Gulf Union Ozone supplies a complete range of ion exchange water softeners, dealkalisers, and demineraliser systems for industrial boiler feed water, process water, and ultrapure water applications across Saudi Arabia. Our portfolio covers simplex and duplex twin-alternating water softeners on sodium-cycle strong cation exchange resin (40–6,000 litres resin capacity), automatic Fleck, Autotrol, and Clack regeneration valves with brine tanks, weak acid cation (WAC) dealkalisers for bicarbonate reduction and CO2 degassing, strong base anion (SBA) exchangers for nitrate, sulphate, fluoride, and arsenic removal, two-bed demineraliser (DM) plants combining cation and anion columns to produce deionised water at less than 10 µS/cm, mixed bed polishers delivering ultrapure water at less than 0.1 µS/cm and less than 50 ppb SiO2, electrodeionisation (EDI) modules for continuous chemical-free ultrapure water production, and condensate polishers for boiler feed quality maintenance. Ion exchange resins from Dow Amberlite, Lanxess Lewatit, and Purolite. Pressure vessels to ASME Section VIII; control systems to BS EN 13443-2. Systems engineered to SASO 4637, Saudi Aramco boiler water specifications, and SABIC process water requirements. ISO 9001:2015 certified (CR 4030570569). Stocked in Jeddah.

Gulf Union Ozone carries six ion exchange water treatment system families covering the full spectrum from basic hardness removal to chemical-free ultrapure water production, all engineered to internationally recognised ASME, BS EN 13443, and SASO standards for industrial facilities across Saudi Arabia.
Twin-alternating duplex water softeners using sodium-cycle strong acid cation (SAC) exchange resin to remove calcium and magnesium hardness from Saudi Arabia feedwater (200–800 ppm as CaCO3 from municipal desalinated water and groundwater sources). One vessel remains in service while the second regenerates with NaCl brine, ensuring uninterrupted 24/7 soft water supply — the essential configuration for boiler feed water, cooling tower make-up, and process water where continuous service is critical. Automatic Fleck 2900SE, Autotrol 268/742, or Clack WS control valves with time-clock or volume-meter initiated regeneration, adjustable brine concentration, and programmable regeneration cycles. Resin volumes from 2 × 100 litres to 2 × 6,000 litres in FRP or SS 316L vessels; flow rates from 2 m³/h to 80 m³/h. Brine tank with salt saturator and refill valve included. Dow Amberlite IR120H, Lanxess Lewatit MonoPlus S100, or Purolite C100E strong cation resin — all approved to NSF/ANSI 61 for drinking water contact. Pressure vessels to ASME Section VIII; control valves to BS EN 13443-2. Factory acceptance test (FAT) records provided. SASO 4637 compliant for potable water softening. Saudi Aramco GI-0002.711 boiler feed water treatment sizing available on request.
Dealkaliser units using weak acid cation (WAC) exchange resin to selectively remove bicarbonate-associated hardness (calcium and magnesium bicarbonate), reducing total alkalinity by 80–90% and releasing CO2 which is then stripped in a downstream forced-draft degassing tower. Unlike strong acid cation softeners, WAC resins exchange only against ions associated with bicarbonate (temporary hardness), consuming significantly less regenerant acid (H2SO4 or HCl) per litre of treated water. The output from a dealkaliser-degasser combination is water with alkalinity below 10 ppm as CaCO3 and free CO2 below 5 ppm, dramatically reducing the anion resin load in a downstream DM plant and extending regeneration cycle times. This configuration is the standard pre-treatment stage for high-output two-bed DM plants in Saudi Arabia power generation, SABIC chemical plants, and large industrial facilities where chemical consumption and regeneration frequency are critical operational cost drivers. Lanxess Lewatit CNP80 or Purolite C104 WAC resin in FRP vessels; acid regenerant circuit with metering pump and eductor; forced-draft packed tower CO2 degasser with blower and level control included. Flow rates from 2 m³/h to 60 m³/h.
Two-bed demineraliser (DM) plants combining a strong acid cation (SAC) column in hydrogen form and a strong base anion (SBA) column in hydroxyl form to remove all dissolved salts from feedwater, producing deionised water with conductivity below 10 µS/cm and TDS below 5 ppm suitable for medium-pressure boilers (up to 60 bar), textile wet processing, battery electrolyte make-up, and general industrial process water in Saudi Arabia. The cation column exchanges all cations (calcium, magnesium, sodium, potassium, iron) for hydrogen ions; the anion column exchanges all anions (chloride, sulphate, bicarbonate, nitrate, silica) for hydroxyl ions, yielding pure water. Regenerant: hydrochloric acid (HCl) or sulphuric acid (H2SO4) for cation resin; caustic soda (NaOH) for anion resin. Regeneration waste neutralised in an effluent neutralisation tank before drain. Dowex/Amberlite SAC and SBA resins or Lanxess Lewatit equivalents; FRP or rubber-lined steel vessels; fully automatic PLC-controlled regeneration sequences with conductivity endpoint monitoring. Skid-mounted complete packages from 0.5 m³/h to 60 m³/h. Duplex parallel train options for continuous service. Intermediate CO2 degassing column available to improve anion exchange efficiency and extend run lengths.
Mixed bed ion exchange polishers containing an intimate mixture of strong acid cation (SAC) and strong base anion (SBA) resin in a single vessel, acting as an infinite number of alternating cation-anion exchange stages. Output water quality: conductivity below 0.1 µS/cm (resistivity above 10 MΩ·cm), SiO2 below 50 ppb, sodium below 1 ppb — meeting high-pressure boiler drum requirements (above 100 bar), power plant turbine cycle water quality, and semiconductor-grade ultrapure water specifications. Mixed bed polishers are installed downstream of two-bed DM plants as a final polishing stage, or downstream of RO membrane systems. When exhausted, the mixed bed vessel is isolated, resin hydraulically separated into cation and anion fractions, and regenerated separately with HCl and NaOH before remixing with air and returning to service. Pharmaceutical-grade mixed bed polishers use NSF/ANSI 61 approved resin meeting USP Purified Water conductivity (less than 1.3 µS/cm) and TOC (less than 500 ppb) limits; IQ/OQ/PQ validation documentation available. Purolite NRW100, Lanxess Lewatit MBSplus, or Dow Amberlite MB20 mixed bed resin. SS 316L vessels for pharmaceutical service; FRP or rubber-lined steel for industrial service. Sizes from 50 litres to 3,000 litres resin per vessel.
Electrodeionisation (EDI) modules produce continuous ultrapure water at conductivity below 0.1 µS/cm and SiO2 below 10 ppb without the need for chemical regeneration with acid or caustic, using a DC electric field applied across alternating cation and anion exchange membranes interspersed with ion exchange resin beads. Ions are continuously driven through the membranes into concentrate streams and removed, eliminating the service-regeneration cycling and chemical handling of conventional mixed bed systems. EDI is installed downstream of RO membranes (typically two-pass BWRO) which pre-treat the feedwater to below 50 µS/cm — the RO removes the bulk of dissolved solids and the EDI polishes to ultrapure specification continuously. Applications in Saudi Arabia include pharmaceutical UPW systems compliant with USP Purified Water and ASTM D1193 Type I, semiconductor wafer cleaning rinse water, laboratory analytical instrument feed, and power plant condensate polishing where continuous operation without chemical shutdown is required. EDI module suppliers include SnowPure Electropure, Siemens E-Cell, and Evoqua Ionpure stacked plate modules. Systems configured in series or parallel arrays for flows from 0.5 m³/h to 100+ m³/h. No chemical storage, no neutralisation tank, significant reduction in operating expenditure vs mixed bed resin replacement. Gulf Union Ozone supplies complete EDI skid packages with feed water quality monitoring, conductivity control, and alarm systems.
Condensate polishers remove corrosion products (iron, copper, nickel oxides), trace dissolved solids, and ingressed cooling water contaminants (sodium, chloride, hardness) from power plant and industrial boiler condensate return streams, maintaining steam cycle water chemistry within tight limits to protect boiler tubes, steam turbines, and heat exchangers from corrosion and scale. Deep-bed condensate polishers use a full-flow or part-flow configuration with powdered or granular ion exchange resin — full-flow polishers treat 100% of condensate return through deep-bed mixed or cation-form resin vessels at high linear velocities (50–100 m/h). For power plants operating at above 100 bar drum pressure (critical and supercritical boilers), sodium leakage below 1 ppb and conductivity below 0.1 µS/cm are required to prevent stress corrosion cracking of turbine blades and caustic attack on boiler tubes. Ammonia-cycle (NH4-form) condensate polishers maintain feedwater pH control without external chemical injection. External regeneration systems using dedicated regeneration vessels allow continuous full-flow polishing service without plant interruption. Vessel materials: rubber-lined carbon steel or SS 316L. Resin: Purolite MB400 or Lanxess Lewatit MonoPlus resin. Gulf Union Ozone designs condensate polisher packages for Jeddah, Yanbu, and Jubail power and industrial plants to EPRI and Saudi Aramco steam cycle chemistry guidelines.
All systems supplied with pressure vessel test certificates, resin specification sheets, and factory acceptance test (FAT) records. ASME Section VIII vessels; BS EN 13443-2 control valves. NSF/ANSI 61 resin available for drinking water contact. ISO 9001:2015 QMS (CR 4030570569).
| Type / Configuration | Flow Rate | Resin Volume / Vessel | Output Water Quality | Application |
|---|---|---|---|---|
| Simplex Water Softener — Manual Valve (Small Residential) | Up to 1.5 m³/h | 30–80 L SAC resin, FRP vessel | Hardness <1 ppm CaCO3; NaCl regenerant | Small commercial buildings, villas, light laboratory water in Saudi Arabia |
| Simplex Water Softener — Auto Fleck 2900 (Small Commercial) | Up to 4 m³/h | 100–200 L SAC resin, FRP vessel | Hardness <1 ppm CaCO3; time or volume-metered regeneration | Restaurants, clinics, small hotels, office buildings in Saudi Arabia |
| Simplex Water Softener — Auto Clack WS1.5 (Medium Commercial) | Up to 8 m³/h | 200–400 L SAC resin, FRP vessel | Hardness <1 ppm CaCO3; metered regeneration | Hospitals, medium commercial laundries, food factories — single-shift service |
| Simplex Water Softener — Large Auto Autotrol 255/760 (Industrial) | Up to 15 m³/h | 400–1,000 L SAC resin, FRP vessel | Hardness <1 ppm CaCO3; time-clock or volume control | Industrial process water, cooling tower make-up — single-shift operation Saudi Arabia |
| Duplex Water Softener — Twin-Alternating Auto (Small, Fleck 2900S) | Up to 5 m³/h | 2 × 100–250 L SAC resin, FRP vessels | Hardness <1 ppm CaCO3; continuous 24/7 soft water | Hospitals, hotels, continuous boiler feed — uninterrupted service |
| Duplex Water Softener — Twin-Alternating (Medium, Autotrol 268/742) | Up to 15 m³/h | 2 × 300–800 L SAC resin, FRP vessels | Hardness <1 ppm CaCO3; continuous 24/7 | Boiler feed water, steam plant, pharmaceutical make-up water, Saudi Arabia |
| Duplex Water Softener — Twin-Alternating (Large, Fleck 2900SE/SXT) | Up to 30 m³/h | 2 × 800–2,000 L SAC resin, FRP vessels | Hardness <1 ppm CaCO3; continuous 24/7 | Large industrial process, power plant auxiliary cooling, district cooling make-up |
| Duplex Water Softener — Extra-Large Industrial (FRP Vessels) | Up to 80 m³/h | 2 × 2,000–6,000 L SAC resin, large FRP vessels | Hardness <1 ppm CaCO3; continuous 24/7 | Refinery utility water, district cooling, Jubail and Yanbu industrial complex |
| Triplex Water Softener — Heavy Industrial (Three Vessel, Auto) | Up to 120 m³/h | 3 × 1,500–4,000 L SAC resin, FRP vessels | Hardness <1 ppm CaCO3; continuous peak demand | District cooling plants, large power station auxiliary water, Saudi Aramco utility |
| Portable Exchange Softener — Service Tank (Offsite Regeneration) | Up to 5 m³/h | 50–200 L SAC resin per exchanged tank | Hardness <1 ppm CaCO3; no brine handling on site | Remote site, temporary project water, no salt or chemical handling required |
| Dealkaliser — Weak Acid Cation (WAC) Resin Unit | Up to 30 m³/h | 200–2,000 L WAC resin; HCl or H2SO4 regenerant | Alkalinity <50 ppm CaCO3; partial hardness reduction | Boiler feed alkalinity/bicarbonate reduction; pre-treatment before DM plant Saudi Arabia |
| Dealkaliser with Forced-Draft CO2 Degassing Tower | Up to 30 m³/h | WAC resin vessel + packaged packed-tower degasser | Alkalinity <10 ppm; free CO2 <5 ppm | High-efficiency boiler feed pre-treatment; reduces anion resin acid and caustic consumption |
| Anion Exchanger — Nitrate Removal (SBA Nitrate-Selective Resin) | Up to 15 m³/h | 100–1,000 L SBA nitrate-selective resin; NaCl regenerant | Nitrate <10 mg/L (WHO / SASO 4637 limit) | Potable water, agricultural irrigation supply, Saudi Arabia groundwater treatment |
| Anion Exchanger — Sulphate / Fluoride Removal (SBA) | Up to 10 m³/h | 100–500 L SBA resin; NaCl regenerant | SO4 <250 mg/L; Fluoride <1.5 mg/L (WHO guideline) | Drinking water and process water conditioning, Saudi Arabia groundwater high-sulphate sources |
| Two-Bed DM Plant — Small Skid (Cation + Anion Columns) | 0.5–3 m³/h | 50–200 L SAC + 50–200 L SBA; HCl & NaOH regenerant | Conductivity <10 µS/cm; TDS <5 ppm | Laboratory DI water, small process water, pharmaceutical equipment rinse water |
| Two-Bed DM Plant — Medium Industrial | 3–15 m³/h | 200–600 L SAC + 200–600 L SBA; FRP vessels | Conductivity <10 µS/cm; SiO2 <0.5 ppm | Boiler make-up, battery manufacturing, textile dyeing, food-grade process water |
| Two-Bed DM Plant — Large Industrial | 15–60 m³/h | 600–2,500 L SAC + 600–2,500 L SBA; FRP or rubber-lined steel | Conductivity <5 µS/cm; TDS <2 ppm | Power plant make-up water, refinery process water, Saudi petrochemical facilities |
| Two-Bed DM Plant with Intermediate CO2 Degasser | 5–40 m³/h | SAC vessel + forced-draft degasser + SBA vessel | Conductivity <2 µS/cm; CO2 <1 ppm; SiO2 <0.2 ppm | High-purity boiler feed — reduced caustic regenerant demand and extended anion run |
| Two-Bed DM Plant — Duplex Parallel Trains (Continuous 24/7) | 20–80 m³/h | Dual-train cation + anion configuration | Conductivity <5 µS/cm; continuous uninterrupted supply | 24/7 service — power station, Saudi Aramco utility water, SABIC process water |
| Mixed Bed Polisher — Small (Post-DM Polishing) | 0.5–5 m³/h | 50–300 L mixed SAC + SBA resin; external regeneration | Conductivity <0.1 µS/cm; SiO2 <20 ppb | High-pressure boiler polishing, pharma laboratory UPW, electronics rinse water |
| Mixed Bed Polisher — Medium Industrial | 5–25 m³/h | 300–1,000 L mixed bed; FRP or SS 316L vessel | Conductivity <0.1 µS/cm; SiO2 <50 ppb; Na <1 ppb | Power plant polishing, semiconductor rinse water, electronics manufacturing |
| Mixed Bed Polisher — Large Industrial | 25–80 m³/h | 1,000–3,000 L mixed bed; rubber-lined steel or SS 316L | Conductivity <0.1 µS/cm; SiO2 <50 ppb | Large power stations, refinery high-pressure steam, major petrochemical plants Saudi Arabia |
| Mixed Bed Polisher — USP Pharmaceutical Grade | 0.5–10 m³/h | 50–500 L NSF/ANSI 61 approved resin; SS 316L vessel | Conductivity <0.1 µS/cm; TOC <500 ppb; meets USP Purified Water | Pharmaceutical manufacturing, ASTM D1193 Type I/II, SAUDIPHARM-regulated facilities |
| Electrodeionisation (EDI) — Small Scale (Chemical-Free UPW) | 0.5–5 m³/h | Modular EDI stacks; DC electric field regeneration — no acid/caustic | Conductivity <0.1 µS/cm; SiO2 <20 ppb; continuous production | Pharma, electronics, lab — continuous chemical-free ultrapure water in Saudi Arabia |
| Electrodeionisation (EDI) — Medium Industrial | 5–30 m³/h | Multiple EDI module array; RO pre-treatment feed required <50 µS/cm | Conductivity <0.06 µS/cm; SiO2 <10 ppb | Semiconductor, industrial power plant, high-purity continuous UPW generation |
| Condensate Polisher — Deep Bed (Power Plant, H-form) | 10–100 m³/h | 500–5,000 L deep-bed SAC or mixed bed; rubber-lined steel vessel | Conductivity <0.1 µS/cm; Fe <10 ppb; Na <1 ppb | Power plant condensate return polishing — boiler and turbine protection, Jeddah/Yanbu/Jubail |
Water softener and DM plant systems engineered to Saudi Aramco General Instruction GI-0002.711 boiler feed water treatment specifications and SABIC process water quality requirements. Resin sizing accounts for Saudi Arabia feedwater hardness of 200–800 ppm as CaCO3 from desalinated municipal water and groundwater, with regeneration cycles calculated for local NaCl, HCl, and NaOH chemical availability. Full documentation including sizing calculations, resin data sheets, and vessel test certificates supplied for Aramco and SABIC project submissions.
Electrodeionisation (EDI) modules eliminate acid and caustic regeneration chemicals, producing continuous ultrapure water at below 0.1 µS/cm and below 10 ppb SiO2 without shutdown cycles. EDI is especially valuable for pharmaceutical and electronics facilities in Saudi Arabia where chemical storage restrictions apply. Modular stacked plate EDI systems scale from 0.5 m³/h to 100+ m³/h, with full IQ/OQ/PQ validation documentation available for GMP-regulated manufacturing environments.
All water treatment ion exchange systems are designed, assembled, and tested under ISO 9001:2015 quality management system (CR 4030570569). Pressure vessel components are ASME Section VIII certified. NSF/ANSI 61 certification for drinking water contact resin is available on request. Documentation packages include factory acceptance test (FAT) records, resin specification sheets, EN 10204 2.1 material certificates, and full performance data for all systems delivered to Saudi Arabia facilities.
Key ion exchange components — Fleck, Autotrol, and Clack automatic control valves, Dow Amberlite, Lanxess Lewatit, and Purolite ion exchange resins, FRP and SS 316L pressure vessel shells, and brine tank assemblies — stocked in Jeddah for immediate dispatch. Complete packaged water softener and DM plant systems available for rapid delivery to Riyadh, Jubail, Yanbu, Dammam, Madinah, Jizan, and all Saudi regions. ISO 9001:2015 certified (CR 4030570569).
Complete water treatment solutions for Saudi Arabia industrial facilities — multimedia filtration, activated carbon, coagulation/flocculation, and packaged water treatment plants for boiler feed, process, and potable water applications.
SWRO, BWRO, and nanofiltration membranes, UF hollow fibre modules, and MF membrane elements from FilmTec, Toray, and Hydranautics — for desalination and RO pre-treatment in Saudi Arabia industrial facilities.
Chemical dosing and metering pumps for antiscalant, coagulant, pH adjustment, and regenerant chemical injection — diaphragm, peristaltic, and plunger pump types for water treatment plants in Saudi Arabia.
Multimedia pressure filters, activated carbon filters, bag filters, cartridge filter housings, and self-cleaning strainers for pre-treatment of ion exchange and RO membrane systems in Saudi Arabia water treatment plants.
Sizing a water softener for boiler feed water in Saudi Arabia starts with three inputs: peak flow rate in m³/h, feedwater hardness (typically 200–800 ppm as CaCO3 from desalinated municipal water or groundwater), and the desired regeneration frequency — daily, every 2 days, or weekly. Grain capacity is calculated as flow rate × service hours × hardness × a 1.7 conversion factor. For example, a boiler consuming 5 m³/h of feed water with 400 ppm hardness requiring 48-hour service cycles needs approximately 1,640,000 grains of exchange capacity, equating to roughly 700–800 litres of strong cation resin at 2,000 grains per litre rated capacity. For continuous 24/7 boiler feed service, a duplex twin-alternating configuration is mandatory — one vessel in service while the other regenerates with NaCl brine, ensuring uninterrupted soft water supply. Single simplex softeners interrupt service during regeneration and are only suitable for batch or off-shift boiler operation. Gulf Union Ozone designs softener packages to Saudi Aramco GI-0002.711 boiler water treatment guidelines and can provide full sizing calculations, resin specification sheets, and vessel ASME Section VIII documentation. WhatsApp 966550988062 with your flow rate, hardness analysis, and regeneration interval for a same-day quotation.
Water softeners and demineralizers prepare makeup water for boilers, cooling towers, and process water systems at Saudi Aramco and SABIC industrial facilities. Gulf Union Ozone supplies dual-bed strong-acid cation and strong-base anion ion-exchange water demineralizers for ultra-pure water down to 0.05 microsiemens per centimetre conductivity required by high-pressure boilers above 60 bar. Softeners remove calcium and magnesium hardness by ion exchange to prevent scale deposition in heat exchangers, cooling towers, and steam boilers. ASME Section VIII fibreglass or carbon steel vessels with certified resin loading per cation and anion equivalents. Regeneration chemicals — hydrochloric acid, sulphuric acid, and caustic soda — supplied alongside the ion-exchange vessels as an integrated package.
A water softener and a demineraliser both use ion exchange resin but remove different ions and achieve very different output water quality. A water softener operates on sodium-cycle strong acid cation (SAC) resin: calcium and magnesium ions are exchanged for sodium, removing scale-forming hardness but leaving all other dissolved salts intact — output conductivity typically 500–2,000 µS/cm, unsuitable for high-pressure boilers or quality-sensitive process water. A two-bed demineraliser (DM) plant uses two columns in series: the cation column in hydrogen form removes all cations (calcium, magnesium, sodium, potassium) replacing them with H⁺, then the anion column in hydroxyl form removes all anions (chloride, sulphate, bicarbonate, nitrate, silica) replacing them with OH⁻, which combine to form pure water. DM plant output: conductivity 1–10 µS/cm, TDS below 5 ppm, suitable for medium-pressure boilers up to 60 bar. Adding a mixed bed polisher downstream reduces conductivity below 0.1 µS/cm and SiO2 below 50 ppb, meeting high-pressure boiler and pharmaceutical ultrapure water requirements. Gulf Union Ozone can supply the complete chain — softener, two-bed DM plant, mixed bed polisher, and EDI — engineered to Saudi Aramco and SABIC water quality specifications.
Mixed-bed polishers for ultra-high-purity water production at Saudi Aramco power-generation steam-turbine condenser returns and microelectronics fabrication in Riyadh are supplied by Gulf Union Ozone. Conductivity meters, silica analysers, sodium analysers, and online resistivity monitors are integrated into the demineralizer control panel for continuous water-quality monitoring compliant with Saudi Aramco utilities specification SAES-S-070. Electrodeionisation (EDI) modules for continuous ultra-pure water production without chemical regeneration are sourced for new facilities targeting zero chemical discharge in NEOM and Red Sea Project environmental specifications.
Yes. Gulf Union Ozone supplies complete ultrapure water (UPW) systems for pharmaceutical manufacturing (SAUDIPHARM and Saudi FDA regulated facilities), research laboratories, and electronics manufacturing in Saudi Arabia. Our ultrapure water packages combine RO pre-treatment with mixed bed ion exchange polishers producing water meeting USP Purified Water specifications — conductivity below 1.3 µS/cm at 25°C, TOC below 500 ppb, endotoxin below 0.25 EU/mL — and ASTM D1193 Type I reagent-grade water at conductivity below 0.1 µS/cm, SiO2 below 3 ppb, and TDS below 0.1 ppm. For facilities requiring continuous chemical-free operation, electrodeionisation (EDI) modules replace the mixed bed vessel: an applied DC electric field across ion exchange membranes and resin continuously regenerates the system, producing ultrapure water at below 0.06 µS/cm and below 10 ppb SiO2 with no acid or caustic handling. Systems can be fully validated with IQ, OQ, and PQ protocols compliant with Saudi FDA and international GMP requirements. Contact Gulf Union Ozone for a full system design including pre-treatment, polishing, storage, distribution loop, and UV disinfection for pharmaceutical and laboratory applications anywhere in Saudi Arabia.
Portable ion-exchange resin service is available for Saudi Aramco and SABIC plant outages where permanent softeners require maintenance — exchange vessels are delivered, connected, and removed as a service, eliminating the need for on-site chemical regeneration during a critical production window. Gulf Union Ozone offers resin testing and replacement services: cation resin capacity testing by sampling and laboratory analysis, anion resin colour assessment for organic fouling, and full resin replacement with certified virgin resin per manufacturer specification. Resin delivery is coordinated with plant maintenance schedule across Jubail, Yanbu, Dammam, and Riyadh sites.
To receive a fast quotation, provide: system type (simplex/duplex softener / dealkaliser / two-bed DM / mixed bed / EDI / condensate polisher), peak flow rate (m³/h), feedwater analysis (hardness, alkalinity, TDS, conductivity, silica, iron), required output water quality (conductivity or hardness target), operating temperature, preferred resin brand, vessel material (FRP / SS 316L), and delivery location in Saudi Arabia.
Recent Deliveries
CR 4030570569 | ISO 9001:2015 | Jeddah, Saudi Arabia — Saudi Aramco vendor compliance · SAEP-347 credentials
Technical content reviewed by Gulf Union Ozone's Engineering Team, Jeddah — 2026
Inventory updated: September 2026
Water softener and demineralizer supply from Gulf Union Ozone reaches every Saudi industrial zone: Jubail and Dammam 48-72 hours for standard-size skids, Riyadh 72-96 hours, Yanbu and Al Khobar 72 hours, Jeddah same-day from warehouse stock. Custom-engineered demineralizer trains for new SWCC plants and industrial park utilities are designed, fabricated, and delivered within 8-12 weeks. Complete project packages include P&ID, operating and maintenance manual, factory acceptance test report, material certifications per EN 10204, and ASME Code stamps for pressure vessels. All resin volumes and vessel designs are calculated for the specified raw water analysis from the customer site.