Durability and Corrosion Resistance PP Material Integrated Sewage Treatment Equipment
PP series integrated sewage treatment equipment, also known as new material integrated sewage treatment equipment, is made of polymer materials. This device is produced through the mold winding integrated molding process, therefore it is presented in the form of a tank.
The internal partition of the tank adopts fully automatic welding technology to ensure precise and reliable connection; The two side heads are injection molded together to further ensure the stability and durability of the overall structure.


The new material integrated sewage treatment equipment adopts a one-time molding and multiple winding production process, with a wall thickness of 10-80mm. Multiple winding refers to the process of winding the bottom layer of the tank body, and after sufficient air cooling, the crystallization of the bottom layer material is completed, and the internal material is fully stress released. Then, the bottom layer surface is heated for the next layer of winding. The number of winding times varies according to the different thicknesses of the tank body joints.
The high modulus polypropylene ring has high stiffness and elastic modulus up to 1850MPa. The winding structure wall and inner wall are reasonably combined, and the structure is scientifically reasonable with good sealing performance and zero leakage.
Adopting the hot state winding molding process, the quality of the fusion joint is high, and the socket and plug have integrated electric welding joints. Electric fusion welding is used to form a closed plastic pipeline system, preventing any harmful substances from entering the soil and causing pollution. We not only focus on cleanliness above ground, but also on environmental protection underground.

| model | Water treatment capacity (m3/d) | outline dimension | weight of equipment | running weight | total installed power | service rating | running expense | running expense | Cable specifications | floor space |
|---|---|---|---|---|---|---|---|---|---|---|
| Length x Width x Height (mm) | (t) | (t) | (kW) | (kW) | (Yuan/ton of water) | (CNY/day) | (mm2) | (m2) | ||
| WSZ-0.25 | 5 | φ2×4.7m | 0.67 | 14.07 | 7.45 | 4.1 | 7.38 | 36.9 | 4 | 19 |
| WSZ-0.5 | 10 | φ2×4.8m | 0.68 | 14.38 | 7.45 | 4.1 | 3.69 | 36.9 | 4 | 20 |
| WSZ-1 | 20 | φ2×5.3m | 0.97 | 16.27 | 9.25 | 5 | 2.25 | 45 | 6 | 24 |
| WSZ-1.25 | 30 | φ2×6.2m | 1.05 | 19.15 | 9.25 | 5 | 1.5 | 45 | 6 | 27 |
| WSZ-1.67 | 40 | φ2.5×6m | 1.45 | 27.9 | 9.85 | 5.3 | 1.2 | 47.7 | 6 | 31 |
| WSZ-2 | 50 | φ2.5×6.6m | 1.6 | 31.5 | 9.85 | 5.3 | 0.95 | 47.7 | 6 | 40 |
| WSZ-2.5 | 60 | φ2.5×7.3m | 1.7 | 35 | 9.85 | 5.3 | 0.8 | 47.7 | 6 | 39 |
| WSZ-3 | 70 | φ2.5×8.1m | 1.9 | 39.1 | 9.85 | 5.3 | 0.68 | 47.7 | 6 | 43 |
| WSZ-3.5 | 80 | φ 2.5×8.8m | 2 | 42.7 | 11.45 | 6.1 | 0.69 | 54.9 | 6 | 48 |
| WSZ-4 | 100 | φ2.5×10.3m | 2.4 | 50.4 | 12.95 | 6.85 | 0.62 | 61.65 | 10 | 53 |
| WSZ-5 | 120 | φ3×9.2m | 2.8 | 63.6 | 15.65 | 8.2 | 0.615 | 73.8 | 10 | 58 |
| WSZ-6 | 150 | φ3×10.8m | 3.1 | 75.2 | 15.65 | 8.2 | 0.49 | 73.8 | 10 | 67 |
| WSZ-7 | 170 | φ3×11.9m | 3.5 | 83.4 | 18.65 | 9.7 | 0.51 | 87.3 | 10 | 71 |
| WSZ-8 | 200 | φ3×13.6m | 4 | 95.9 | 22.35 | 10.8 | 0.486 | 97.2 | 16 | 81 |
| WSZ-10 | 250 | φ3×16.4m | 5 | 116.7 | 25.9 | 13.5 | 0.486 | 121.5 | 16 | 102 |
| WSZ-12.5 | 300 | φ3×10.2m (in two groups) | 5.7 | 137.1 | 25.9 | 13.5 | 0.4 | 121.5 | 16 | 116 |
| WSZ-15 | 360 | φ3×12.2m (in two groups) | 6.9 | 166.6 | 35.5 | 18.5 | 0.46 | 166.5 | 25 | 133 |
| WSZ-17 | 400 | φ3×13.3m (in two groups) | 7.7 | 183 | 35.5 | 18.5 | 0.42 | 166.5 | 25 | 145 |
| WSZ-20 | 500 | φ3×16.1m (in two groups) | 9.7 | 224.5 | 35.5 | 18.5 | 0.33 | 166.5 | 25 | 173 |
