SEWAGE TREATMENT
Tricel Maxus - Sewage Treatment Plants
OVERVIEW
Tricel Maxus commercial sewage treatment plants are strong and easy to install, with numerous possible configurations to suit any site.
This sewage treatment plant is simple in operation and easy to maintain over the product’s lifespan.
The Tricel Maxus, is a commercial plant that uses Submerged Aerated Filter (SAF) technology. All electrical components of the plant are connected through the E-III control panel.
Examples of usages include:
- housing estates
- hotels
- restaurants
- campsites
- factories or retail units, to name a few.
These highly versatile systems are individually sized to suit every scenario over 50 Population Equivalent.
If you have any questions, feel free to call us or use our quote form
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To find a technician in your area, visit our page
HOW DOES TRICEL MAXUS WORK?
Tricel Maxus Combi (all in one treatment plant)
Tricel Maxus Combi (all in one treatment plant)
Both the Tricel Maxus and Maxus Combi commercial wastewater treatment systems use the same highly effective SAF technology. This technology treats wastewater through a four-stage process.
Stage 1: The settlement tank
The primary treatment occurs here. As the wastewater enters the Tricel Maxus system, the heavy solids are separated out and settle (forming a sludge on the tank’s base). Subsequently, the lighter solids, such as oils, fats or grease, float to the top of the wastewater and are retained within the settlement tank.
Stage 2: The buffer tank
The incoming water load fluctuations are evened out here. The wastewater is fed forward into the treatment plant thanks to pumps located at the bottom of the buffer tank.
Stage 3: The biological treatment zone
The wastewater passes through, the submerged aerated filter (with a large surface area for the microbes) and is exposed to aeration.
The aeration is matched to the incoming flow to ensure efficient operation, thanks to the adjustments made by the control panel. Because of this, the system will not clog nor need any maintenance or chemicals.
Stage 4: The clarifier
Here, the bio sludge from the treatment process settles out of the treated liquid. Thanks to the airlift pumps, the bio sludge from the tank’s base is recirculated back to the settlement tank. The fully treated liquid is now ready to discharge from the plant.
Key features & benefits
Proven SAF technology providing an excellent treatment.
Low running costs (simple operation using long life reliable components).
Easy to maintain (no moving parts within the commercial plant).
Full bespoke design engineered solutions offered to ensure best performance.
Suitable for seasonal loads or constant loads. The control panel will automatically adjust to the incoming load to ensure optimum performance. This commercial plant can adapt to different loadings or effluent strengths.
Suit any site (can fit into difficult sites or simply save space).
Extensively tested and ETA verified for holiday home applications. System will go into power saving mode during periods of no flow and restart once flow is detected without the need for any manual inputs.
Recent Projects with Tricel Maxus (commercial plant) Sewage Treatment
Tricel Maxus (circular shape) installations
Tricel Maxus (rectangular shape) installations
Technical Characteristics Of Tricel's commercial plants
1. TRICEL MAXUS COMBI RANGE (ALL IN ONE TANK)
System overview
Dimensions for the Tricel Combi Model A, suitable for standard installations:
The invert level on Model A is 520mm, making it ideal for installations where the system is positioned low to the ground. This allows for either gravity flow into the system or water to be pumped into it.
Dimensions for the Tricel Combi Model B, designed for sites with a low invert to avoid using risers and minimise the risk of surface water entering the tank:
The invert level on Model B is 1620mm, suitable for situations where water cannot flow by gravity to Model A but can flow by gravity to Model B without the need for pumping.
2. TRICEL MAXUS RANGE (MULTI TANKS)
Tricel Maxus (circular shape)
Tricel Maxus (rectangular shape)
Tricel Maxus (circular shape)
Tricel Maxus (rectangular shape)
Tricel Maxus (circular shape)
Tricel Maxus (rectangular shape)
TRICEL MAXUS SEWAGE TREATMENT PLANTS DIMENSIONS
The table below provides the dimensions of the Tricel Maxus Combi (all-in-one) treatment plants.
Tricel can recommend the optimal Maxus Combi solution for your project based on the population equivalent (PE) and the required treatment level.
Combi 3A/B | Combi 4A/B | Combi 5A/B | Combi 6A/B | Combi 7A/B | Combi 8A/B | Combi 9A/B | |
---|---|---|---|---|---|---|---|
Height (m) | 2.42 | 2.42 | 2.42 | 2.42 | 2.42 | 2.42 | 2.42 |
Width (m) | 2.30 | 2.30 | 2.30 | 2.30 | 2.30 | 2.30 | 2.30 |
Length (m) | 5.782 | 6.975 | 8.497 | 10.212 | 11.126 | 12.209 | 12.9 |
Weight (kg) | 1,650 | 1,950 | 2,550 | 3,250 | 3,650 | 4,300 | 4,750 |
Weight w. water (kg) | 23,553 | 28,830 | 35,723 | 43,544 | 47,711 | 52,874 | 54,648 |
Septic tank size (A/B) (m3) | 9.1/7.4 | 11.8/10.1 | 15.2/13.5 | 19.7/18.0 | 20.8/19.1 | 22.7/21.0 | 23.3/21.6 |
Buffer tank size (m3) | 1.65 | 2.25 | 3 | 3.75 | 4.50 | 5.25 | 6 |
Power consumption at max load (kWh/d) | 6.3 | 6.3 | 8.9 | 12.7 | 12.7 | 20.6 | 21.5 |
Power consumption at min load (kWh/d)* | 1.9 | 1.9 | 2.7 | 3.8 | 3.8 | 6.2 | 6.5 |
In-outlet pipe connection (mm) | 160/160 | 160/160 | 160/160 | 160/160 | 160/160 | 160/160 | 160/160 |
Diaphragm Blower(s). Installed in the integrated tech box | 1 x 400lpm | 1 x 400lpm | 2 x 300lpm | 2 x 400lpm | 2 x 400lpm | 2 x 400lpm +2 x 240lpm | 2 x 400lpm +2 x 300lpm |
Pumps in pump well | 2 x 550W grinder pump | 2 x 550W grinder pump | 2 x 550W grinder pump | 2 x 750W grinder pump | 2 x 750W grinder pump | 2 x 750W grinder pump | 2 x 750W grinder pump |
Pumps in buffer tank | 2 x 370W sewage pump | 2 x 370W sewage pump | 2 x 370W sewage pump | 2 x 370W sewage pump | 2 x 370W sewage pump | 2 x 370W sewage pump | 2 x 370W sewage pump |
*Reduced energy consumption when loadings are lower.
The table below shows Tricel Maxus (multi-tanks) system sizes, but each system is designed to suit project requirements.
Code | PE | Settlement And Buffer Tank* | Length (M) | Width (M) | Height (M) | Treatment Plant | Length (M) | Width (M) | Height (M) |
---|---|---|---|---|---|---|---|---|---|
Tank | Plant Shape** | ||||||||
66M5000 | 66 | Settlement | 6.60 | 1.64 | 2.05 | Circular | 2.00 | 2.00 | 2.20 |
Buffer | 1.60 | 1.64 | 2.05 | ||||||
88M6000 | 88 | Settlement | 6.60 | 1.64 | 2.05 | Circular | 2.30 | 2.30 | 2.20 |
Buffer | 3.60 | 1.64 | 2.05 | ||||||
112J25 | 112 | Settlement | 6.60 | 1.64 | 2.05 | Rectangular | 2.80 | 2.16 | 2.22 |
Buffer | 6.60 | 1.64 | 2.05 | ||||||
154J50 | 154 | Combined | 5.70 | 2.87 | 2.70 | Rectangular | 3.30 | 2.16 | 2.22 |
175J75 | 175 | Combined | 6.17 | 2.87 | 2.70 | Rectangular | 3.95 | 2.16 | 2.22 |
238J100 | 238 | Combined | 9.05 | 2.87 | 2.70 | Rectangular | 5.45 | 2.16 | 2.22 |
294J50X2 | 294 | Combined | 10.89 | 2.87 | 2.70 | Rectangular | 6.60 | 2.16 | 2.22 |
285J75X2 | 385 | Combined | 14.12 | 2.87 | 2.70 | Rectangular | 7.90 | 2.16 | 2.22 |
560J100X2 | 560 | Settlement | 9.95 | 2.87 | 2.70 | Rectangular | 10.90 | 2.16 | 2.22 |
Buffer | 9.95 | 2.87 | 2.70 |
*All settlement and buffer tank dimensions are for GRP tanks as standard. Concrete options are available.
** Please note, the treatment plant is circular for up to 88PE and rectangular for plants over 88PE.
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CONSULT THE BOCHURE
Learn more about the Tricel Maxus
key features
Proven SAF technology
Operates using Submerged Aerated Filter (SAF) technology.
Versatile technology
Can adapt to different loadings or effluent strengths.
Swift back up and service
Ensured by our dedicated UK team.
Tricel manufacture deliver & install sewage treatment plants across a wide range of industry sectors throughout Ireland & the UK. Tricel also provide import/export services for our international clients. This top quality material offers outstanding capabilities including long life, durability and is a cost-effective solution for sewage treatment even in the harshest environments.
Tricel has installed some of its Tricel Maxus Sewage Treatment Plants accross the UK.
Check some of our projects by cliching on the button below.
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SEWAGE TREATMENT PLANTS
Plants available for all capacities, from 1PE up to 50PE. Free advice on request.
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Frequently Asked Questions
A cesspool is a simple storage vessel with an inlet and no outlet. It’s a sealed storage vessel; all the water coming in stays within the tank. The advantage is it doesn’t need an outlet. The disadvantages are: there is no treatment, the tanks are huge, and it needs regular emptying. Everything which has gone in must be sucked out. Ideal for sites which have got very infrequent use (Sheppard huts, for example).
A septic tank has an inlet and an outlet; it’s a simple overflow system. See how a septic tank works here. The advantages of the septic tank are there is no mechanic and no electricity requirement for it to work. The disadvantages are you are discharging dirty water, and untreated sewage effluent, as a tiny breakdown has occurred in the tank. You can only release water to a drainage field for the water to go through the subsoil to treat the water.
A sewage or package treatment plant has an inlet and an outlet; the wastewater is treated inside the tank. Aeration is provided inside the tank for the aerobic bacteria to feed on the waste and remove it from the liquid. The advantages are the wastewater is treated and can be discharged to a watercourse.
Many package treatment plants are available on the market:
- Trickles filters
- Rotating Biological Contactors (RBC)
- Mobile media bio-reactors
- Activated Sludge systems
- Sequence Batch Reactor systems (SBR)
- Fixed Bed Systems (like the Tricel Novo)
Domestic wastewater is all wastewater generated inside the house, including grey water from sinks, showers, baths and sewage from toilets. Rainwater is not classified as greywater and should be directed to a soakaway.
A trial hole can be dug during the site assessment and left open for 48 hours to determine this. The ground level is used to measure the water level.
After the water is discharged, it must flow into a drainage field or a running watercourse. It will fail and block up very quickly whenever it is released directly into the ground. It will also violate the government’s General Binding Rules for small sewage discharges—more information on this page.
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