Water treatment for industrial, residential and commercial facilities
Packaged (prefabricated) modular tanks from the manufacturer

Water treatment for industrial, residential and commercial facilities

Comprehensive water treatment systems tailored to specific water sources, facility requirements, and water quality standards.

Fire-Drop  manufactures water treatment systems for industrial enterprises, cottage communities, food production facilities, construction sites, and remote engineering infrastructure sites. Our company provides everything needed for effective water purification while meeting regulatory water quality standards.

We offer a full range of services for the implementation and operation of water treatment systems:

  • design

  • equipment development and manufacturing

  • water treatment installation

  • system installation at the client's site

  • commissioning

  • maintenance of installed water treatment stations

Each industry sets its own requirements for water purity and composition, determining the types of filter media, control valves, instrumentation, and automation systems to be used.

We select the treatment scheme based on the client's needs — from installing specific units to deep filtration, disinfection, and automatic system control systems.


Why is water treatment necessary?

Water from wells, boreholes, surface sources, or centralized networks is not always suitable for use without additional treatment. The water may contain elevated levels of iron, manganese, hardness salts, organic contaminants, turbidity, unpleasant odors, dissolved gases, bacteria, and other impurities.


In domestic water supply, this affects the taste, smell, and color of water, the condition of plumbing and pipes, as well as the quality of life and health of the consumer. In industrial applications — it impacts the stability of technological processes, product quality, and equipment service life.


Water treatment helps to:

  • remove turbidity, odor, color, and off-tastes

  • reduce levels of iron, manganese, and hardness salts

  • protect pipelines, boilers, heat exchangers, and process equipment

  • prepare water for drinking, domestic, or industrial use

  • ensure stable water quality for the entire facility

  • reduce risks of scale, sediment, corrosion, and biological contamination


What does a water treatment system include?

Water treatment is not a universal filter, but a set of equipment assembled for a specific task. The system composition depends on the raw water quality, required capacity, facility purpose, and treated water quality requirements.

The system may include:

  • mechanical filters to remove sand, clay, and large particles

  • aeration units to oxidize iron, manganese, and hydrogen sulfide

  • iron and manganese removal filters

  • water softening systems

  • adsorption filters to remove odors, tastes, chlorine, and organic contaminants

  • ultrafiltration to reduce turbidity and microbiological risks

  • reverse osmosis for deep water purification

  • ultraviolet or chemical disinfection

  • pumping equipment, tanks, automation, and control panels


Main water treatment technologies

Water aeration

Aeration saturates water with oxygen. As a result, iron and manganese are converted into insoluble forms, which can then be removed using filters. Aeration also eliminates unpleasant odors by reducing hydrogen sulfide concentrations and decreases the content of dissolved gases.

This technology is used in water treatment systems for industrial facilities, enterprises, as well as for domestic and drinking water supply — especially when using water from boreholes and wells.

Iron removal system

Iron removal plants remove metal compounds from water, primarily iron and manganese. Most commonly, catalytic oxidation is used: water passes through a filter media, impurities are converted into insoluble forms and retained in the filter.

Such systems are used for industrial enterprises, cottage communities, populated areas, food production facilities, and domestic drinking water supply.

Water softening

Softening filters remove hardness salts — primarily compounds of calcium and magnesium. These are precisely what cause scale formation in boilers, heat exchangers, pipes, steam generators, and household equipment.

Filters of this type help protect engineering systems, reduce maintenance costs, and extend equipment service life.

Adsorption treatment

Adsorption filters improve the taste, odor, color, and clarity of water. Various filter media can be used, such as activated carbon (coconut, wood, coal-based) and other filtering materials (quartz sand, zeolites, aluminosilicates, fibroil, anthracite), which retain contaminants on their surface.

Such filters are used to remove organic contaminants, tastes, odors, and specific impurities. They are also often used before reverse osmosis to protect membranes and enhance the efficiency of further treatment.

Reverse osmosis

Reverse osmosis is used where deep water purification and stable output quality are required. Water passes through a semipermeable membrane that retains most dissolved impurities.

The system helps reduce mineralization, remove hardness salts, nitrates, fluorides, organic compounds, and other contaminants. Reverse osmosis is in demand at industrial plants, food production facilities, in pharmaceuticals, electronics, energy, and for drinking water preparation.

Ultrafiltration

Ultrafiltration is a membrane-based water purification process. Membranes retain suspended solids, algae, bacteria, and some organic contaminants.

This technology is suitable for preparing drinking, process, and recirculating water, treating surface water sources, polishing wastewater, and protecting subsequent water treatment stages.


For which facilities do we manufacture water treatment systems?

Industrial enterprises

For production facilities, water must meet equipment and process requirements. Water treatment systems help protect production lines, boiler houses, heat exchangers, pipelines, and other engineering equipment from scale, corrosion, and contamination.



Food production facilities

In the production of beverages, dairy, meat, bakery products, and baby food, water quality directly affects the taste, appearance, safety, and consistency of the products. Such systems often include softening, iron removal, adsorption, reverse osmosis, and disinfection.



Cottage communities

For cottage communities, the water treatment system must take into account the source quality, number of houses, seasonal occupancy, and uneven water consumption. The solution can be centralized — for the entire community — or localized for individual houses and groups of consumers. It is important to provide for automatic operation and the ability to adapt as the community grows.



Remote and temporary sites

For construction sites, shift camps, agricultural facilities, recreation centers, hotels, and sites without developed infrastructure, block-modular water treatment stations are suitable. These are ready-made containerised solutions with equipment already assembled inside an insulated module. After delivery, the station is connected to a water source, power supply, and drainage system.



Modern approach to water treatment process organisation

Block-modular water treatment stations

A block-modular station is a ready-made water treatment system in a containerised format. This format is suitable when water supply needs to be set up quickly without constructing a permanent building.

Inside the module, filters, pumps, chemical dosing units, automation, disinfection systems, heating, ventilation, and lighting can be installed. If necessary, several modules can be combined into a single system.


Advantages of a containerised station solution:

  • fast installation and commissioning

  • no need for a separate building for water treatment

  • equipment is assembled and tested in advance

  • the system occupies less space at the site

  • the module can be delivered to remote regions

  • operation can be fully automated

  • the system can be scaled to accommodate increased load


How we select a system 

1. We study the water source

We determine where the water comes from: borehole, well, surface water body, centralized network, or another source.

2. We analyse the water composition

The analysis results show which impurities need to be removed and which technologies are truly necessary.

3. We consider the intended use of water

Requirements for water differ for drinking supply, boiler houses, food production, process lines, or residential communities.

4. We select the treatment scheme

We define the equipment set: filtration, aeration, iron removal, softening, adsorption, membrane purification, disinfection, and automation.

5. We design and manufacture the station at our production facility

Equipment is selected based on capacity, operating conditions, installation site, and facility operating mode.

6. We perform delivery, installation, and connection

The system is supplied with all necessary components and operational documentation.

7. If necessary, we provide maintenance of installed water treatment stations


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