Product Details:
| Minimum Order Quantity | 1 Piece |
| Capacity | Up to 30 KLD |
| Inlet Flow Rate | Up to 100 m3/hour |
| Installation Type | The installation type of a Zero Liquid Discharge (ZLD) plant depends on the industry needs, space av |
Zero Liquid Discharge (ZLD) is a sustainable wastewater treatment process designed to eliminate liquid waste from a system. It ensures that no effluent is released into the environment — all water is recovered and reused, and solid waste is safely managed.
✅ Key Features:Complete water recovery: Recovers >95% of water from wastewater streams.
Multi-stage treatment: Includes primary, secondary, tertiary, and evaporation/crystallization stages.
Membrane filtration systems: RO (Reverse Osmosis), UF (Ultrafiltration), NF (Nano Filtration).
Thermal systems: Mechanical Vapor Recompression (MVR), Multi-Effect Evaporators (MEE).
Automation: SCADA/PLC-based system for real-time monitoring and control.
Sludge handling system: Filter press or centrifuge for dry solid waste handling.
Modular & Skid-mounted options: For ease of installation and scale-up.
Product Details:
| Capacity | 750kg/hr |
| Automation Grade | Automatic |
| Max Temperature | 30 kld |
| Usage/Application | DOuble effect forced circulation evaporator |
This system operates on the principle of forced circulation and multiple-effect evaporation, where the vapor generated in the first effect is utilized as the heating medium for the second effect — significantly reducing overall steam consumption and energy costs.
✅ Key Features:Forced circulation pump ensures high velocity through the heat exchanger, preventing scaling and fouling.
Double effect design enhances thermal efficiency, reducing operational costs by utilizing vapor energy from the first stage.
Vacuum operation allows evaporation at lower temperatures, preserving the integrity of pharmaceutical ingredients.
Stainless steel construction (SS 316L) ensures hygienic processing, corrosion resistance, and compliance with cGMP standards.
Skid-mounted or customized modular design for seamless integration into pharmaceutical production facilities.
Concentration of active pharmaceutical ingredients (APIs)
Recovery and concentration of solvent-based extractions
Processing of heat-sensitive liquid formulations
Preparation of intermediates and extracts for final drug formulations
Low energy consumption through multiple-effect efficiency
Minimal thermal degradation
Continuous, non-clogging operation
Designed for automated control and consistent product quality