Industrial Reverse Osmosis Membrane Modules Array

Reverse Osmosis Membranes for Difficult Industrial Water

Blue Cycle Limited supplies open-channel flat sheet, high-concentration and high-temperature reverse osmosis membrane modules for industrial wastewater reuse, brine concentration and hot-water desalination. Select the membrane platform according to feed temperature, salinity, fouling risk, operating pressure and the required treatment objective.

Compare Membrane Families

Choose the RO Membrane Platform for Your Feedwater

The three membrane families address different operating limits. Start with the condition that is most difficult to manage—channel fouling, high dissolved-solids concentration or elevated feed temperature—then confirm the model and operating point from the complete water analysis.

Open-channel flat sheet reverse osmosis membrane module and internal flow-disc structure.

Open-Channel Flat Sheet RO Membrane Modules

HD/CDRO Series

The HD/CDRO platform uses an open 1.8 mm feed channel, membrane sheets and flow-guiding discs inside a pressure housing. The flow path creates crossflow and surface turbulence without the narrow feed spacer used in conventional spiral-wound elements. It is intended for industrial water streams where suspended solids, colloids, concentration polarization or channel blockage are important design concerns.

  • Feedwater with elevated fouling or plugging risk
  • Industrial desalination, reuse and zero-liquid-discharge pretreatment
  • Model selection by pressure class, membrane area and required salt rejection
HPRO high-concentration reverse osmosis membrane sheet, flow disc and pressure module.

HPRO High-Concentration Reverse Osmosis Membranes

HPRO membranes are designed for high-salinity streams where the objective is to continue membrane concentration beyond the practical range of conventional high-rejection RO. The lower-rejection concentration design supports brine volume reduction and preparation for downstream evaporation, crystallization or resource-recovery processes.

  • High-TDS wastewater or RO concentrate
  • Brine concentration above the conventional RO range
  • Selection by feed composition, osmotic pressure, scaling potential and target concentration
HT100 high-temperature flat sheet reverse osmosis membrane module.

High-Temperature Flat Sheet RO Membrane Modules

The high-temperature flat sheet RO platform is intended for hot industrial water that would otherwise require cooling before membrane desalination. The HT100 model combines a heat-resistant polyamide composite membrane with an open-channel flat sheet module for high-temperature wastewater and hot-material purification.

  • Pretreated feedwater operating up to 80°C
  • Hot produced water, process water and material purification
  • Selection by temperature, salt concentration, oil and hardness, pressure and reuse target

Match the Membrane to the Limiting Condition

Technical comparison between conventional spiral-wound spacer channel and open-channel flat sheet flow path.

Narrow Feed Channels Can Become the Bottleneck

Particles, colloids and deposits can become trapped inside conventional spacer-filled channels, increasing pressure loss and making cleaning recovery more difficult.

The HD/CDRO platform replaces the narrow spacer channel with an open 1.8 mm flow path formed by membrane sheets and flow-guiding discs. The resulting crossflow and turbulence help reduce channel blockage and concentration polarization.

Conventional RO Reaches a Concentration Limit

As dissolved-solids concentration rises, osmotic pressure, scaling risk and the required operating pressure increase. A standard high-rejection membrane may no longer be the appropriate concentration stage.

HPRO uses a concentration-oriented membrane configuration for high-salinity feed and brine reduction. Final concentration must be evaluated against the salt composition, scaling control, pretreatment and downstream process.

Cooling Hot Feedwater Adds Another Process Step

Standard RO membranes normally require lower feed temperatures. Cooling hot wastewater before RO and reheating the recovered water can add equipment and energy demand.

The HT100 platform allows suitably pretreated feedwater to enter the membrane stage at temperatures up to 80°C, helping simplify hot-water desalination and reuse configurations.

RO Membrane Family Comparison

Selection Point HD/CDRO Open-Channel RO HPRO High-Concentration RO HT100 High-Temperature RO
Primary objective Industrial desalination and reuse with an open feed channel Further concentration of high-TDS water and RO brine Desalination and purification of hot feedwater
Module format Flat sheet membrane with flow-guiding discs Flat sheet concentration membrane and pressure module Heat-resistant flat sheet membrane module
Membrane area 9 or 15 m² by model 15 m² 15 m²
Feed-channel width 1.8 mm Use the confirmed project configuration 1.8 mm
Maximum operating temperature 45°C Below 45°C 80°C
Operating-pressure range Model classes from 30 to 140 bar Below 90 bar Up to 90 bar
Catalog flux range Confirm from water quality and selected HD model 6–15 LMH 5–50 LMH, depending on water quality
Salt-rejection role High-rejection industrial desalination Controlled lower rejection for concentration duty High-rejection hot-water desalination
Best-fit starting point Fouling-prone industrial water, reuse and ZLD High-salinity brine and concentrate reduction Hot produced water and high-temperature process water

*Swipe to view full table on mobile devices.

Note: Catalog values describe the available membrane platforms, not a guaranteed project result. Flux, recovery, rejection, pressure and concentration endpoint depend on feed composition, pretreatment, temperature, scaling control and system design.

HD/CDRO Model Range

HD models provide different membrane areas, pressure classes and salt-rejection levels while retaining the same open-channel flat sheet principle. Use the model table as an initial comparison and confirm the final operating point through feedwater evaluation.

HD open-channel flat sheet reverse osmosis membrane module array.
Model Membrane Area Average Pressure Drop per Module Minimum Salt Rejection Stable Salt Rejection
HD9-140bar 9.0 m² 2–4 bar 98.5% 99.0%
HD15-30bar 15.0 m² 1–3 bar 96.0% 98.0%
HD15-90bar 15.0 m² 2–4 bar 98.0% 99.2%
HD17-30bar 15.0 m² 1–3 bar 96.5% 98.5%
HD17-90bar 15.0 m² 2–4 bar 98.0% 99.2%

Shared HD/CDRO specifications:

  • Anti-fouling polyamide composite RO membrane
  • 1.8 mm open feed channel
  • Maximum operating temperature: 45°C
  • Continuous operating pH: 2–11
  • Short cleaning pH: 1–13 for up to 30 minutes
  • Max continuous temp above pH 10: 35°C
  • Free chlorine tolerance: below 0.1 ppm; complete chlorine removal is recommended

The pressure figure in each model name identifies its pressure class. It does not mean that every project should operate at the maximum class pressure.

Specialized Operating Windows

HPRO High-Concentration Membrane

HPRO is intended for concentration duty rather than maximum permeate salt rejection. Its controlled salt passage supports further volume reduction as brine concentration and osmotic pressure increase.

Membrane area: 15 m²
Catalog flux: 6–15 LMH
Avg module pressure loss: below 3.5 bar
Operating pressure: below 90 bar
Max operating temp: below 45°C
Catalog salt rejection: 40–60%
Cataloged process concentration endpoint: above 200 g/L for suitable configured applications

HPRO should be evaluated with a complete ionic analysis. Calcium, magnesium, silica, sulfate, alkalinity, organics and other scaling or fouling constituents can determine whether additional pretreatment or salt separation is required before concentration.

HPRO high-concentration membrane flow path and concentration schematic.
HT100 high-temperature membrane module cutaway showing internal structure.

HT100 High-Temperature Membrane Module

HT100 is the specified high-temperature flat sheet module for hot-water desalination and reuse.

Membrane material: heat-resistant polyamide composite membrane
Max operating pressure: 90 bar
Membrane area: 15 m²
Recommended feed flow: 650–900 L/h
Maximum feed flow: 1,000 L/h
Min salt rejection: 97.0%
Stable salt rejection: 97.5%
Average pressure drop: 2–4 bar
Feed-channel width: 1.8 mm
Max operating temp: 80°C
Continuous operating pH: 6–8
Single-module recovery: below 45%, depending on water quality
Free chlorine tolerance: below 0.1 ppm; complete chlorine removal is recommended

Reference rejection conditions: 32,000 ppm NaCl solution, 25°C, pH 8.0, 55 bar test pressure and 35% recovery.

Industrial Applications

Industrial wastewater reuse and ZLD membrane system.

Industrial Wastewater Reuse and ZLD

HD/CDRO modules can be evaluated for municipal wastewater reuse, mine water, steel and coking wastewater, and other industrial desalination or zero-liquid-discharge systems where an open feed channel is preferred.

Brine concentration and resource recovery membrane stage.

Brine Concentration and Resource Recovery

HPRO can serve as a membrane concentration stage before evaporation, crystallization or resource-recovery processes. The pretreatment and membrane sequence must be selected from the actual salt composition and target concentrate.

High-temperature produced water treatment facility.

High-Temperature Produced Water

HT100 is designed for hot produced water and other high-temperature wastewater streams where cooling before desalination is undesirable. Oil, hardness, silica, suspended solids and temperature must be addressed together during process selection.

Hot process water and material purification membrane equipment.

Hot Process Water and Material Purification

High-temperature membrane treatment can also be evaluated for chemical processing, power-plant circulating water, pharmaceutical water and other hot-material purification duties when the feed composition and required product-water quality are compatible.

Built Around the Feedwater, Not a Generic RO Element

Open-channel module construction

The flat sheet and flow-disc structure provides a 1.8 mm feed channel without a conventional spacer mesh. This creates a different hydraulic and cleaning path for industrial water with elevated fouling or plugging risk.

Pressure classes for different treatment duties

The HD range includes 30, 90 and 140 bar model classes. HPRO and HT100 extend the selection toward high-concentration and high-temperature duties instead of forcing every feed stream into one membrane configuration.

Membrane-to-system integration

Blue Cycle’s membrane platforms can be incorporated into standardized skid-mounted and containerized treatment equipment. This gives engineering teams a path from membrane selection to a modular treatment package without presenting the equipment as a separate membrane category.

Visible technical boundaries

Model-specific membrane area, pressure drop, temperature, pH, rejection and flow conditions are presented openly so that an inquiry can begin with a defined operating window rather than a generic product claim.

High-Temperature Produced Water Application Experience

In 2021, a high-temperature produced-water project was delivered for Sinopec’s Chunfeng Oilfield. The treatment train combined pretreatment with a high-temperature flat sheet reverse osmosis system so that hot produced water could be desalinated and reused as boiler feedwater for steam-injection operations.

Project Condition Published Project Data
Design feed capacity10,000 m³/day
Feed temperature75–80°C
Feed TDS27,500 mg/L
Feed COD650–800 mg/L
Feed oil50 mg/L
Feed total hardness5,260–6,800 mg/L
Treatment routePretreatment plus high-temperature flat sheet RO
Product-water targetIndustrial boiler-water requirements under GB/T 1576-2018

The case illustrates the role of temperature-resistant membrane equipment in a complete produced-water treatment process. It should not be treated as a guarantee that another feedwater will achieve the same recovery, rejection or operating result.

High-temperature flat sheet reverse osmosis installation for produced-water treatment at Chunfeng Oilfield. Process flow diagram for high-temperature produced water treatment.

When should an open-channel flat sheet RO module be considered?

Consider an open-channel module when the feedwater has a higher risk of particle accumulation, colloidal fouling or channel blockage than a conventional clean-water application. The wider flow path does not eliminate pretreatment or cleaning, but it changes how the feed moves across the membrane and how deposits can be managed.

The HD/CDRO range should be compared by pressure class, membrane area, required rejection, feed flow and the complete water analysis.

How is HPRO different from a conventional high-rejection RO membrane?

A conventional RO membrane is normally selected to maximize salt rejection and produce lower-salinity permeate. HPRO is intended for concentration duty and uses controlled salt passage to continue reducing brine volume as osmotic pressure rises.

It is therefore evaluated by concentration endpoint, scaling risk, operating pressure, downstream treatment and total process balance—not by salt rejection alone.

Can reverse osmosis treat high-temperature water directly?

Only a membrane and module designed for the intended temperature should be used. The HT100 operating window allows suitably pretreated feedwater up to 80°C, while the standard HD/CDRO and HPRO ranges are limited to lower temperatures.

Temperature must be assessed together with pH, pressure, membrane compatibility and feed composition.

What information is needed to select an industrial RO membrane?

Begin with:

  • Feed flow and operating temperature
  • TDS and complete ionic composition
  • pH, COD, suspended solids and turbidity
  • Oil, hardness, silica and other scaling constituents
  • Existing pretreatment
  • Required permeate quality and recovery
  • Target concentrate volume or concentration
  • Available pressure and downstream treatment route

These inputs allow the membrane family and preliminary operating window to be evaluated without assuming that one model fits every industrial water stream.

How should chlorine and membrane cleaning be handled?

The published HD/CDRO and HT100 specifications require free chlorine below 0.1 ppm and recommend complete chlorine removal. Cleaning chemistry must remain within the specified model pH and temperature limits.

Cleaning frequency and chemical selection depend on the actual foulants and should be developed from feedwater analysis and operating data.

Industrial reverse osmosis membrane module ready for installation.

Discuss Your Reverse Osmosis Feedwater

Share the feedwater analysis, temperature, treatment capacity and required product-water or concentrate target. Blue Cycle Limited can use these conditions to discuss the appropriate membrane family and a preliminary system configuration.