysRaises areaShort intervals leave less standing biomass.Use only for very heavy nutrient export.
Harvest over 14 daysRaises areaOld mats shade lower layers and detach.Keep most screens on a 7-14 day rhythm.

📝Food load conversion table

Daily foodSingle-lit baselineDouble-lit baselineTypical systems
1 g/day12 in² / 77 cm²6 in² / 39 cm²Nano reef, light community
2 g/day24 in² / 155 cm²12 in² / 77 cm²Small reef, planted display
4 g/day48 in² / 310 cm²24 in² / 155 cm²Medium mixed reef
6 g/day72 in² / 465 cm²36 in² / 232 cm²Stocked reef or cichlids
10 g/day120 in² / 774 cm²60 in² / 387 cm²Large predatory system
Screen measurement tip: Count only the wet, illuminated growth area. Pipe slots, clips, dry edges, and shaded frames should not be included in the active screen size.
Adjustment tip: Recalculate after two harvest cycles using real nitrate and phosphate trends. If nutrients fall too fast, reduce photoperiod before cutting the screen smaller.

This measures how much of the invisible stuff (nutrients) is produced by the fish and grows it out using turf algae. An algae scrubber are used to control the fish waste, which is the issue with most tanks today. Oftentimes it’s the waste and not even the livestock that cause an issue. Over-exporting nutrients = starving corals. Not enough waste = starving corals.

Use this to figure out what size screen to get so that it doesn’t over treat or under treat your water. It will keep you from having to guess at capacity. The idea is that the more food, the more you need to feed, and therefore the more you produces waste (nitrogen and phosphate). What you’re treating is not how much water there is but what’s in it (the waste from your fish). One gram a day from one feeder require less screen space than eight grams a day from another.

How to Choose the Right Algae Scrubber Size

The tool calculates roughly 12 square inches of screen for each gram of food per side under single-sided lighting. If you have double sided, then this number scale. If you have double-sided lighting, you double the efficiency and use half the space. It uses more electricity but takes up less space.

The light must be strong enough for algae growth (not too little or too much). Otherwise, your big screen is useless. Turf algae thrive between 50 and 150 PAR, so if you’re below that range, the growth stall and your scrubber becomes nothing but a wet piece of plastic. It won’t grow at all. This means your scrubber becomes nothing but a wet filter. More than 160 PAR might burn (bleach) the algae and/or promote bacterial blooms.

Every single square inch of mesh must get lit up consistently. Just like dark corners, hot spots is wasted energy. The effectiveness of the scrubber depend on how frequently it’s harvested. Never let algae mature to the point where it goes brown and slimy. Old algae shading new growth decrease efficiency.

Adjust your tool based off your harvest interval (ideally 7-14 days). For example, if you are harvesting more than once in three days, increase the size of the screen so there is enough biomass. Don’t take out too much algae or you will deplete the buffer that regulates water chemistry. Take out extra algae but leave enough “turf” to keep processing waste all day.

One other consideration is a target for nutrients. If you’re maintaining high nitrates, for instance, the calculator will recommend more screen surface area so that the scrubber can cope with any nutrient load spikes. There’s also the option to enter a safety margin based on a change in stock/feeding. Having some excess capacity is preferable than insufficient capacity. An undersize scrubber won’t alert you; it simply lets nutrient level climb back up and potentially cause another outbreak of algae in your display.

Designs differ in efficiency. Reference tables provides a guide for comparing different designs and how efficient they are. For example, roughed mesh and waterfall scrubbers is most efficient compared to basic upflow designs. Waterfall models tend to have better water contact and oxygenation, so perform better. The calculator will automatically take into account all of this when you select what type of filter you’re running. There’s no need to remember the exact efficiency percentage of each.

Typically, space limitations mean one design will fit your sump layout. Lighting access dictates how well it performs. To size an algae scrubber, consider it is a balancing act. On one hand, make it large enough to export waste while not stripping out necessary trace elements. Those leftover nutrients is consumed by beneficial bacteria and your corals.

Begin by following the calc’s output and run it through two complete cycles of harvesting. From there, tweak accordingly to your actual nutrient readings. Decrease the photoperiod before downsizing the screen itself if nitrates decreases excessively. That way you won’t experience nuisance algae growth but keep your livestock happy & healthy. It becomes more of a doable routine vs a guessing game.

You should of used this sooner.

Algae Scrubber Screen Size Calculator

Author

  • Ronan Granger

    Hi, I am Ronan Granger, the owner of AquaJocund.com! At AquaJocund, I’m thrilled to take you on a captivating and immersive journey through the wondrous realm of aquariums and aquatic life.

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