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Diaion® WA30 free base

pkg of 1 kg

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About This Item

UNSPSC Code:
23151817

form

beads

Quality Level

packaging

pkg of 1 kg

parameter

100 °C max. temp.

moisture

~49%

technique(s)

LPLC: suitable

matrix

styrene-divinylbenzene (highly porous)

matrix active group

tertiary amine

particle size

16-50 mesh

operating pH

0-9

capacity

1.5 meq/mL by wetted bed volume
3.0 meq/g by dry weight

separation technique

anion exchange

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General description

Diaion WA30 is highly porous weak-base anion exchange resin with tertiary amine groups. It is used as an absorbent which is effective in the removal of arsenic(V) from drinking water/ground water. It is used to separate trace amounts of Pd (II), Pt(IV) and Au(III) from macrocomponent ions.

Application

  • Diaion WA30 was used for pre-conditioning the columns for HPLC analysis.
  • Diaion WA30 was used for immobilization of enzymes.
Weakly basic anion exchange resin that is best in class for high MW organic acids. It also has a strong decolorization capability. Applications for the resin include: water treatment, pretreatment of corn syrup, beet sugar and dextrose, refining of formalin, glycerine, and enzymes, and as a weak base catalyst. This resin meets requirements of FDA Food Additive Regulation 21 CFR 173.25.

Legal Information

Diaion is a registered trademark of Mitsubishi Chemical Corp.

Storage Class Code

11 - Combustible Solids

WGK

WGK 3

Flash Point(F)

Not applicable

Flash Point(C)

Not applicable

Personal Protective Equipment

dust mask type N95 (US), Eyeshields, Gloves

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Immobilization of levan fructotransferase for the production of di-fructose anhydride from levan
Lim, Seung, et al.
Biotechnology Letters, 23, 1335-1339 (2001)
Fundamental studies on the ion-exchange separation of boron isotopes
Kakihana, Hidetake, et al.
Bulletin of the Chemical Society of Japan, 50, 158-163 (1977)
M Rabiul Awual et al.
Environmental science and pollution research international, 20(1), 421-430 (2012-05-09)
Arsenic contamination of groundwater has been called the largest mass poisoning calamity in human history and creates severe health problems. The effective adsorbents are imperative in response to the widespread removal of toxic arsenic exposure through drinking water. Evaluation of
Effect of amyloglucosidase on wort composition and fermentable carbohydrate depletion in sorghum lager beers
Pozo-Insfran, David, et al.
Journal of the Institute of Brewing, 110, 124-132 (2004)
Investigation of macroporous weakly basic anion exchangers applicability in palladium (II) removal from acidic solutions-batch and column studies
Wolowicz, A., and Z. Hubicki.
Chemical Engineering Journal, 174, 510-521 (2011)

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