Brand: Shanghai Gaotian Model: GTP30-30-5.5 Sewage treatment capacity: 10 (m3/h) Ozone consumption: 0 (g/h) Gas storage tank volume: 600-2000 (m3) Flow meter specifications: 8-100 (m3/h) Outlet pipe diameter: 25-350 (mm) Inlet pipe diameter: 25-350 (mm) Aeration machine power: 0.55~15 (kw) Water pump power: 5.5 (kw) Specifications: GTP30-30-5.5 Processing customization: Yes
Product Features1. Wide applicability
The GTP integrated sewage lifting device has a wide range of models and can meet the actual needs of users with different volumes, heads, and working conditions. Suitable for ordinary public buildings and widely used in all underground facilities that require strong sewage discharge.
2. Easy to clean, non clogging, odorless, and does not require manual cleaning of sewage
During transportation, there is no blockage, entanglement, or odor, and the separated substances are smoothly transported to the sewage pipeline, reaching the designated location and treatment site, ensuring that the equipment truly achieves discharge. It truly solves the problems of blockage, entanglement, odor, and the need for manual cleaning of sewage tanks that are difficult to solve with conventional sewage lifting equipment. The equipment instantly shreds the fiber and particle substances in the sewage and discharges them.
3. Integrated equipment, no need for dedicated supervision, easier management
The specialized mechatronics integrated control electrical intelligent system can start and stop equipment according to changes in sewage volume. Realize unmanned operation and intelligent management.
4. Cost saving and efficient operation
The sewage lifting equipment has a small footprint and does not require a dedicated sewage tank or machine room for sewage discharge, reducing initial investment. Significantly reduce the cost of equipment maintenance and personnel cleaning of sewage tanks in the later stage. The sewage lifting equipment truly achieves fully efficient operation of the pump during operation.
5. Freedom of choice and convenient selection
Different types of lifting pumps can be selected according to different working conditions of users to meet their needs.
3、 Traditional practices
When we build bathrooms in the basement of a building, we often encounter headaches, and in the design process, we often adopt the following two situations. But they all have many drawbacks.
1、 It is to set up a collection pit under the basement floor, collect the sewage from sanitary ware together, and use a submersible sewage pump to lift and discharge it to the outdoor underground sewage pump well;
2、 Drain the sewage from the bathroom into the outdoor underground sewage pump well by gravity, and use a submersible sewage pump to lift and discharge it into the sewage inspection well near the pump well.
One method has three drawbacks:
1. Solid substances such as feces in sewage, if not cleaned up for a long time, can easily cause blockage;
2. Due to the shallow water collection pit, the operation of submersible sewage pumps that start and stop based on water level is not very reliable;
3. The sealing of the water collection pit is poor, there is an odor, and the hygiene condition is not good.
The second method is to build a pump well outdoors, which is deep, requires a large investment, and is inconvenient to manage. In addition, there may be situations where the bathroom in the building is set up in a staggered manner, causing the bathroom to be far away from the drainage riser, but the drainage riser cannot be suspended under the floor slab. In this case, the commonly used method is to thicken the floor cushion layer. The sewage elevator buries the drainage branch pipe in the cushion layer and discharges it into the drainage riser from above the floor slab at a certain slope. The thickness of the cushion layer is relatively thick, sometimes up to 350-400mm, which poses difficulties for the use of the bathroom and the layout of the building.
Taking into account the various issues mentioned above, our GTP integrated sewage lifting device has completely solved the aforementioned confusion.
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