Containerized and skid-mounted desalination units for remote sites, emergency response, and rapid deployment.

    Find a Modular Desalination Provider

    Matched providers: 23

    Top countries: United Kingdom, China

    Popular technologies: Cartridge Filters, Flat Sheet UF Membranes

    Modular Desalination Systems: Containerised RO, Capacity Scalability, and Remote Deployment

    Modular desalination systems integrate all process components (membranes, pumps, energy recovery, controls) into pre-assembled, factory-tested units in ISO shipping containers or skid frames. Standard 20-foot container units produce 10 to 200 m3 per day; 40-foot containers 50 to 500 m3 per day. Skid-mounted modular systems scale to 2,000 m3 per day in a single module. Multiple modules are connected in parallel for larger capacities. Advantages over stick-built plants: factory testing eliminates site commissioning risk, rapid deployment (4 to 16 weeks from order vs 12 to 36 months for conventional construction), and flexibility to scale or relocate.

    Brackish water RO (BWRO) modular systems treat groundwater or surface water at TDS 500 to 10,000 mg per L with energy consumption 0.5 to 1.5 kWh per m3. Seawater RO (SWRO) modular systems for 10 to 500 m3 per day use high-pressure pumps (55 to 70 bar), energy recovery turbines (turbocharger type for small systems, isobaric pressure exchangers above 200 m3 per day), and either polyamide spiral-wound membranes or for extreme corrosion environments, titanium-framed systems. Pretreatment in modular systems uses cartridge filters (5-micron absolute), self-cleaning disc filters, or compact UF modules. Brine disposal by sea outfall (for coastal systems) or injection/evaporation pond (for inland).

    Remote and humanitarian deployment applications drive modular desalination adoption: disaster response (potable water for 500 to 10,000 people from a single 20-ft container), military forward operating bases (NATO Waterpoint requirement: 45 L per soldier per day), island and remote community water supply (no pipeline access), and temporary industrial water supply during plant construction.

    Power supply for remote SWRO: solar PV plus battery storage systems are matched to SWRO load; energy storage requirement is sized for 2 to 4 hours of RO operation per kWh of solar capacity. Specific energy consumption of solar-powered SWRO: 3 to 6 kWh per m3 for containerised systems without advanced ERD, 2 to 3 kWh per m3 with pressure exchanger ERD.

    Frequently Asked Questions

    How much water can a containerised desalination unit produce?

    Containerised RO desalination capacity depends on unit configuration and feed water salinity: standard 20-foot ISO container BWRO (brackish water): 50 to 200 m3 per day; SWRO (seawater): 20 to 100 m3 per day. 40-foot container BWRO: 100 to 500 m3 per day; SWRO: 50 to 250 m3 per day. Multiple containers connected in parallel scale capacity proportionally. For a remote village of 1,000 people requiring 50 litres per person per day, a single 20-foot BWRO container covers demand. Factory-tested modular SWRO systems up to 2,000 m3 per day are available from the established manufacturers as skid-mounted modular blocks. Capacity is also limited by power availability: a 100 m3 per day SWRO requires approximately 10 to 15 kW of continuous power (or equivalent solar plus battery).

    How long does it take to deploy a modular desalination plant?

    Containerised modular desalination systems offer significantly faster deployment than conventional stick-built plants. Timeline: procurement and factory testing: 6 to 16 weeks from order to dispatch; site preparation (civil works for foundation, brine outfall, water intake): 4 to 12 weeks (can run in parallel with manufacturing); site installation and commissioning: 1 to 4 weeks (containerised units are pre-wired, pre-piped, and factory-tested; on-site work limited to inter-unit connections, power hookup, and intake/outlet installation); operator training: 2 to 5 days for basic operation. Total timeline from contract award to operational: 8 to 24 weeks. Conventional stick-built plants of equivalent capacity: 18 to 48 months. Emergency and disaster deployment: military-spec containerised units with pre-positioned inventory can be operational within 72 hours of arrival on site.

    What is the energy consumption of modular desalination?

    Energy consumption depends on feed water salinity and system configuration. Brackish water RO (TDS 2,000 to 5,000 mg per L): 0.5 to 1.5 kWh per m3 of permeate. Brackish water RO (TDS 5,000 to 10,000 mg per L): 1.0 to 2.5 kWh per m3. Seawater RO without energy recovery: 5 to 8 kWh per m3. Seawater RO with turbocharger energy recovery (small-scale): 3 to 5 kWh per m3. Seawater RO with isobaric pressure exchanger (medium to large scale, above 200 m3 per day): 2.5 to 3.5 kWh per m3. Solar-powered BWRO for remote communities: 1 to 3 kWh per m3 electricity from solar PV (typical levelised cost of solar electricity: $0.03 to $0.10 per kWh), making total water cost dominated by membrane replacement and O&M rather than energy.

    How is brine from modular desalination disposed of?

    Brine disposal for modular desalination depends on location. Coastal deployments: subsurface diffuser pipe or surface discharge dilutes concentrate in receiving seawater. SWRO brine at 70,000 to 90,000 mg per L TDS must achieve rapid dilution to prevent localised hypersaline zones harmful to marine organisms; diffuser design targets dilution of minimum 10:1 (brine to seawater) within 50 m of outfall. Regulatory consent from marine environment authority required (MMO in UK, USACE in US). Inland BWRO deployments: brine at 5,000 to 20,000 mg per L TDS requires disposal by evaporation pond (land requirement 0.5 to 2 m2 per m3 per day of brine in arid climate), deep well injection (UIC Class I permit in US, Environment Agency permit in UK), or land application for low-TDS concentrate. Brine volume: BWRO at 80 percent recovery produces 250 L of concentrate per m3 of permeate; SWRO at 50 percent produces 1,000 L of concentrate per m3 of permeate.

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    Modular Desalination Companies

    Containerized and skid-mounted desalination units for remote sites, emergency response, and rapid deployment.

    7 specialist providers · 16 related · 12 countries

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    United Kingdom5
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    Cartridge Filters4
    Flat Sheet UF Membranes4
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    Showing 1-20 of 23

    Specialists in modular desalination

    Providers whose services or self-declared specialties match this category.

    Ecosystems International

    Verified

    Indonesia · 51-200 employees

    PT Ecosystems International (PT ESI) was established at Jakarta on 21st November 2006. We are an industrial effluent treatment systems integrator specializing in electrocoagulation (EC), a unique waste water treatment profile. PT ESI has capabilities in designing complete waste water treatment solutions by combining various effluent treatment systems such as the electro-coagulation, biological, chemical processes and membrane filtration, offering its customers a wide and comprehensive range of solutions, tailored to suit their various needs – ranging from basic effluent treatment for discharge to effluent recycling for water reuse. The Company is experienced in handling the design, engineering, procurement, construction and operation of new Effluent Treatment Plants (“ETP”) and possesses expertise in retrofitting existing ETP to increase the flow rate and treatment capability without any major infrastructure increase PT ESI is also a premier waste water treatment service company specializing in handling waste water generated from Exploration (Drilling) and Produced Water. Customers in Indonesia include major Oil & Gas companies such as Pertamina, Exxon, Chevron, Petro-China and Medco. Operations in Indonesia are provided by both mobile and fixed units. At drill sites where waste-water recycling is required, PT ESI supplement these treatment units with skid mounted mobile Reverse Osmosis systems. The technologies and solutions employed by PT ESI are developed in-house and examples of these are its proprietary Trident™ Electro Contaminant Removal (“ECR”) system, the Stage Contaminant Removal (“SCR”) process and Mobile On-Site Waste-Water Treatment (“OWT”) units

    Reverse Osmosis (RO) SystemsUltrafiltration (UF) SystemsMulti-media Filtration (MMF) Systems

    Gi Aqua , Water as a Service

    Verified

    Saudi Arabia · 51-200 employees

    GI WAAS delivers cutting-edge water and wastewater solutions using advanced nanotechnology and zero total discharge solution sets industry standards. Our mission is to provide smart, sustainable, and decentralized treatment systems. We are committed to circular economy principles and reducing environmental impact. Our holistic approach provides comprehensive, tailor-made solutions that are designed to meet the specific needs of each client

    Water-as-a-Service (WaaS) ContractsPublic-Private Partnerships (PPPs)Technology Leasing and Rental Solutions

    Hainan Litree Water Purification Technology Industry Co., Ltd.

    Verified

    China · 200+ employees

    Litree: Pioneering Ultrafiltration for a Water-Secure World Founded in 1992, Litree has dedicated 30+ years to redefining water purification through ultrafiltration (UF) membrane technology—our core expertise and passion立升(Litree). As a global high-tech enterprise rooted in independent innovation, we’ve evolved from a membrane R&D startup to one of the world’s leading water problem solvers, with over 146 core patents and state-of-the-art manufacturing hubs in Haikou and Suzhou, China立升(Litree). Our signature hollow fiber UF membranes are engineered to deliver unmatched performance: 0.01μm precision removes 99.99% of bacteria, viruses, and contaminants while preserving essential minerals—striking the perfect balance between purity and health立升(Litree). This technology powers our diverse solutions, from residential whole-house systems to large-scale municipal projects and industrial wastewater treatment, all designed for sustainability and cost-efficiency. What truly sets us apart is our commitment to making safe water accessible. We’ve completed projects serving 50,000+ residents with centralized purification systems that cut construction costs and footprint by 50% compared to traditional setups—proof that advanced technology can also be affordable. Today, our solutions reach 60+ countries, supporting 3,000+ industrial clients and millions of households worldwide. At Litree, water isn’t just our business—it’s our mission. We believe every drop matters, and we’ll keep pushing boundaries to create a future where clean, safe water is a universal right, not a privilege

    Ultrafiltration (UF) SystemsMembrane Filtration TechnologiespH Adjustment and Neutralization

    Hangzhou Realize Technology Co., LTD.

    Verified

    China · 1-50 employees · 1 case study

    HANGZHOU REALIZE TECHNOLOGY CO., LTD. is a technology enterprise. The company collaborates with domestic and international universities such as Beijing University of Technology, Tsinghua University, and Berlin University of Technology to address the challenges of enhancing anaerobic efficiency and nitrogen removal in high-ammonia nitrogen wastewater. The core technologies foucs on energy-saving denitrification and enhanced green methane production. These two technologies can increase production efficiency of green methane by 20% and reduce costs of wastewater denitrification by 60%.

    Process Water TreatmentWastewater TreatmentAdvanced Treatment Technologies

    Sidonwater S.L.

    Verified

    Spain · 1-50 employees · 5 case studies · 3 datasheets

    Sidon Water is a water technology company specialised in non-chemical water treatment and system optimisation. We develop and deploy advanced solutions that prevent and remove limescale, reduce fouling and corrosion, and improve the performance of cooling towers, industrial water systems, and reverse osmosis and desalination installations. Sidon Water works with industrial clients, commercial building owners, OEMs and EPC partners to deliver measurable improvements in energy efficiency, operational reliability and asset lifetime. Our activities cover the full cycle from analysis and pilot projects to system integration, commissioning and long-term performance optimisation.

    Electrochemical TechnologiesProcess Water TreatmentWastewater Treatment

    Brine Consulting

    Verified

    Netherlands · 1-50 employees

    BRINE CONSULTING delivers senior-level strategy, technical design, and actionable insight across the full lifecycle of water-related challenges. We support clients with advisory and due diligence, advanced brine management and resource recovery, industrial and municipal water reuse, and MLD/ZLD systems. Our team also leads ESG and climate-resilience strategy, innovation scouting, and international development and PPP advisory. With deep specialization in desalination, brine valorization, circular economy models, and high-impact infrastructure, we help organizations turn water and waste streams into opportunities, providing clear thinking, rapid delivery, and solutions built for real-world results.

    Activated Carbon FiltrationReverse Osmosis (RO) SystemsUltrafiltration (UF) Systems

    Seven Seas Water Group

    United States

    Seven Seas Water Group is a fully integrated water and wastewater solutions provider specializing in Water-as-a-Service delivery. The company designs, builds, finances, and operates treatment facilities for municipal, commercial, and industrial clients globally. Their offerings address water scarcity through desalination and sustainable water reuse technologies.

    Water-as-a-Service (WaaS)Lease Plant ProgramWater treatment design and operations

    Related providers

    Listed for overlapping capabilities, not for modular desalination specifically.

    RCI Aquatech

    Verified

    India · 1-50 employees · 1 case study

    Founded in 2009, formerly known as Red Circle Industries (RCI), RCI Aquatech creates custom wastewater solutions based on end users’ requirements, which allow for optimally chosen components resulting in a solution that meets or exceeds customer needs. RCI Aquatech’s wastewater treatment systems combine necessary process technologies to reach required state and federal discharge limits and comply with local regulations. Our systems focus on removal of pollutants such as heavy metals, greases, suspended solids, oils, high salt content, toxic compounds, phosphates and more. Using chemical-physical treatment (coagulation, flocculation, and sedimentation), biological treatment (aerobic and anaerobic) and wet chemical oxidation (persistent or toxic organics). Our expertise comprises the following technologies:  Filtration & softening systems  Physicochemical treatment (coagulation-flocculation)  Membrane filtration (UF & RO)  Ion exchange  Chemical oxidation  Biological treatment  Zero liquid discharge (ZLD) system

    Activated Carbon FiltrationMicrofiltration (MF) SystemsReverse Osmosis (RO) Systems

    PNR ITALIA Srl

    Verified

    Italy · 51-200 employees · 19 case studies

    We produce a comprehensive range of spraying solutions, encompassing everything from small-scale nozzles to large industrial spraying systems. Our diverse product line includes various types of nozzles tailored to meet the specific requirements of every application and customer need. The company was established in Milan in November 1968, focusing on distributing parts and components for fire protection systems. Over time, we expanded our offerings to include a diverse range of industrial sprayers tailored to various applications. In addition to our distribution and manufacturing of fire protection system components and industrial sprayers, we specialize in designing and producing pneumatic spray nozzles for industrial use and tank washing nozzles. Our product line also encompasses a variety of complementary accessories essential for industrial washing, including filters, spray guns, and hoses. Furthermore, we offer ejectors, blower nozzles, swivel joints, and hose clamps to provide comprehensive solutions for our customers' needs. PNR Italia is part of the Tecomec Group and oversees four other affiliated companies to form PNR Company, a consolidated reality with a significant presence on the market.

    Microfiltration (MF) SystemsDisinfection TechnologiesDisinfection Chemicals

    Guangdong Xinjieyuan Environmental Protection Technology Co., Ltd.

    Verified

    China · 51-200 employees

    Guangdong Xinjieyuan Environmental Technology Co., Ltd. is a professional manufacturer specializing in industrial water purification equipment. We focus on RO, ultrafiltration, EDI and desalination systems, holding ISO & CE certifications. With over 10 years of technical experience, we supply customized pure water solutions for food, pharmacy, agriculture and aquaculture, supporting OEM & ODM and exporting to global markets. All units adopt top-grade membrane and pump parts, with strict factory testing and one-year full warranty.

    Ultrafiltration (UF) SystemsReverse Osmosis (RO) SystemsReverse Osmosis (RO) Desalination

    Liquid X

    Verified

    United Arab Emirates · 1-50 employees

    Liquid X is a water technology consultancy and commercialization platform focused on accelerating the deployment of next-generation filtration solutions, with a core emphasis on graphene-based water treatment. Founded to address the gap between breakthrough innovation and real-world implementation, Liquid X operates at the intersection of advanced material science, water infrastructure, and market deployment. While significant advances in water technologies exist globally, many remain confined to laboratories or early-stage ventures. Liquid X bridges this gap by identifying, validating, and commercializing high-impact solutions—particularly graphene-based filtration systems—within the GCC and wider MENA region. Our consultancy model is built around a full lifecycle approach: from technology scouting and technical evaluation to pilot design, validation, and scaled deployment. We work with asset owners, governments, and enterprises to translate emerging technologies into practical, site-ready solutions. This includes designing pilot programs with measurable performance metrics, enabling data-driven decision-making, and ensuring that innovations are proven under real operating conditions before scale-up. A key focus of Liquid X is the commercialization of graphene-based water filters. Graphene, a two-dimensional material with exceptional strength, permeability, and adsorption capacity, has the potential to fundamentally transform water treatment. Its nano-scale structure allows precise separation of contaminants while enabling faster water flow and lower energy consumption compared to conventional systems. Through strategic partnerships with innovators, researchers, and manufacturers, Liquid X is actively working to bring graphene filtration technologies from concept to market. These systems are being developed to address some of the most critical water challenges, including the removal of PFAS and emerging contaminants, heavy metals, dissolved solids, and industrial pollutants—while significantly reducing waste and energy intensity associated with traditional technologies such as reverse osmosis. Our role extends beyond technology development. Liquid X supports the full commercialization journey, including: Technical due diligence and performance validation Pilot implementation and third-party verification Integration with existing infrastructure Development of scalable deployment models Coordination with EPC contractors, facility managers, and regulators Ongoing monitoring, compliance, and optimization By operating as a vendor-agnostic platform, we ensure that solutions are selected based on performance, suitability, and long-term value—not vendor bias. The MENA region faces some of the world’s most acute water challenges, including scarcity, high desalination dependence, and rising energy costs. Liquid X is positioned to introduce more efficient, decentralized, and sustainable alternatives through advanced filtration technologies. Graphene-based systems, in particular, offer the potential for lightweight, modular, and energy-efficient treatment solutions that can be deployed at scale across residential, commercial, and industrial applications. At its core, Liquid X is not just a consultancy—it is an enabler of the next generation of water infrastructure. By combining deep regional expertise with global innovation networks, we are helping transform how water is treated, distributed, and consumed. Our mission is to accelerate the transition from legacy, resource-intensive systems to smarter, more sustainable water solutions—unlocking the full potential of graphene and other advanced materials to build a more water-secure future.

    Activated Carbon FiltrationNanofiltration (NF) SystemsPoint-of-Use (POU) Filtration Systems

    Solar Water Solutions

    Finland

    Solar Water Solutions Oy is a Finnish clean-technology manufacturer headquartered in Espoo, Finland, that builds solar-powered reverse osmosis desalination systems converting seawater or brackish water into drinking water using photovoltaic energy instead of diesel or grid electricity. Its modular, plug-and-play systems serve municipal water utilities, remote communities, resorts, agriculture, emergency response, and off-grid residential and industrial users. Systems handle salinity up to 36,000 mg/L TDS at capacities to 1,000 m3 per day, with typical energy use of 1 to 2 kWh per m3. The company develops and manufactures systems jointly with German solar pump maker LORENTZ.

    Seawater reverse osmosis desalinationBrackish water reverse osmosis desalinationSolar-direct, battery, and grid-tied power configuration

    IDE Technologies

    Israel

    IDE Technologies develops, engineers, constructs and operates advanced water treatment and desalination plants for municipal and industrial customers worldwide. The company specializes in sustainable solutions including seawater desalination, industrial wastewater treatment, and zero liquid discharge systems.

    Seawater reverse osmosis desalinationIndustrial wastewater treatment and reuseThermal desalination solutions

    H2O Inc

    United States

    H2O Inc. is a water and waste systems manufacturer headquartered in Lafayette, Louisiana, designing and building water treatment solutions for demanding marine and offshore environments. The company specializes in systems for offshore oil and gas platforms, FPSOs, and commercial vessels, including freshwater desalination, marine sanitation devices, biofouling control, and bilge water treatment. With more than 3,000 systems installed globally, H2O Inc. supplies certified equipment and provides equipment rentals along with 24/7 technical support and field service.

    Freshwater desalination and potable water systemsMarine sanitation devices (sewage treatment)Biofouling control via electrochlorination

    NEWater

    China

    NEWater is a professional water treatment equipment manufacturer founded in 2010 and headquartered in Suzhou High-tech Zone, Jiangsu, China. The company provides turn-key water purification solutions for industrial and municipal clients, designing, sourcing, and installing custom systems that address water scarcity, wastewater management, and water quality improvement. Its product range covers reverse osmosis, seawater desalination, ultrafiltration, nanofiltration, deionized and ultrapure water, and containerized modular systems. NEWater serves agriculture, pharmaceuticals, food and beverage, power generation, semiconductor manufacturing, healthcare, mining, and municipal water supply, backing equipment with a one-year warranty and lifetime maintenance services.

    Reverse osmosis and seawater desalination system supplyDeionized and ultrapure water system manufacturingWastewater treatment and recycling solutions
    E

    Enviromatch

    United States

    Enviromatch Inc. is a United States based water and wastewater treatment company headquartered in Murrieta, California, with over thirty years of experience in the design, engineering, manufacturing, and supply of treatment systems. The company specializes in containerized, factory-assembled water treatment plants delivered in standard 10-ft, 20-ft, and 40-ft ISO shipping containers that can be commissioned within days of arriving on site. Enviromatch builds seawater and brackish water desalination systems, including its FreshMatch SWRO reverse osmosis units for commercial, industrial, marine, and municipal applications. Project experience spans seawater desalination for resorts, brackish water reverse osmosis for water-scarce regions such as Qatar, and sewage treatment for new developments.

    Containerized water treatment system design and supplySeawater desalination (SWRO) systemsBrackish water reverse osmosis systems

    Desolenator

    United Arab Emirates

    Desolenator develops solar thermal desalination technology that produces ultrapure water from seawater and brackish water without membranes. The company harnesses solar power and industrial waste heat in a chemical free, circular process, with modular systems sized up to 40 cubic meters per hour and optional zero liquid discharge. Its solutions target industrial and municipal users including data centers and agriculture, with documented projects in Dubai and Abu Dhabi.

    Solar thermal desalination systems for industry and municipalitiesOn-site water production for businessesModular desalination plant supply

    Fluence

    United States

    Fluence develops modular water and wastewater treatment solutions for municipal, industrial, and decentralized applications. The company offers containerized systems engineered for operational efficiency and rapid deployment, serving diverse sectors including food and beverage, desalination, and waste-to-energy.

    Municipal water and wastewater treatmentIndustrial water treatment and desalinationWater reuse and recycling solutions

    Technocover Ltd

    United Kingdom

    Technocover is an approved ISO 14001:2004 Environmental and ISO 9001:2008 Quality Accredited Company, dedicated to the Design, Manufacture, Installation and Maintenance of Physical Security Access Solutions for protection to all industrial sectors. Our extensive in-house design and manufacturing facilities are home to well established research and development unit and comprehensive testing facility. Our commercial offices incorporate our design team who utilise the latest computer aided design technology and work alongside our dedicated planning section who oversee everything from surveying, scheduling and contract reviews, to the management of framework agreements. We have been designing and manufacturing innovative steel products since 1993. In that time, through organic growth, planned expansion and acquisition, we have gained a reputation as the UK’s leading supplier of Physical Steel Security Access Products. We have a range of aperture security solutions for virtually every application, establishments in the UK and overseas have sought our expertise in providing security products for asset protection. We operate a Total Service Philosophy and can handle complete projects from site survey to final installation, whether for new or refurbishing projects, the adaptability of our galvanised steel access products means the most complex design criteria can be met. Our range of high quality access products offer custom built operational and security solutions to prevent unauthorised persons gaining access, securing key assets against all levels of trespass, malicious vandalism, theft, extortion, contamination or terrorism. Many of our access system products have been tested and approved by the Loss Prevention Certification Board (LPCB)  to LPS 1175 issue 5 or above, Security Rating Levels 2, 3, 4 or 5. Frameworks We hold both exclusive and shared framework agreements with most of the major UK water companies. Framework Security items include: LPCB Level 2 Universal Gas Cylinder Clamps LPCB Level 3 Mesh Cage Systems LPCB Level 3 Flush Access Covers LPCB Level 4 Upstand Access Covers LPCB Level 4 Padlockable Access Doors LPCB Level 4 Key Entry Doors LPCB Level 4 Enclosures/Kiosks/Cabinets LPCB Level 4 Walk-In Modular Buildings LPCB Level 4 Window Bar Sets LPCB Level 5 Louvres

    Siltbuster Group

    United Kingdom

    Established for over 20 years, the Siltbuster Limited provides rapidly deployable, “modular off the shelf” water treatment solutions to the construction, industrial and municipal markets, with a client base ranging from the world’s most recognisable multi-national corporations to small enterprises. Siltbuster provides a wide range of water and wastewater treatment equipment for the industrial and municipal markets, including: Packaged lamella dissolved air flotation (DAF) units. Lamella clarifiers. Packaged biological treatment systems. Oil/water separators. Pipe flocculators. Reaction tanks. Containerised dosing systems. In the UK, Siltbuster has pioneered the concept of offering this plant through our extensive hire fleet. Approximately 20 major contracts and circa 50 smaller projects are undertaken each year for a diverse range of clients, many of which are some of the UK’s best-known companies. In addition to the industrial/municipal sector, Siltbuster has undertaken a number of mine water treatment projects in many countries, for example, the UK, Ireland, Greece, France, USA, Canada, Australia and Slovakia. The Siltbuster team pride themselves in their ability to react rapidly and in compliance with the project constraints, delivering mobile or permanent solutions tailored to meet your individual needs.

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    Buyer's guide

    The buyer's guide to modular desalination

    OverviewFAQScenarioQuestions to askCost driversRegulations

    Modular Desalination Systems: Containerised RO, Capacity Scalability, and Remote Deployment

    Modular desalination systems integrate all process components (membranes, pumps, energy recovery, controls) into pre-assembled, factory-tested units in ISO shipping containers or skid frames. Standard 20-foot container units produce 10 to 200 m3 per day; 40-foot containers 50 to 500 m3 per day. Skid-mounted modular systems scale to 2,000 m3 per day in a single module. Multiple modules are connected in parallel for larger capacities. Advantages over stick-built plants: factory testing eliminates site commissioning risk, rapid deployment (4 to 16 weeks from order vs 12 to 36 months for conventional construction), and flexibility to scale or relocate.

    Brackish water RO (BWRO) modular systems treat groundwater or surface water at TDS 500 to 10,000 mg per L with energy consumption 0.5 to 1.5 kWh per m3. Seawater RO (SWRO) modular systems for 10 to 500 m3 per day use high-pressure pumps (55 to 70 bar), energy recovery turbines (turbocharger type for small systems, isobaric pressure exchangers above 200 m3 per day), and either polyamide spiral-wound membranes or for extreme corrosion environments, titanium-framed systems. Pretreatment in modular systems uses cartridge filters (5-micron absolute), self-cleaning disc filters, or compact UF modules. Brine disposal by sea outfall (for coastal systems) or injection/evaporation pond (for inland).

    Remote and humanitarian deployment applications drive modular desalination adoption: disaster response (potable water for 500 to 10,000 people from a single 20-ft container), military forward operating bases (NATO Waterpoint requirement: 45 L per soldier per day), island and remote community water supply (no pipeline access), and temporary industrial water supply during plant construction.

    Power supply for remote SWRO: solar PV plus battery storage systems are matched to SWRO load; energy storage requirement is sized for 2 to 4 hours of RO operation per kWh of solar capacity. Specific energy consumption of solar-powered SWRO: 3 to 6 kWh per m3 for containerised systems without advanced ERD, 2 to 3 kWh per m3 with pressure exchanger ERD.

    Post your modular desalination project

    Frequently asked questions

    How much water can a containerised desalination unit produce?

    Containerised RO desalination capacity depends on unit configuration and feed water salinity: standard 20-foot ISO container BWRO (brackish water): 50 to 200 m3 per day; SWRO (seawater): 20 to 100 m3 per day. 40-foot container BWRO: 100 to 500 m3 per day; SWRO: 50 to 250 m3 per day. Multiple containers connected in parallel scale capacity proportionally. For a remote village of 1,000 people requiring 50 litres per person per day, a single 20-foot BWRO container covers demand. Factory-tested modular SWRO systems up to 2,000 m3 per day are available from the established manufacturers as skid-mounted modular blocks. Capacity is also limited by power availability: a 100 m3 per day SWRO requires approximately 10 to 15 kW of continuous power (or equivalent solar plus battery).

    How long does it take to deploy a modular desalination plant?

    Containerised modular desalination systems offer significantly faster deployment than conventional stick-built plants. Timeline: procurement and factory testing: 6 to 16 weeks from order to dispatch; site preparation (civil works for foundation, brine outfall, water intake): 4 to 12 weeks (can run in parallel with manufacturing); site installation and commissioning: 1 to 4 weeks (containerised units are pre-wired, pre-piped, and factory-tested; on-site work limited to inter-unit connections, power hookup, and intake/outlet installation); operator training: 2 to 5 days for basic operation. Total timeline from contract award to operational: 8 to 24 weeks. Conventional stick-built plants of equivalent capacity: 18 to 48 months. Emergency and disaster deployment: military-spec containerised units with pre-positioned inventory can be operational within 72 hours of arrival on site.

    What is the energy consumption of modular desalination?

    Energy consumption depends on feed water salinity and system configuration. Brackish water RO (TDS 2,000 to 5,000 mg per L): 0.5 to 1.5 kWh per m3 of permeate. Brackish water RO (TDS 5,000 to 10,000 mg per L): 1.0 to 2.5 kWh per m3. Seawater RO without energy recovery: 5 to 8 kWh per m3. Seawater RO with turbocharger energy recovery (small-scale): 3 to 5 kWh per m3. Seawater RO with isobaric pressure exchanger (medium to large scale, above 200 m3 per day): 2.5 to 3.5 kWh per m3. Solar-powered BWRO for remote communities: 1 to 3 kWh per m3 electricity from solar PV (typical levelised cost of solar electricity: $0.03 to $0.10 per kWh), making total water cost dominated by membrane replacement and O&M rather than energy.

    How is brine from modular desalination disposed of?

    Brine disposal for modular desalination depends on location. Coastal deployments: subsurface diffuser pipe or surface discharge dilutes concentrate in receiving seawater. SWRO brine at 70,000 to 90,000 mg per L TDS must achieve rapid dilution to prevent localised hypersaline zones harmful to marine organisms; diffuser design targets dilution of minimum 10:1 (brine to seawater) within 50 m of outfall. Regulatory consent from marine environment authority required (MMO in UK, USACE in US). Inland BWRO deployments: brine at 5,000 to 20,000 mg per L TDS requires disposal by evaporation pond (land requirement 0.5 to 2 m2 per m3 per day of brine in arid climate), deep well injection (UIC Class I permit in US, Environment Agency permit in UK), or land application for low-TDS concentrate. Brine volume: BWRO at 80 percent recovery produces 250 L of concentrate per m3 of permeate; SWRO at 50 percent produces 1,000 L of concentrate per m3 of permeate.

    Illustrative scenario · Emergency water supply

    A composite drawn from typical projects in this category, not a single client engagement. Figures are indicative.

    Challenge
    A Category 2 resilience partner (UK Civil Contingencies Act 2004) sought a rapidly deployable water treatment capability for a 10,000-person population in the event of a prolonged mains supply failure caused by a major infrastructure incident. Existing mobile water bowsers were assessed as insufficient for more than 96 hours; no pre-positioned treatment capability existed.
    Approach
    Procured two 20-ft containerised BWRO systems (each 100 m3 per day capacity from local groundwater at 1,500 mg per L TDS) and two 20-ft containerised SWRO systems (each 50 m3 per day from coastal sea water). All four units were factory-tested and certified for immediate deployment. Power was provided by integrated diesel generators with 72-hour fuel storage. Annual maintenance contracts and operator training for the responsible authority's water emergency team were included.
    Outcome
    Units successfully deployed in a live exercise simulating a 7-day supply interruption for 8,000 people. Each BWRO unit reliably produced 100 m3 per day at below 200 mg per L TDS compliant with UK drinking water standards. Operators from the local authority and fire service completed 2-day competency training. The authority satisfied its Civil Contingencies Act duty to maintain water supply resilience for vulnerable populations above the minimum of 10 litres per person per day.

    Questions to ask shortlisted providers

    5
    1. 01

      What is the guaranteed permeate TDS and the minimum production capacity at the worst-case feed water quality for our site, and has this been tested on actual site water or a characterised sample?

      Modular desalination performance specifications are typically given at standard test conditions (25 degrees C, specified feed TDS). Real site water often differs in temperature (UK groundwater 10 to 14 degrees C, which reduces RO flux by 20 to 30 percent), TDS, and scaling potential. Performance at site conditions must be specified and ideally demonstrated through a pilot run or treatability test on actual site water before procurement commitment.

    2. 02

      What is the power draw at full production and what generator or grid connection specification is required, and what is the startup power surge compared to steady-state demand?

      Modular SWRO typically draws 3 to 5 kW per m3 per hr of permeate production: a 100 m3 per day unit draws 12 to 20 kW continuous. High-pressure pump startup requires 3 to 5 times the steady-state current for 2 to 5 seconds, which must be accommodated by the generator's transient response capability. Undersizing the power supply results in shutdown on startup surge, which is a common failure mode in emergency deployments using generators sized only for steady-state load.

    3. 03

      What pretreatment is integrated in the containerised unit, and what raw water quality range (turbidity, SDI, biological load) can the unit handle without blocking the RO membranes?

      Modular RO units with only cartridge filter pretreatment are appropriate for clear, low-turbidity groundwater (SDI below 5). For surface water or turbid groundwater, integrated UF or multimedia filter pretreatment is required to protect RO membranes. Deploying a cartridge-filter-only unit on river water during a flooding event (high turbidity, SDI potentially above 20) will block the cartridge filter within hours, stopping production.

    4. 04

      What is the commissioning time from unit arrival on site to first potable water production, and what site preparation (foundations, connections, drainage) is required?

      A containerised unit described as 'rapidly deployable' may still require 2 to 5 days of civil work for bunded concrete foundations (for stabilised operation), raw water intake pipework, brine discharge connection, and electrical supply. For genuine rapid deployment (72 hours to potable production), all connections must be achievable with on-unit hose connections and no civil works. Confirm exactly what site preparation is needed and how long it takes by asking for a deployment timeline from a reference exercise.

    5. 05

      What are the consumable requirements (membrane replacement, filter cartridges, anti-scalant, biocide) and what lead time applies in an emergency procurement context?

      A modular desalination unit deployed in a prolonged emergency (30 to 90 days) will require consumable replenishment: cartridge filter replacement (typically weekly for turbid source water), anti-scalant (continuous dosing), and biocide. If consumables are proprietary and available only from the unit manufacturer, supply chain risk in an emergency is significant. Confirm that standard-sized replacement cartridges and commonly available chemicals can be used in the unit.

    What drives cost in this category

    4
    Feed water salinity and unit type
    Containerised BWRO unit (1,000 to 5,000 mg per L TDS, 100 m3 per day): 60,000 to 180,000 GBP purchase or 800 to 2,500 GBP per month rental. Containerised SWRO unit (35,000 mg per L TDS seawater, 50 m3 per day): 120,000 to 350,000 GBP purchase or 1,500 to 4,000 GBP per month rental. The SWRO unit costs approximately 2 to 3 times more than an equivalent-volume BWRO unit due to higher operating pressure (55 to 70 bar vs 8 to 20 bar), energy recovery requirements, and seawater-rated materials.
    Power supply and energy cost
    An integrated diesel generator for 100 m3 per day BWRO (15 kW steady-state): 15,000 to 35,000 GBP capital, diesel consumption 4 to 8 L per hr (600 to 1,200 GBP per week at 1.50 GBP per L). For SWRO with 3.5 kWh per m3 energy consumption at 50 m3 per day: 7.3 kW demand, 175 kWh per day = 26.25 GBP per day in energy at 0.15 GBP per kWh (grid) or 210 GBP per day from a diesel generator. Grid connection reduces energy cost by 85 percent versus diesel for long-term deployments.
    Brine disposal infrastructure
    Coastal SWRO brine disposal through a temporary flexible hose to a tidal discharge point: 1,000 to 5,000 GBP. Inland BWRO brine at 80 percent recovery (250 L concentrate per m3 of permeate): a 100 m3 per day unit produces 25 m3 per day of brine at 5,000 to 8,000 mg per L TDS requiring tanker collection (400 to 800 GBP per day for 25 m3 tanker) or temporary lined pit. Brine disposal is often the most expensive ongoing operational cost for inland modular deployments.
    Operator cost and training
    Modular desalination units require a trained operator for monitoring, consumable replenishment, and process adjustment. For a 24-hour operation (continuous production), 3 operators on rotating shifts cost 90,000 to 150,000 GBP per year in labour. For intermittent (day shift only) production, 1 to 2 operators cost 40,000 to 80,000 GBP per year. Operator training for personnel without prior RO experience: 2 to 5 days at 500 to 1,500 GBP per person from the unit supplier.

    Key regulations and standards

    4
    Civil Contingencies Act 2004: Water Utility Resilience Duties
    Category 1 responders (water companies) under the Civil Contingencies Act 2004 have a statutory duty to maintain emergency water supply plans and to provide minimum water supply (at least 10 litres per person per day) during incidents affecting the public water supply. Modular desalination units are a recognised emergency supply measure. Ofwat's C-MeX framework penalises water companies for supply interruptions above 12 hours; modular units reduce the duration of interruptions during infrastructure recovery.
    Water Supply (Water Quality) Regulations 2016: Emergency Supply Quality
    Emergency water supply provided by temporary or modular treatment must comply with WS(WQ)R 2016 parametric values for drinking water quality. DWI may grant temporary authorisations for specific parameters during genuine emergencies (e.g. turbidity or chlorine residual outside normal limits) where public health risk is managed. However, TDS, microbiological parameters (E. coli, Enterococci), and nitrate must still comply without derogation. Monitoring of emergency supply must be conducted and results reported to DWI.
    Environmental Permitting Regulations 2016: Temporary Brine Discharge
    Temporary brine discharge from a modular RO unit to surface water or coastal waters requires an Environmental Permit or de minimis exemption from the Environment Agency. EA has simplified procedures for emergency water supply brine discharge (temporary activity exemption, typically available for up to 30 days without full permit). Longer-duration deployments require a standard activity environmental permit. Brine characteristics (TDS, chloride, sodium) must comply with permit conditions to protect receiving water quality.
    WRAS Water Supply (Water Fittings) Regulations 1999: Temporary Supply Connections
    Temporary modular desalination units connected to the public water supply distribution system (e.g. to inject treated water into an isolated zone) must comply with WRAS Water Supply (Water Fittings) Regulations 1999 including backflow prevention (Type AA or BA air gap at the connection point to prevent contamination of the public supply). The water company must approve any direct connection. Membrane units certified to WRAS or NSF 61 for materials in contact with drinking water should be used.

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