Brackish water reverse osmosis plant 2,000 L/h – BWRO

A 2,000 L/h BWRO plant for brackish water, saline boreholes, agriculture or industry. Full study, control system and Flocea quotation.

Étude technique
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Configuration selon votre site

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SKU: FLO-BWRO-2000
Catégorie :

Description

A 2,000 litre-per-hour BWRO plant for treating brackish water on the scale of a farm, a workshop, a community site or a process line. It brings pre-treatment, membranes, instrumentation and controls together in a configuration sized from the water analysis.

2,000 L/hnominal output
Brackish watertarget raw water
Three-phase to be studiedsupply to be provided
Subject to studypre-treatment and configuration

Nominal capacity: actual output depends above all on salinity, temperature, pressure, membrane fouling and the quality of the pre-treatment. Flocea validates these parameters before proposing anything.

What projects is it for?

  • Farm and irrigation
  • Industrial or food-processing line
  • Community or off-grid site with a saline borehole

At this flow rate, plant availability and running costs become the priority. Flocea looks at the recovery rate, storage, pump redundancy, clean-in-place, consumables and concentrate disposal.

Choosing between a marine watermaker, seawater SWRO and brackish water BWRO

A complete study, not just a membrane

Water analysisTDS or salinity, pH, hardness, iron, turbidity and temperature.
Treatment trainIntake, pre-filtration, dosing, reverse osmosis, flushing and post-treatment.
Site conditionsEnergy, space, ventilation, corrosion, maintenance and concentrate discharge.

Specification of the proposed configuration

Nominal output 2,000 litres per hour, i.e. up to 48 m³/day over 24 hours
Raw water Brackish water, borehole or saline aquifer
Technology Industrial BWRO on a skid
Pre-treatment Train to be defined from the analysis and the variability of the resource
Control system PLC, safety functions, monitoring of pressure, flow and conductivity
Cleaning CIP loop and operating protocol to be provided
Energy Supply and power confirmed once the pumps have been selected
Options Container, UV, storage, distribution and remote supervision

Important: these figures set the framework for the study. The final bill of materials, power draw, recovery rate, permeate quality and dimensions are confirmed at quotation, once the raw water and the site have been validated.

Schéma des cinq étapes du dessalement par osmose inverse

Operation and consumables

The maintenance plan should be set out contractually alongside the water quality and the service hours. Cartridge and chemical consumption is calculated from the analyses, while membrane cleaning is triggered by drift in pressure, flow or salt passage.

  • pre-filter cartridges, replaced according to turbidity and running hours;
  • antiscalant or conditioning chemicals where the analysis justifies them;
  • membrane cleaning and preservation chemicals for extended shutdowns;
  • reverse osmosis membranes, whose life depends on pre-treatment and how the unit is run;
  • seals, sensors and pump wear parts, per the maintenance schedule.

Compare the Flocea range

Solution Nominal flow Raw water Typical project
Marine 30 30 L/h Seawater Sailing boat and small craft, building autonomy
Marine 100 100 L/h Seawater Large yacht with a full crew
SWRO 250 250 L/h Seawater Coastal villa, guest accommodation, small camp
SWRO 1000 1,000 L/h Seawater Hotel, farm, construction site, small authority
BWRO 500 500 L/h Brackish water Saline borehole, smallholding, process water
BWRO 2000 2,000 L/h Brackish water Agriculture, industry, community site
Informations nécessaires au dimensionnement d’un dessalinisateur

Frequently asked questions

What daily volume can a 2,000 L/h BWRO produce?

The theoretical maximum is 48 m³ over 24 hours at nominal flow. The usable volume allows for shutdowns, flushes, maintenance and real-world conditions.

Can this plant be containerised?

Yes. Containerisation makes transport easier and protects the equipment, but it has to allow for ventilation, maintenance access, possible frost and air treatment.

How should consumables be forecast?

A reliable estimate rests on the raw water flow, turbidity, scaling risk, recovery rate and annual running hours.