deionization Equipment in China

71 Results found
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ENVOPUR - EDI - Electrochemical Deionisation

by EnviroChemie GmbH Technology for Water

Electro-deionization (EDI) is based on the engineering principle of electrodialysis. It is an electrochemical separation process in which ions from a low concentration solution pass through a special membrane to a solution of higher concentration. The activating force is an electric field between cathode and anode.

Purolite - A835 - Deionisation of Process Liquors

by Purolite Corporation

Purolite A835 is a macroporous-type anion exchange resin with an acrylic matrix. The macroporous acrylic matrix ensures excellent removal of organic acids including those of high molecular weight from process liquors. The desorption which occurs upon regeneration markedly reduces the risk of resin fouling, thus maintaining the high operating ...

Aquatech WATERTRAK - Electro-deionization Process

by Aquatech International Corporation

The Electro-deionization process uses electric current to treat (polish) deionized water from RO systems etc., to ultra-pure standards required for many critical applications.FEDI water systems will replace the conventional Mixed Bed Polishers and provide several advantages including; Lower capital and installation costs. Easier to maintain. No ...

Aquatech WATERTRAK - Mixed Bed Deionization

by Aquatech International Corporation

Mixed bed deionizers are quite superior to two column deionizers in terms of the water quality they produce. As water passes through the mixed beddeionizer it has millions of chances to contact a cation bead, then an anion, then another cation and so on. An exchange takes place of course only when a positive ion contacts a negative ion and vice ...

Derwent - Continuous De-ionisation Plant

by Derwent Water Services Ltd

Derwent Water Services Continuous De-ionisation (CDI) products are the most advanced generation of Ion Exchange technology currently supplied. CDI is a chemical-free process that uses ion exchange resins and electricity to produce ultrapure de-ionised water. Our products are environmentally friendly, operate with continuous production, and have ...

Purolite - C104Plus - Dealkalization, Deionization; Softening - High Capacity

by Purolite Corporation

Purolite C104Plus is a premium grade polyacrylic weak acid cation exchanger. The functional groups of the carboxylic type give high chemical efficiency in many applications, especially for the removal of bicarbonate alkalinity in water treatment, showing good rates of exchange. Its major use is in the dealkalization and softening of waters and ...

Purolite - C104EPlus - Dealkalization; Deionization; Softening - Food and Potable Water

by Purolite Corporation

Basic Features: Application - Dealkalization; Deionization; Softening - Food and Potable Water, Polymer Structure - Porous crosslinked polyacrylic, Appearance - Spherical beads, Functional Group - Carboxylic Acid, Ionic Form as Shipped - H+

Purolite - C107 - Deionization & Softening of Water & Aqueous Organic Solutions

by Purolite Corporation

Purolite C107 is a high capacity polyacrylic weak-acid cation exchanger developed for water dealkalization. It has particularly fast kinetics combined with the high capacity. The functional groups of the carboxylic type give high chemical efficiency in many applications, especially for the removal of bicarbonate alkalinity in water treatment, ...

Purolite - C104SPlus - Dealkalization, Deionization, Softening of Water & Aqueous Organic Solutions - High Capacity

by Purolite Corporation

Basic Features: Application - Dealkalization, Deionization, Softening of Water & Aqueous Organic Solutions - High Capacity, Polymer Structure - Porous crosslinked polyacrylic, Appearance - Spherical beads, Functional Group - Carboxylic Acid, Ionic Form as Shipped - H+

Purolite - SST104 - Dealkalization, Deionization;, Softening of Water & Aqueous Organic Solutions

by Purolite Corporation

The Purolite SST family of high efficiency cation resins is based on shallow shell technology. Simply stated, the shorter the diffusion path, the more rapid the ion exchange occurs. This is particularly important during regeneration. Reducing the depth of penetration required to convert exchange sites, allows for a more complete regeneration and ...

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