ISO 9001:2015 Certified Company
Quality is our priority · Pure Water | Sustainable Tomorrow

Industrial water treatment

Zero Liquid Discharge (ZLD) Plant

Advanced recovery trains for industrial sites seeking high water recovery and minimal or zero liquid discharge.

Integrated industrial water treatment systems for advanced water recovery
ZLD is an integrated process, not a single treatment vessel; chemistry and mass balance drive equipment selection.

Engineering approach

Start with a mass balance

A ZLD design should be built from wastewater flow, TDS, scaling species, organics, silica, temperature, recovery targets and available energy. Concentration and crystallisation stages must be evaluated against the chemistry and economics of the specific site.

  • Water balance
  • RO recovery
  • Brine concentration
  • Evaporation
  • Crystallisation
  • Scaling control
  • Energy review
  • Salt handling

Process flow

Typical ZLD process train

1Pretreatment
2RO / membrane recovery
3Concentrate management
4Evaporation / concentration
5Crystallisation or solids handling
6Water recovery & reuse

Design & operating considerations

Feed chemistry

Silica, hardness, sulphate, organics and antiscalant compatibility can determine recovery limits.

Mass balance

Every stream—feed, permeate, reject, condensate and solids—should close in the overall water and salt balance.

Energy

Thermal and electrical energy requirements can dominate operating cost at high recovery.

Solids

Crystalliser and salt-handling requirements should be planned before selecting the final process.

Applications

  • High-TDS industrial effluent
  • Chemical and process industries
  • Textile wastewater
  • Water-scarce manufacturing sites
  • High-recovery reuse projects

Support

Aqua Chem Labs can support water analysis, process selection, pilot or jar testing where appropriate, equipment integration and operational troubleshooting.

Final equipment configuration, chemical dosing and operating targets should be based on actual water analysis, plant load and applicable discharge/process requirements.

Technical resource

Detailed engineering guide

Use the expanded ZLD engineering guide for treatment stages, chemistry, mass balance and practical considerations.

Open technical guide

Frequently asked questions

Is ZLD suitable for every wastewater?

Not necessarily. A feasibility study should examine wastewater chemistry, recovery goals, energy, concentrate characteristics and economics.

Does ZLD always use an evaporator?

High-recovery ZLD trains often include thermal concentration, but the exact process depends on the wastewater and recovery target.

What data is needed before a ZLD design?

Flow, TDS, ionic composition, hardness, silica, COD/organics, temperature and the required reuse/discharge target are common starting data.

Need a plant design, service visit or chemical programme?