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Economic Cation-Exchange Membrane (Homogeneous vs. Heterogeneous) for Electrodialysis (ED), CEECEM

Economic Cation-Exchange Membrane (Homogeneous vs. Heterogeneous) for Electrodialysis (ED), CEECEM

$29.00 USD
In Stock SKU: CEECEMHO
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In Electrodialysis (ED), the Cation Exchange Membrane (CEM) is responsible for the selective transport of cations (e.g., Na+, Ca^{2+}, Li+) while blocking anions and water. Similar to anion membranes, the choice between homogeneous and heterogeneous structures determines the efficiency, lifespan, and cost-effectiveness of the water treatment or chemical process.

In a homogeneous CEM, the negatively charged functional groups (typically sulfonic acid groups, -SO3^-) are chemically bonded to a uniform polymer backbone. The membrane is a single-phase material. The polymer matrix and the ion-exchange groups are integrated at the molecular level, often created through polymerization of monomers or functionalization of a pre-formed film. It is suitable for high-purity applications, Lithium salt concentration, and energy-sensitive industrial processes.

Heterogeneous CEMs are composite materials. They are made by mixing finely ground cation-exchange resin (like those used in water softeners) with a thermoplastic binder (such as Polyethylene or Polypropylene). It is a "macro-composite" where the active resin particles are physically trapped within an inert plastic matrix. It is suitable for blackish water desalination, wastewater pre-treatment, and rugged environments where the stack might be disassembled and cleaned frequently.

Part Number

CEECEMHO (C-E-ECEM-HO)

CEECEMHE (C-E-ECEM-HE)

Appearance

Light Yellow

Pink to Red

Exchange Capacity (Dry)

2.2

2.0

Selectivity

≥95%

≥90%

Wet Thickness

0.30-0.35 mm

0.4 mm

Area Resistance (0.5 M NaCl)

<5.5 Ω cm2

~11 Ω cm2

Thermal Stability

≤50°C

≤45°C

Package Grade

10cm * 10cm/pcs/pack (a larger size can be supplied upon request)

10cm * 10cm/pcs/pack (a larger size can be supplied upon request)

 

Reference: 

  1. M.A. Andreeva, et al., Effect of homogenization and hydrophobization of a cation-exchange membrane surface on its scaling in the presence of calcium and magnesium chlorides during electrodialysis, J. Membrane Sci., 2017, 540, 183-191.
  2. László Koók, et al., László Koók, Functional stability of novel homogeneous and heterogeneous cation exchange membranes for abiotic and microbial electrochemical technologies, J. Membrane Sci., 2022, 658, 120705

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