GN Solids Control is the largest manufacturer of mud processing equipment in the industry. The recently developed mud tank washing system has been on the market for nearly 2 years and has been highly evaluated by customers. The cleaning system is light and convenient, saving labor and timeliness. Sex, cleanliness and cleanliness have a more outstanding performance. Efficient cleaning of multiple mud tanks during on-site use can replace the normal cleaning work of three shifts, saving labor and efficiency and saving energy.
The GN Solids Control GNTC-30B automated wash tank system is a closed loop system for continuous cleaning of mud tanks, tanks, and chemical tanks. The washing tank system supplies clean water to the high-pressure washing machine installed on the mud tank, and the combined pump pumps the sewage back to the washing tank system for filtration and separation, and the clean water is sent back to the high-pressure washing machine for further circulation. With GN Solids Control’s tank washing system, water consumption can be reduced and labor costs can be reduced. The GNTC-30B automated tank washing system can handle up to 30 m3/h.
GNTC-30B main technical parameters:
1, clean water storage volume: 7.5 m3
- Sewage treatment capacity: 30 m3/h
3, system size: 3499x2758x3207mm
4, system weight: 6500 KG
5, the total power: 26.5 Kw
6, the number of pumps: 1 sand pump; 1 vacuum pump, 1 pneumatic diaphragm pump
- The system contains the necessary motor and electronic control. The Chinese explosion-proof standard can be applied to the explosion-proof of Zone I.
The GNTC-30B workflow is as follows:
1) Centrifugal pump (10) Extract clean water from buffer tank (8), supply high pressure washing tank equipment (2) for cleaning mud tank (1). 2) Vacuum pump (4) Extract waste water from mud tank (1). Install a filter (3) between the mud tank (1) and the vacuum pump (4). It is used to filter coarse particles and protect the pump and desilter in the system to reduce wear. 3) The vacuum pump (4) pumps the sewage to the desilter (5) for separating fine particles. 4) The fine particles separated by the mud remover (5) are pumped into the cuttings box (9) through the diaphragm pump (7). 5) The clear water overflowing from the mud remover (5) will enter the inclined plate settlement (6) , further remove precipitated solids. 6) Clear water separated from the sloping plate settlement (6), overflow into the buffer tank (8) 7) Diaphragm pump (7) Conveying the sloping plate (6) Separated sludge containing large particles is transported to the cuttings box ( 9)
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