Ion Exchange Skids - Degremont · PDF fileThe highest purity water is produced with mixed bed...

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Applications Ion Exchange technology is a proven method of producing high purity softened and demineralized water, first commercialized in the 1940’s and 1950’s, and is used in most industries which require high purity water. Regeneration techniques would include Co-Current, Split-Flow Counter Current and Packed Bed designs. The highest purity water is produced with mixed bed systems which incorporate cation and anion resin in the same process unit. Ion Exchange Skids MAIN FEATURES Custom Build and Modular Units Compact footprint High purity softened and demineralized water Fully instrumented and controlled Complex Process Development Capability Quality Assurance and Control Management - Demineralization - Condensate Polishing - Ion Exchange - Removal of cations and anions ION EXCHANGE SKIDS SPECIFIC TECHNOLOGY The Ion exchange process involves the exchanging of contaminant ions for Na + ions in a softening application and H + and OH - ions in pure water application. HOW IT WORKS The most basic process is softening, whereby calcium and magnesium ions are removed from the water and replaced with sodium. Processes for producing the highest quality demineralized water with almost no impurities remove ions with resins which are highly selective for anions and cations, replacing the contaminant ions with hydrogen and hydroxide ions. The regenerant solutions used for ion exchange are simple acids and base reagents. The regenerant solution for softening is typically sodium chloride, salt, although specialty process may use acids and bases. HEADWORKS BIOLOGY SEPARATION MEMBRANE DISINFECTION BIOSOLIDS u SYSTEMS Ñ Applications CUSTOM DESIGN EXPERIENCE HIGH QUALITY RESPONSIVENESS

Transcript of Ion Exchange Skids - Degremont · PDF fileThe highest purity water is produced with mixed bed...

Page 1: Ion Exchange Skids - Degremont · PDF fileThe highest purity water is produced with mixed bed systems which incorporate cation and anion resin in the same process unit. Ion Exchange

Applications

Ion Exchange technology is a proven method of producing high purity softened and demineralized water, first commercialized in the 1940’s and 1950’s, and is used in most industries which require high purity water. Regeneration techniques would include Co-Current, Split-Flow Counter Current and Packed Bed designs. The highest purity water is produced with mixed bed systems which incorporate cation and anion resin in the same process unit.

Ion Exchange Skids

MAIN FEATURES

Custom Build and Modular Units Compact footprint High purity softened and demineralized water

Fully instrumented and controlled Complex Process Development Capability Quality Assurance and Control Management

- Demineralization- Condensate Polishing - Ion Exchange- Removal of cations and anions

IoN ExchANgE SkIdS SpEcIFIc TEchNology

The Ion exchange process involves the exchanging of contaminant ions for Na+ ions in a softening application and H+ and OH- ions in pure water application.

hoW IT WoRkS

The most basic process is softening, whereby calcium and magnesium ions are removed from the water and replaced with sodium. Processes for producing the highest quality demineralized water with almost no impurities remove ions with resins which are highly selective for anions and cations, replacing the contaminant

ions with hydrogen and hydroxide ions. The regenerant solutions used for ion exchange are simple acids and base reagents. The regenerant solution for softening is typically sodium chloride, salt, although specialty process may use acids and bases.

HEADWORKS BIOLOGY SEPARATION MEMBRANE DISINFECTION BIOSOLIDSu SYSTEMS

Ñ ApplicationsCUSTOM DESIGN ExPERIENCE HIGH QUALITY RESPONSIvENESS

Page 2: Ion Exchange Skids - Degremont · PDF fileThe highest purity water is produced with mixed bed systems which incorporate cation and anion resin in the same process unit. Ion Exchange

Anderson process Water Treatment

Ion Exchange Skids

Water Intake from river or lake

Water Reuse

Rejectioninto naturalenvironment

RawWater

processWater

IndustrialWastewater

TreatedWastewater

process WWTp

pre-Treatment

Technologies:From screeningto Filtration

primary Separation

Technologies:- Membrane (UF/NF/RO)- Ion exchange- Decarbonation

post Treatment

Technologies:- Membrane (2nd Pass RO)- Ion exchange- EDI- Condensate Polisher

plant operations

Industrial process

WW Treatment

Industrial WastewaterTreatment plant

Manufacturers’ Representative:

contacts www.degremont-technologies.com

Copyright © 2007 Anderson Water Systems Inc., Degremont Technologies - SYS04202EN-V1-06/2007 - Subject to change without prior notice, contact Degremont Technologies for more information.

TEchNIcAl dATA

Our units are custom manufactured to specific client requirements. All systems capacities can be achieved through modular design. Utilizing these building blocks flow rates

from 200 gpm to 10.000 gpm are easily constructed to fit into all variations of foot prints specified by our clients.

Remote controls and alarms

- Intrinsic Alarms for: High and Low Pressure, Temperature,Pressure Drop Feed, Conductivity. Control System could include PLC systems for both local and remote and could include lin-kage to SCADA control center.

Materials

- From carbon steel to specialty alloy- Fully instrumented and controlled.

Control Panel

ASME Code Pressure VesselsHigh Capacity

Ion Exchange Resins

Integral Regeneration

(where requested)

Degremont Technologies - Anderson

160 King Street W., 2nd Floor

Dundas, Ontario L9H 1V4

CANADA

Tel: + 1 905 627 9233

Fax: + 1 905 627 2381

e-mail: [email protected]

INdUSTRIAl TREATMENT lINE