Browse results reported at operating plants using formulations supplied by SediLogic. Each record identifies the measurement and its limitations, including missing controls or methods. Filter by application or outcome.
01The field record
44 results, filterable by duty and by what was counted.
Only the volatile organic fraction is potentially treatable. Grit, sand, silt, mineral precipitates and plastics remain at any dose.
The planner calculates lagoon quantities where a written product dose method is available. Each record explains whether our range covers that application. The usual published range is roughly 33 to 66 per cent of the volatile fraction. Results outside that range are included; none predicts your lagoon's outcome.
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.
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.
Accumulated solids had cut hydraulic retention time to 13 days, capping what the facility could put through the plant and putting effluent quality within sight of a limit.
Retention time 13 days to 25 days
Treatment capacity recovered without dredging
Sludge depth and solidsCapacity and retention time
Solids had built to near the surface across a nine-foot section, short-circuiting flow through the lagoon and putting a dredging quotation on the table.
1,290 dry tons digested in 90 days
9,900 cubic yards of hydraulic space recovered
A 6:1 return reported against the dredging quotation
Sludge depth and solidsCapacity and retention time
surface coverage by the grease cap, in three weeks
Field resultConfounded
A fat, oil and grease cap covering the whole lagoon surface, cutting oxygen transfer into the water beneath it and standing between the plant and its irrigation discharge.
Cap thickness 6 in to 2 in
75 per cent less material reported as requiring dredging
Surface aerators were taken out of service during the same period
reduction in total Kjeldahl nitrogen against an untreated lagoon
Field resultUntreated control
Nitrogen in the lagoons was high enough to block land application, and a grease layer was suspected of standing in the way of nitrification.
74 per cent reduction in ammonia
Nitrate 0.3 mg/L to 7.9 mg/L
A second lagoon was left untreated for the duration as a control
Nitrifying organisms do not survive drying, so nothing in SediLogic's dry range can be expected to reproduce this. A nitrogen or ammonia permit is not a duty the launch products address, and this record is published as part of the field record rather than as an offer.
Three restaurant kitchens sharing interceptors that were filling faster than the pump-out schedule could keep up with, with grease backing up into sinks between visits.
A 40 per cent reduction reported in treatment cost
Sludge occupying eight to ten feet of an eleven-foot lagoon, leaving nine per cent of the design capacity available for treatment, against a $600,000 dredging quotation.
0.87 m (2.8 ft) less sludge over 60 days
Treatment capacity 9 per cent to 35 per cent
An untreated area of the same lagoon gained 0.47 m (1.5 ft) over the same period
Sludge depth and solidsCapacity and retention time
Decades of accumulation had left half a metre of freeboard on a four-metre basin, with three and a half metres of it solids, and the retention time gone with it.
Up to 1.5 m in places
Basin capacity 26,154 m³ in April to 28,125 m³ in October
Around 2,000 m³ (54,000 ft³) of capacity recovered
Sludge depth and solidsCapacity and retention time
Nine months of filamentous growth had taken the settled-volume test above 980 ml/L, so the clarifier could not hold solids and the plant was paying to haul them away.
A nitrifying population that would not establish itself, leaving ammonia removal at less than a third of what the permit assumed.
COD removal reported as improved over the same period
Nitrifying organisms do not survive drying. No product in SediLogic's dry range addresses an ammonia or total-nitrogen permit, and this record is published as part of the field record rather than as an offer.
A nitrifying population lost from the plant, and an ammonia figure heading for a limit while it re-established.
No before-and-after ammonia concentrations are published
Nitrifying organisms do not survive drying. No product in SediLogic's dry range addresses an ammonia or total-nitrogen permit, and this record is published as part of the field record rather than as an offer.
Effluent ammonia above what the plant's permit allowed.
Effluent ammonium 397 ppm to 10 ppm
Basin pH raised over the same ten days
Nitrifying organisms do not survive drying. No product in SediLogic's dry range addresses an ammonia or total-nitrogen permit, and this record is published as part of the field record rather than as an offer.
Leachate arriving at the treatment plant with an ammonia concentration in the high hundreds of milligrams per litre.
93 per cent of the reduction inside the first ten hours
Nitrifying organisms do not survive drying. No product in SediLogic's dry range addresses an ammonia or total-nitrogen permit, and this record is published as part of the field record rather than as an offer.
Ammonia running at six to eight milligrams per litre after the plant's nitrifying population failed.
Bench data recorded alongside the plant figures
Nitrifying organisms do not survive drying. No product in SediLogic's dry range addresses an ammonia or total-nitrogen permit, and this record is published as part of the field record rather than as an offer.
Total petroleum hydrocarbons in a separator at more than two hundred times the discharge limit, with pumping the only route to compliance.
22,940 mg/L to 79 mg/L, against a 100 mg/L limit
Annual pumping cost reported down to $1,200
Hydrocarbons
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What these results mean for your lagoon
Your sludge composition, loading and operating conditions may differ from these plants. Use the records to understand the evidence, then assess your own treatable fraction, mixing and product application. Do not use a case-study quantity as a dose rate.
Spike and Puck target settled bottom sludge. Maintain and the cold-water Polar pouch address organic load in the water column. Send your lagoon details for product selection and dosing review. The planner calculates quantities only where a written method is available.