Seawater Desalination

Seawater Desalination Systems — SWRO with Energy Recovery for Islands, Coasts & Industry

UF pretreatment → single-pass SWRO with energy-recovery → remineralisation, producing potable or process water from seawater (TDS ≈ 35,000 ppm) at 2.5–4 kWh/m³. Engineered for island communities, coastal industries, resorts and emergency supply, from 10 m³/day container units to 10,000+ m³/day plants.

Request an SWRO Sizing Sheet Talk to a desalination engineer
WHO potable guidelineEnergy recovery (PX/ERD)2.5–4 kWh/m³10–10,000+ m³/day
seawater application — water treatment equipment detail
Process water system — key stage
seawater application — process component
System component in operation
seawater application — process component
Process detail view
seawater client / installation site visit
On-site / client visit
>

Why SWRO Is an Energy-and-Reliability Problem Before It Is a Water Problem

Seawater is the hardest feed a water plant faces: ~35,000 ppm TDS, algae, organic fouling and temperature swings. The economics hinge on energy consumption (kWh per m³), and the reliability hinges on pretreatment that protects the membranes. A plant without proper energy recovery wastes 30–60% of its energy; a plant without UF/safe pretreatment fouls membranes in weeks instead of years. We design to hold the industry's 2.5–4 kWh/m³ band with energy-recovery devices (pressure exchangers/ERDs), and to WHO potable or your process spec for the product water.

ParameterSeawater feedProduct target
TDS≈ 35,000 ppm< 500 ppm (potable), < 200 ppm typical
Chloride≈ 19,000 ppm< 250 ppm (WHO aesthetic)
Boron4–6 ppm< 0.5–2.4 ppm (WHO / crop-dependent)
SDI / foulingAlgae, silt, oil riskSDI < 3 after UF pretreatment
Energy2.5–4 kWh/m³ with ERD

Our Standard SWRO Process Train

StageEquipmentFunctionKey spec
① Intake & screeningOpen/beach-well intake, drum screenRemove debris, protect downstreamWell intake preferred where geology allows
② PretreatmentUF (hollow-fibre) or DMF + antiscalantRemove algae/silt to protect ROSDI < 3, turbidity < 0.5 NTU
③ Cartridge + dosing5 µm + antiscalant/SHMP dosingFinal protection vs scalingAntiscalant per LSI/Stiff-Davis
④ SWRO trainHigh-pressure SWRO membranesDesalination to < 500 ppmRecovery 40–50%, 55–70 bar
⑤ Energy recoveryPX / ERD pressure exchangerRecover concentrate pressureUp to 60% energy saving
⑥ RemineralisationLimestone/CO₂ or blendingCorrosion control + tasteLSI > 0, hardness per WHO
⑦ Product storagePotable-grade tankStable supply to distributionChlorination as needed

Boron removal (for irrigation/crop water or strict potable limits) is an additional second-pass RO or selective resin step — specified when your target requires it.

Materials We Use (Seawater Is Corrosive)

ComponentMaterialWhy
RO vessels & high-pressure pipingDuplex SS 2205 / FRP with epoxy linerChloride stress-corrosion resistance
Low-pressure pipinguPVC / HDPE / GRPSeawater-tolerant, low cost
Energy-recovery devicePX / ERD (ceramic/SS internals)High-efficiency concentrate recovery
MembranesHigh-rejection SWRO TFCSalt rejection ≥ 99.5%
Product pipingHDPE / SS (post-treatment)Corrosion-safe potable delivery

Standard Capacities (SWRO)

ModelOutputEnergyTypical application
SW-1010 m³/day~1.5 kWContainer unit, small island/village
SW-100100 m³/day~14 kWResort, coastal industry
SW-500500 m³/day~65 kWIsland community, hotel group
SW-20002,000 m³/day~250 kWMunicipal, large resort
SW-5000+5,000+ m³/dayCustomMunicipal / industrial plant

Containerised units are self-contained (intake → product tank) for fast deployment; larger plants are skid-based with on-site civil works.

Engineering Reference — 500 m³/day SWRO for an Island Community

Engineering reference design for this capacity class. Actual delivered desalination projects are summarised on our About page under mutual NDA; full documentation available on request.
ParameterDesign value
FeedOpen seawater, TDS ≈ 35,000 ppm, temperature 25–31 °C
Product500 m³/day, TDS < 300 ppm, chlorine residual maintained
Energy≈ 3.2 kWh/m³ with PX energy recovery
TrainUF pretreat (SDI < 3) → SWRO (45% recovery, 60 bar) → remineralisation
Boron< 1.5 ppm (single-pass, suitable for potable)
PackagingContainerised / skid, diesel or solar-hybrid power ready
Delivery14–20 weeks from PO; deployment 2–4 weeks on site

5 Pitfalls We Design Around

  • Biofouling from open intake — beach-well intake where geology allows; UF + chlorination/dechlorination ahead of RO where not.
  • Energy wasted without recovery — PX/ERD recovers up to 60% of concentrate pressure; we always model energy per m³.
  • Boron exceedance for crops/irrigation — second-pass RO or selective resin where your target is < 1 ppm.
  • Scale from high recovery in warm water — antiscalant dosed per LSI/Stiff-Davis; recovery capped conservatively.
  • Corrosive product water — remineralisation to balance LSI protects your distribution pipes from aggressive RO water.

Standards We Design To

  • WHO Guidelines for Drinking-water Quality
  • ASTM D4195 — Standard guide for seawater RO
  • IDA (International Desalination Association) practices
  • ISO 9001 / ISO 14001 / ISO 45001

Frequently Asked Questions

Q1. What does SWRO cost to run per m³?

With energy recovery, expect roughly 2.5–4 kWh/m³ (about 3.2 in our 500 m³/day reference). Total cost depends on power price, intake type and staffing — we give a full opex estimate with every sizing.

Q2. How reliable is it in a remote island setting?

Containerised units are self-contained with minimal civil works, designed for limited local technical support. We supply remote monitoring and a spares kit sized for 12 months of autonomous operation.

Q3. Can it run on solar / diesel-hybrid power?

Yes — SWRO pairs well with solar-hybrid because ERD cuts the power peak. We size the power system (solar, battery or diesel hybrid) to your load profile.

Q4. How do you handle boron for drinking or irrigation water?

Single-pass SWRO typically delivers ~1–1.5 ppm boron at warm temperatures. If you need < 1 ppm (irrigation, some crops, strict potable), we add a second-pass RO or selective resin step.

Q5. What is the delivery lead time?

Containerised units 14–20 weeks from PO, then 2–4 weeks on-site deployment. Larger skid plants have a longer engineering phase — we give a schedule at quotation.

Q6. Do you provide full installation and training?

Yes — transport, on-site installation, commissioning, operator training and a documented handover are included. Remote video support after handover is standard.

Q7. What is the warranty?

12 months on the complete system plus 36 months on critical parts (SWRO membranes, ERD, UF modules). On-site labour and travel included in the first 12 months.

Q8. Can you integrate a bagged-water or bottling line?

Yes — we supply complete island packages: SWRO product water plus remineralisation and a bagged-water filling line, engineered as one train.

Ready to Turn Seawater Into Your Water Supply?

Get a free SWRO sizing sheet + energy/opex estimate within 24 h.

Request an SWRO Sizing Sheet Talk to a desalination engineer

Technical content reviewed by Ella Liu, Industrial Water Treatment Specialist at Rong Water — 10+ years sizing SWRO, energy-recovery and UF systems for island, coastal and industrial desalination clients.

Get a Quote
Scroll to Top