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AI Driven Automatic Liquid Level Control System For Flotation Cells

AI Driven Automatic Liquid Level Control System For Flotation Cells

Brand Name Staurk
Model Number XJK SF JJF Series
Certification CE ISO
Place of Origin China
Minimum Order Quantity 1
Price 2000USD-80000USD
Payment Terms T/T
Supply Ability 50 sets
Delivery Time 30 days
Packaging Details Container or Bulk Cargo Ship or Flat Rack
Processing capacity 20TPD-3000TPD
Input Size 200mesh
Origin China Manufacturer
After Sale Service Our Engineers Will Do Installtion And Commissioning And Training On Site If Need
OEM Acceptable (buyer Provide Drawings)
Motor Brand China Famous Brand
Years Experience More Than 20 Years
Service before sale General drawing avaliable
Quality Inspection Acceptable by third party like SGS,TUV,etc
Detailed Product Description

AI-driven automatic liquid level control system for flotation cells

 

1.Product Introduction Ore Beneficiation Equipment

 

The AI-Driven Automated Level Control System is the intelligent core of flotation cell management. By integrating high-precision sensors with AI algorithms, it enables real-time monitoring and dynamic regulation of pulp levels. The system architecture consists of a Perception Layer (ultrasonic/float level gauges), a Control Layer (PLC + AI Engine), and an Execution Layer (electric valves or VFD pumps). It provides millisecond-level response to fluctuations, ensuring a stable froth layer and significantly enhancing separation efficiency. Furthermore, it supports seamless integration with reagent dosing and froth imaging modules to establish a comprehensive, closed-loop intelligent control system.

 

 

2.Application Ore Beneficiation Equipment

  • Large-Scale Polymetallic Concentrators: Stabilizing pulp levels during roughing and cleaning stages to maximize concentrate grade and recovery.

  • High-Value Associated Mineral Recovery: Enhancing micro-fine mineral capture in Cu-Mo separation and gold tailings reprocessing through precision level management.

  • Smart Retrofitting of Legacy Plants: Replacing manual weir adjustment with automated systems to transition from "experience-driven" to "data-driven" operations.

  • Tailings & Environmental Management: Enabling interlocked level control in tailings pump pits and thickeners to mitigate spill risks and reduce water consumption.

  • Laboratory & Pilot Platforms: Supporting collaborative level control experiments across multi-cell series to facilitate flotation kinetics research.

 

3.Working Principle Ore Beneficiation Equipment

  • Perception Layer: Utilizing dual-redundant sensors (ultrasonic + float) to collect real-time pulp level data, combined with froth imaging analyzers to identify mineral enrichment status.

  • Control Layer: The AI model fuses parameters such as slurry density and feed rate to dynamically optimize PID control strategies, providing advanced disturbance compensation and precise regulation through a combination of feedback and feed-forward loops.

  • Execution Layer: Adjusts the opening degree of discharge valves or pump frequencies to regulate discharge flow, thereby stabilizing the froth layer thickness.

  • HMI (Human-Machine Interface): The supervisory system provides visual displays of level curves, control commands, and alarm logs, supporting remote monitoring and automated alerts.

 

4.Advantages Ore Beneficiation Equipment

  • High-Precision Control: Maintains level accuracy within ±2mm, a 70% improvement over manual adjustment.

  • Rapid Response: System response time is <3 seconds, preventing efficiency drops caused by sudden surges or level fluctuations.

  • Increased Recovery: Boosts concentrate recovery by 2%–7% while reducing tailings grade by 30%–50%.

  • Energy & Resource Savings: Optimizes aeration and discharge flows to achieve 8%–12% energy savings.

  • Stability & Reliability: Boasts a system availability rate of >99% and a fault prediction accuracy of >90%.

  • Extensibility: Supports linkage with reagent dosing, density, and grade analysis systems to build a Digital Twin of the plant.

  • Significant ROI: For a 1,000 t/d plant, the system can potentially increase annual concentrate production by 12,000 tons, leading to a rapid return on investment.

 

5.Technical Specifications

 

CategoryModelEffective Volume (m³)Capacity (m³/min)Impeller Diameter (mm)Impeller RPM (r/min)Motor Power (kW) - AgitatingMotor Power (kW) - ScraperSingle Weight (t)
XJK type Flotation machineXJK-0.350.350.18-0.43004801.50.750.6
 XJK-0.620.620.3-0.935040031.10.9
 XJK-1.11.10.6-1.65003305.51.11.3
 XJK-2.82.81.5-3.5600280111.52.5
 XJK-5.85.85-7750240151.53.6
SF type Flotation machineSF-0.370.370.2-0.4300352-4421.50.550.5
 SF-0.650.650.3-1.035033631.11
 SF-1.21.20.6-1.64502985.51.11.5
 SF-2.82.81.5-3.5550268111.52.3
 SF-442-4650237152.22.8
 SF-884-8760191302.24.3
 SF-10105-107601913034.6
 SF-16166-168501804537.8
 SF-20208-207301865539.8
JJF type Flotation machineJJF-221-3370400111.11.9
 JJF-442-4410305151.52.3
 JJF-884-8540233222.24.5
 JJF-10105-10540233222.24.9
 JJF-16165-16700180372.28.2
 JJF-20205-20730180372.210.5

 

6.Our Solutions

 

 

Product Tags: Automatic Liquid Level Control System   AI Driven Level Control System  
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