91973
AMBERLITE™ HPR1100
Na ion exchange resin, strongly acidic, 20-50 mesh
Sinonimo/i:
Amberlite™ HPR1100 Na, Amberlite™ HPR1100 sodium
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About This Item
Prodotti consigliati
Livello qualitativo
Forma fisica
beads
Produttore/marchio commerciale
Du Pont Amberlite™
Parametri
5-150 °C operating temperature
Perdita
~45% loss on drying, 110°C
Matrice
styrene-divinylbenzene (gel)
Gruppo funzionale matrice
sulfonic acid
Dimensione particelle
20-50 mesh
535-635 μm
operating pH range
0-14
Capacità
≥2.0 eq/L total exchange capacity(Na+ form)
42.0-48.0 % water retention capacity(Na+ form)
Tecnica di separazione
strong cation exchange
Categorie correlate
Descrizione generale
AMBERLITE™ HPR1100 Na Ion Exchange Resin is a strongly acidic cation exchange resin for demineralization and industrial softening applications.
Applicazioni
AMBERLITE™ HPR1100 is a cation-exchange resin and can be used:
- For grafting polyethylene glycols for catalyzing regioselective azidolysis of epoxides.
- For the immobilization of β-cyclodextrin to be used as a phase transfer catalyst for the reduction of epoxides to alcohols.
- As an adsorbent for the removal of arsenic and copper from aqueous solutions.
Note legali
Amberlite is a trademark of DuPont de Nemours, Inc.
Avvertenze
Warning
Indicazioni di pericolo
Consigli di prudenza
Classi di pericolo
Eye Irrit. 2
Codice della classe di stoccaggio
11 - Combustible Solids
Classe di pericolosità dell'acqua (WGK)
WGK 3
Dispositivi di protezione individuale
dust mask type N95 (US), Eyeshields, Gloves
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I clienti hanno visto anche
Arsenite and arsenate sorption by hydrous ferric oxide/polymeric material.
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Removal of copper from aqueous solution by ion exchange resins.
Fresenius Environmental Bulletin, 13(3), 244-250 (2004)
Poly (ethylene glycol) grafted onto dowex resin: an efficient, recyclable, and mild polymer-supported phase transfer catalyst for the regioselective azidolysis of epoxides in water.
The Journal of Organic Chemistry, 73(21), 8382-8385 (2008)
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Photo-fermentative hydrogen production, the new energy production alternative, was greatly enhanced by formed biofilm. To understand the mechanism of enhancement, the intracellular proteome and extracellular polymeric substance (EPS)i during biofilm formation were investigated in this work. Experimental results indicated that
Immobilization of ?-cyclodextrin onto Dowex resin as a stationary microvessel and phase transfer catalyst.
Catalysis Communications, 11(5), 484-486 (2010)
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