C100 |
Gel type standard. Resin with high capacity for softening and demineralisation. |
C100 E |
Gel type, particularly for softening. Resin specially treated for domestic use and for industrial use where potable water is required. |
C120 E |
Gel type. Resin designed for softening, especially small scale domestic. |
C145 |
Macroporous type with excellent resistance to attrition and osmotic shock. Excellent kinetics of exchange. |
C150 |
Macroporous type with excellent resistance to attrition and osmotic shock. For treatment of condensates, continuous processes and special applications ( galvanic plating, sugar). |
C160 |
Macroporous type. Very highly crosslinked. High capacity. For special applications Quentin process, treatment of industrial waste. Offers excellent resistance to oxidation. |
C100X10 |
Gel type with excellent resistance to oxidation. Gives particularly good separation from anion resin in mixed beds. |
SGC 100 |
Supergel grade. Very high resistance to physical breakage and osmotic shock fracture. |
SGC 100x10 |
Supergel grade. High flow rate condensate polishing, very high resistance to physical breakage and osmotic shock fracture. |
|
C104E |
Macroporous high capacity. Good Kinetics. |
|
C106 |
Macroporous type with excellent resistance to osmotic shock, for special applications. Treatment of ammoniacal condensates, fixation of antibiotics. |
|
C107E |
Macroporous type, specially designed for small cartridges used in domestic appliances. |
|
C115E |
Very weakly acidic type for special applications (pharmaceutical, fixation of antibiotics). Suitable for carix process. |
|
C106EP |
Special food grade. |
|
A400 |
Clear gel type. High operating capacity. Good kinetics giving demineralisation to high purity. Good silica removal |
|
A420S |
Clear gel type. Good kinetics and colour removal from sugar syrups. |
|
A600 |
Good mechanical strength. Production of ultra pure water. Good silica removal. |
|
A200 |
Clear gel type. Good kinetics and operating capacity. Good mechanical strength. For demineralisation, giving good silica removal in counter-flow regeneration. |
|
A300 |
Clear gel type. High capacity for demineralisation of water. For floating beds (FL grade). |
|
A500 |
Macroporous type. Very good mechanical and osmotic resistance. For condensate treatment and continuous systems. Good silica removal. |
|
A500P |
Macroporous type. Highly porous. For removal of organic matter. Decolorisation of sugar solutions. |
|
A505 |
Macroporous type. High operating capacity. Excellent mechanical and osmotic strength. Good silica removal. |
|
A510 |
Macroporous type. High operating capacity. Excellent mechanical and osmotic strength. For demineralisation, fluidised beds and continuous systems. |
|
SGA400 |
Supergel strong base Type I. Showing exceptional resistance to physical breakdown. |
|
SGA600 |
As for SGA400, but with increased capacity |
|
A100 |
Macroporous type. Resistant to organic fouling. Good osmotic resistance. Resin optimised for demineralisation of water and saccharose. |
|
A103S |
Macroporous type. High capacity for demineralisation/ decolorisation of glucose and other organic solutions. Also de-ash of milk whey |
|
A105 |
Macroporous type. Exceptional resistance to osmotic shock and organic fouling. For use especially in continuous systems. |
|
A830 |
Macroporous type. Special applications. Sulphate removal from sea water. Effluent neutralisation. Very high capacity |
|
A845 |
Gel type. Demineralisation of water high in organic matter, and of organic solutions (sugar juices, gelatine). High operational capacity. |
|
A835 |
Macroporous resin. Resistant to high organics. |
|
S920 |
Selective removal of metals. Excellent selectivity and capacity for mercury removal. |
|
S930 |
Selective removal of polyvalent ions (including those of transition elements). |
|
S940 |
Highly selective for metals of low atomic weight. Especially useful for decalcification of brine. (Ca++,Mg++ Sr++). |
|
S950 |
For removal of metals from waste waters. For example in hydrometallurgy and galvanoplating industries. |
|
MB 400 |
Production of demineralised water of high purity silica free. Conductivity attainable less than 0.1µS/cm-1. High operating capacity. |
|
MB 400IND |
Production of demineralised water of high purity silica free. Conductivity attainable less than 0.1µS/cm-1. High operating capacity. |
|
MB 400QR |
Production of demineralised water of high purity silica free. Conductivity attainable less than 0.1µS/cm-1. High operating capacity. |
|
MB 35 |
Production of demineralised water of high purity silica free. Conductivity attainable less than 0.1µS/cm-1. High operating capacity. |
|
MB 37 |
None Regenerable Cartridge application. Will provide water of <0.1µS/cm-1. |
|
MB 39 |
None Regenerable Cartridge application. Will provide water of <0.1µS/cm-1. |
|
MB 46 |
For electroerosion equipment. High capacity. |
|
MB 47 |
Slightly lower capacity version of MB46. |
|
MB 59VC |
Production of partially demineralised water (CO2 and Si O2 not eliminated). Capacity dependent upon % alkalinity in feed solution. |
|
NRW 100 |
Removal of cations including radioactive isotopes from aqueous solutions. |
|
NRW 150 |
Removal of cations including radioactive isotopes. Very good resistance to osmotic shock. |
|
NRW 160 |
Removal of cations including radioactive isotopes. Highly selective for caesium 137. |
|
NRW 400 |
Production of ultra pure water for the semi conduction industry. To be used in conjunction with NRW 100. |
|
NRW 505 |
Removal of anions including boric acid and radioactive isotopes. Very good resistance to osmotic shock. |
|
NRW 600 |
High capacity for removal of anions from radioactive circuits. Good attrition resistance. |
|
NRW 35 |
Demineralisation and decontamination of radioactive elements. High selectivity for caesium removal (cooling ponds). Excellent resistance to osmotic shock and high capacity. |
|
NRW 37 |
Demineralisation and decontamination of secondary cooling circuits/effluent. Excellent resistance to attrition. |
|
NRW 37 Li7 |
Decontamination of pressurised water reactor (PWR) circuits. |
|
NRW 37 Li |
Decontamination of pressurised water reactor (PWR) circuits. |
|
NRW 40 |
Demineralisation and decontamination of radioactive effluents. Particularly resistant to both mechanical and osmotic shock. |
|
NRW 354 |
Highly selective for caesium 137 and radioactive colloids (cooling ponds, waste waters). |
|
NRW 354 Li7 |
Decontamination of pressurised water reactor (PWR) circuits. |
|
A850 |
Clear gel type. Good mechanical resistance. Reversibly removes organics with good resistance to fouling. For demineralisation of water and sugar decolorisation. |
|
A860 |
Macroporous type. Adsorbent resin for decolorisation of organic solutions (sugar syrups). Organic scavenger. |
|
A870 |
Dual functional gel. Weak base/Strong base. High capacity with good reversible resistance to organic fouling. For demineralisation of water. |