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Automated Liquid Extraction Pilot Plant

Automated Liquid Extraction Pilot Plant

50000.00 - 500000.00 INR/Pack

Product Details:

  • Color Black, Silver, Blue
  • Equipment Type Laboratory Instrument
  • Equipment Materials Stainless Steel
  • Material SS
  • Application Laboratory
  • Warranty Yes
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Automated Liquid Extraction Pilot Plant Price And Quantity

  • 50000.00 - 500000.00 INR/Pack
  • 1 Pack

Automated Liquid Extraction Pilot Plant Product Specifications

  • SS
  • Black, Silver, Blue
  • Stainless Steel
  • Laboratory Instrument
  • Yes
  • Laboratory

Automated Liquid Extraction Pilot Plant Trade Information

  • 10 Pack Per Month
  • 10-30 Days

Product Description

An Automated Liquid Extraction Pilot Plant, often referred to as a "LE Pilot Plant," is a facility or system used in the chemical and pharmaceutical industries for the development, testing, and scale-up of liquid-liquid extraction processes. Liquid-liquid extraction is a separation technique used to selectively transfer one or more components from one liquid phase (the feed or source) into another liquid phase (the solvent or extractant). This technique is commonly used in industries like pharmaceuticals, petrochemicals, food processing, and environmental remediation.

Here are some key features and components of an Automated Liquid Extraction Pilot Plant:


1. Extraction Vessels: These are containers used to mix the feed solution with the solvent. They come in various sizes and can be jacketed for temperature control.

2. Pumps and Agitators: Pumps are used to transfer the liquid phases between vessels, while agitators ensure thorough mixing. Automation systems control these components for precise operation.

3. Solvent Recovery System: This system collects and separates the solvent from the extract, allowing for its reuse. This is crucial for reducing costs and environmental impact.

4. Automation and Control System: Automation systems control the various processes, including the flow rates, temperature, and timing of the extraction.

5. Monitoring and Instrumentation: Various sensors and instruments, such as pH meters, temperature probes, and flow meters, provide real-time data for process monitoring and control.

6. Safety Features: Safety measures like pressure relief valves, emergency shutdown systems, and ventilation are essential to ensure the safety of the plant and operators.

7. Data Logging and Analysis: The plant often includes data logging systems that record the key parameters, which can then be analyzed for process optimization and quality control.

8. Scale-Up Capability: A pilot plant should have the ability to mimic larger-scale extraction processes, helping researchers and engineers understand how the process will perform on an industrial scale.

9. Flexibility: The system should be designed to handle various solvents, feed materials, and extraction conditions to accommodate different applications and research needs.

The Automated Liquid Extraction Pilot Plant is used for various purposes, including optimizing extraction processes, testing new solvent systems, determining the feasibility of scale-up, and conducting research and development in industries where liquid-liquid extraction is a critical process.

The use of automation in such pilot plants improves precision, consistency, and safety in liquid-liquid extraction processes, making them valuable tools for process development and optimization.

Automated Liquid Extraction Pilot Plant Specifications:


1. Framework of AISI 304 stainless steel with castors

2. Extraction column of borosilicate glass, DN50, consisting of 26 stages, h = 1500 mm, and including stirrer with discs of AISI 316 stainless steel, top and bottom separators of borosilicate glass and variable speed motor (0 to 1000 rpm) with tachogenerator .

3. Extraction column of borosilicate glass, DN 50, h = 1500 mm, with Raschig rings packing, including top and bottom separators of borosilicate glass.

4. 4 graduated tanks of borosilicate glass, with capacity of 25 l

5. Metering double-body pump of AISI 316 stainless steel, with flow rate of 0 to 30 l/h, including pneumatic actuator adjustable with signal of 0.2 to1 bar

6. Pneumatic control valve of AISI 316 stainless steel, DN 15, Cv = 0.13

7. Thermo resistance  with sheath of AISI 316 stainless steel

8. Electronic temperature indicator

9. 3 manual pneumatic control devices

10. Piping and valves of AISI 304 and 316 stainless steel

11. Emergency button
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