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Drilling operations generate large volumes of waste — including drill cuttings, spent drilling fluids, and contaminated liquids — that are increasingly difficult to handle under tightening environmental regulations and rising disposal costs. Poorly managed waste streams can quickly escalate into operational, financial, and compliance risks.
In modern oil and gas projects, operators must balance efficient drilling performance with strict environmental responsibility. Ineffective solids control or outdated waste handling practices can lead to excessive waste volumes, loss of valuable drilling fluids, unstable mud properties, and increased non-productive time (NPT).
Across onshore, offshore, and remote field environments, inconsistent waste management creates additional challenges in logistics, transportation, and regulatory reporting. Without an integrated system, waste becomes a continuous burden — impacting cost efficiency, operational safety, and long-term sustainability targets.

Our Drilling Waste Management System provides a fully integrated, modular approach to managing drilling waste from source to final treatment. Designed for modern drilling environments, it combines mechanical, thermal, and digital technologies to significantly reduce waste volume, recover valuable resources, and ensure full environmental compliance.
By treating drilling waste as a recoverable resource rather than a disposal burden, the system enables operators to improve efficiency while meeting increasingly strict regulatory and sustainability requirements.
The solution integrates seamlessly into existing rig operations, covering the complete waste stream from solids separation to final treatment and disposal or reuse.
Key capabilities include advanced solids control, high-efficiency separation, thermal treatment options, and automated monitoring systems that ensure stable performance and real-time operational visibility.
Whether operating in onshore, offshore, or remote locations, the system is engineered to adapt to varying drilling conditions, mud types, and regulatory frameworks — delivering consistent results across projects.








| Model | HYBZCD930 |
|---|---|
| Capacity | 30 ~ 50Ton/h |
| Drying Capacity | OOC ≤ 5% |
| Max Screen Basket Diameter | 930mm |
| Screen Opening | 0.2 ~ 0.5mm |
| Rotation Speed | 900RPM |
| Separation Coefficient | 420G |
| Lubricating Oil Tank Capacity | 48L |
| Air Knife Inlet Pressure | 0.41MPa |
| Air Knife Supply | 4.8m³/min |
| Washer Pump QTY | 1 pc |
| Main Motor Power | 55kW (75HP) |
| Oil Pump Power | 0.55kW (0.75HP) |
| EX Standard | ExdIIBt4/IECEX/A-TEX |
| Explosion-proof Cabinet Type | Standard Explosion-proof Cabinet |
| Weight | 4200kg |
| Overall Dimensions | 2680×1750×1650mm |
| Model | HYBZLW355x1250-BP |
|---|---|
| Tumbler Diameter | 360mm |
| Tumbler Length | 1271mm |
| Max Capacity | 200GPM(45m³/h) |
| Max Rotation Speed | 3900RPM |
| Normal Rotation Speed | 0~3200RPM |
| Separation Coefficient | 3063 |
| Particle Size | 2-5μm |
| Differential Speed (RPM/min) | 0~40 |
| Differential Torque (N·M) | 3500N·M |
| Differential Speed Ratio | 57:1 |
| Main Motor Power | 37kW(50HP) |
| Helper Motor Power | 11kW(15HP) |
| EX Standard | ExdIIBt4/IECEX/A-TEX |
| Explosion-proof Cabinet Type | Variable Frequency |
| Weight | 3300kg |
| Overall Dimensions | 3305×1638×1277mm |
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