About technology

Innovative technology of dynamic water clarification

Dyclar is used for water
and wastewater treatment

mining water
industrial wastewaters
municipal wastewaters
surface water
artesian water
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KEY BENEFITS

MECHANICAL FILTERS
SEDIMENTATION TECHNOLOGIES
MEMBRANE TECHNOLOGIES (ULTRAFILTRATION)
Compact footprint +
filtration rate for Dyclar 15 - 20 m/h, for MF 5 - 15 m/h)
Higher treatment quality +
For Dyclar: NTU<1, TSS <1.5ppm, PO4<0.1 ppm, Fe <0.1 ppm, COD/BOD reduction more 70%
Gravity assisted backwash +
lower pressure and washing water consumption
Extended filtering media service life +
20 years for DYCLAR vs 10 years for mechanical filters
Dyclar floating filtering media +
is not subject to microbial clogging and mudding
OVER lamellar clarifier +
Higher treatment quality (COD reduction: for Dyclar more 70-90%, for lamellar clarifier – 50%; TSS for Dyclar 10 ppm) One-Stage filtration: : post-treatment is not required Enhanced reliability (no bottom scrapers )
OVER sand-ballast sedimentation +
Higher treatment quality (COD reduction: for Dyclar more 70-90%, for ballast sedimentation – 50-70%; TSS for Dyclar 5 ppm) Compact footprint (2-3 times less) One-Stage filtration: post-treatment is not required Clarification without use of microsand High abrasive wear of pumps, clarifier and scrapers due to circulating sand used as ballast. High specific gravity ballast (normally fine sand) is not required. Enhanced reliability (no mixers and no bottom scrapers )
Less sensitive to feed water quality +
in terms of turbidity, color, oil and suspended solids and microbiological contamination
One-Stage treatment +
of surface water without additional pre-treatment
Extended filtering media service life +
20 years for DYCLAR vs 5 years for membrane service
Resistance to water pressure surge +
water hummer
Backwashing +
without acids and alkali chemicals

TECHNOLOGY
BRAND VALUES

Simplicity
Dyclar technology has only three basic components: vessels, inert layer (polymer granules), and water treatment reagents. Simplicity leads to Dyclar’s reliability and durability.
INNOVATION
A unique discovery that combines simplicity of traditional solutions and modern trends in resource consumption reduction.
Naturally
Our goal is to preserve ecological balance by treating wastewater and providing clean water resources, reducing power consumption and using recycled plastics.
COST EFFICIENCY
We believe that efficiency and environmental friendliness should be more affordable, therefore our solution is to maintain minimum capital and operating costs.
Gravity use
Air-assisted regeneration and gravity-assisted backwash processes bring along both an improvement to overall reliability of the system and a significant reduction in capital and operational expenses for water treatment.

BASIC IDEA

Dyclar technology is compact, cost-effective, efficient and applicable for rough climate conditions. The Inert® filtration layer is a technological know-how. Dyclar dynamic clarifiers work simultaneously on micro- and macro-levels: chemical reagents are dosed so that colloids and suspended particles coagulate. This helps activate the top layer of the polymer filtration media turning it into a “magnet” that attracts contaminant floc particles. In addition, it is a huge molecular membrane rather than a solid piece with billions of filtering channels piercing through.
Dyclar units do not have any rotating parts while Inert layer helps compensate hydraulic shocks ensuring operational reliability. Service life of filter media is 20 years. Dyclar technology is continuously improving to reach even higher efficiency and to always meet sustainability goals. Dyclar flagship version, which was launched in 2019, has doubled capacity without any changes to the unit footprint and is suitable for filtering loads made of 100% processed polymers (i.e. 25 tons per one Dyclar, to treat 200 m3/h of water).

DYCLAR EFFECIENCY

QUALITY PARAMETER REFERENCE PROJECTS STATISTICS EU STANDARTS RESULT
FEED WATER DYCLAR CLARIFIED WATER DIRECTIVE (EU) 2020/2184 URBAN WASTEWATER TREATMENT DIRECTIVE (UWWTD 91/271/EEC)
Total suspended solids, mg/l 3-300 0,5-2,0 35/60 Achived
Turbidity, NTU 3-450 0,1-0,7 NTU ≤ 1 NTU Achived
Oxidisability, mg/l O2 3,8-76 1,6-9,4 5 Achived
Color, deg. 30-807 6-20 Achived
Iron, g/l 300-7600 30-120 200 Achived
Petroleum products (oil), mg/l 0,06-3,4 0,03-0,09 Achived
BOD, mg/l 1-12,7 0,5-3,4 25 Achived
COD, mg/l 11,4-140 4-25 125 Achived
Phosphates, mg/l ~0,1-1,2 0,01-0,05 15 Achived
Copper, mg/l ~0,0053-0,024 0,001 2 Achived
Ammonium, mg/l 0,12-0,6 0,04-0,15 0,5 Achived
Aluminium, mg/l 50-3700 20-120 Iron, mg/l Achived

DYCLAR COST-EFFECTIVENESS

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    PRODUCT RANGE

    SOURCE FEED WATER EFFLUENT MODIFICATIONS OF DYCLAR/CUSTOMIZATION OF DYCLAR
    DYCLAR VR-DC-MF2 DYCLAR VR-DC-MF2 DYCLAR VR-DC-MF2
    River, lake


    Well water

    Drinking water
    Feed water for demineralization
    Feed water for desalination (ion exchange)
    Industrial wastewater


    Mine drainage water


    Wastewater with high oil-content


    Storm water


    Sewage wastewater (post treatment)

    Discharge to river/lake
    Surface impoundment
    Reuse of purified water

    DELIVERY OPTIONS

    DYCLAR OPERATIONS DYCLAR HEADQUARTERS
    ENGINEERING R&D
    PROCUREMENT LABORATORIES
    INSTALLATION SUPERVISION PILOTING
    COMMISSIONING
    CHEMICALS SUPPLY

    Operational service

    Reagents
    Provision of reagents for installed Dyclar equipment:
    Dyclear VA
    Clarification of raw water with removal of dissolved salts, heavy metals and other substances dissolved and undissolved in water.
    Dyclear FMA
    ntensification of bonding of microfloc particles and activation of filtering layer that provides “magnet” type attraction of contaminant floc particles. Magnetic nanoparticles INERT® work as a molecular membrane that is permeated with billions of filtering microchannels.

    Inert

    Provision of Inert filter media for Dyclar equipment in two versions:
    Inert DC filter media made of primary polymers for drinking water treatment
    Inert filter media made of recycled raw polymer materials for industrial applications.