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SediLogic Technologies

Wastewater lagoons

Dairy lagoon, 67,500 cubic yards

Three to four feet of crust across the lagoon, and a pump-out that took two full days because of it.

52.5%

less pumping time

Field result
Duty
Wastewater lagoons
Sector
Agricultural
Treatment window
45 days
What was counted
Sludge depth and solids, Capacity and retention time
  • Pumping 80 hours to 38 hours
  • Crust reduced to around 95 per cent open water
  • Readings recorded at day 30 and day 45
Aerial view of a multi-cell aerated wastewater lagoon, its surface broken by aeration, with grass berms dividing the cells and a small control building alongside.
Illustration — an operating aerated lagoon, not the works described on this page.

01The plant

What was being treated

A 67,500 cubic yard dairy waste lagoon, drawn on for irrigation.

02Before

How the material got there

A manure mat and crust three to four feet thick had set up across the whole surface — fibrous material arriving faster than it broke down, floating, matting together and consolidating. It cost the farm twice over: it occupied storage volume that should have been holding liquid, and it made drawing irrigation water off the lagoon slow. A single pump-out was taking eighty hours, on a schedule the crop set rather than the farm.

03Treatment

What was applied, and how

Dosed weekly across a forty-five day window. Nothing else about the operation changed — no dredging, no added agitation, no equipment and no extra labour, and the lagoon kept taking waste as it always had.

Every result in this library was measured at an operating plant treating with one of the formulations SediLogic supplies, over the window stated above. It is a field result published as reported, not a controlled trial we ran.

04Method

How the result was established

Open water across the surface, crust thickness and the hours needed to pump irrigation water off the lagoon, read at day 30 and again at day 45. The pumping hours are the useful number here, because they are the one the operation actually feels.

05Outcome

What followed

Forty-two hours back per irrigation event, and the storage volume the crust had been occupying returned to the lagoon.

At the start

Three to four feet of manure mat and crust across the surface, and eighty hours to pump a cycle.

At the close

Crust cleared, about 95 per cent open water, and thirty-eight hours to pump — a 52.5 per cent reduction. Scum, bottom sludge and suspended solids all reported substantially down.

06Limits

What this record does not establish.

Pumping time is a proxy. It is a good one, because it is what the farm pays for, but it is not a measurement of solids and nothing here was sampled or analysed. Open water was assessed by eye. No volatile fraction is recorded at either end, nothing was left untreated, and forty-five days of a dairy lagoon is forty-five days of weather that nobody logged. That the routine did not otherwise change is the publisher's account of it.

Only the volatile organic fraction of a sludge responds to any of this. Grit, sand, silt, mineral precipitates and plastics remain at any dose, here and everywhere else.

What we would supply

For this duty, in our range.

This is the duty SediLogic supplies and sizes. Which article depends on where the material sits: Sedivore Spike is the denser solid and carries down through depth to an established blanket, Sedivore Puck is a smaller unit that spreads a calculated dose across the bed, and SediLogic Maintain is a soluble pouch for load carried in the water column — with Sedivore Polar for that same duty where the water runs cold enough to stall a standard blend.

A quantity for your own lagoon comes from the dosing planner, sized against your dimensions and loading from the manufacturer's written dose method. It does not come from the figure on this page, which was set for a lagoon that is not yours.

Read next

The same duty, measured somewhere else.

  • Wastewater lagoons

    Barbourville, Kentucky

    Municipal24 weeks

    43.3%

    of accumulated solids digested

    Field result

    Just over five feet of accumulated solids in the primary aerated lagoon, assessed at 2,365 dry tons. The plant wanted a route that did not involve dredging.

    • 1,025 dry tons removed
    • Average depth 5.08 ft to 2.65 ft
    Sludge depth and solids
  • Wastewater lagoons

    Inkom, Idaho

    MunicipalFive months, May to October

    48%

    reduction in solids volume overall

    Field result

    Accumulated solids across two lagoon cells, against a specification calling for a 50 per cent reduction. The treatment window was bounded by water temperature, which has to stay above roughly 55°F for the organisms to work at all.

    • Cell 1: 75.2 per cent
    • Cell 2: 37.5 per cent
    Sludge depth and solids
  • Wastewater lagoons

    Municipal WWTP, United States

    Municipal3 months

    672,659lb

    of organic solids digested

    Field result

    Decades of loading had taken the lagoon to a measured 20.5 per cent solids, with a dredging quotation in hand and no budget line to meet it.

    • Dredging deferred, not ruled out
    • A 4.5x cost saving against the dredging quotation
    Sludge depth and solids

All field results

Your lagoon next

This was measured somewhere else.

A different plant, a different loading and a different sludge. What decides your result is how much of your own accumulation is organic and treatable, and whether the dose is sized against the lagoon in front of us rather than read off this page. Tell us the dimensions and we will size it.