{"id":637,"date":"2021-06-04T09:47:40","date_gmt":"2021-06-04T01:47:40","guid":{"rendered":"http:\/\/tjhecheng.com\/uncategorized\/d101non-polar-adsorption-resin.html"},"modified":"2021-06-04T09:47:43","modified_gmt":"2021-06-04T01:47:43","slug":"d101non-polar-adsorption-resin","status":"publish","type":"post","link":"http:\/\/tjhecheng.com\/en\/pro\/d101non-polar-adsorption-resin.html","title":{"rendered":"D101Non-polar adsorption resin"},"content":{"rendered":"\n

D101 is a polystyrene-type non-polar adsorption resin, the adsorption mechanism is van der Waals force adsorption. The resin has a large specific surface area and a large pore size, and is suitable for adsorbing various hydrophobic substances in the extraction of traditional Chinese medicine. The adsorption capacity is large, the elution is easy, and the adsorption kinetic performance is good. It is stable to heat, organic solvents and acids and alkalis under general use conditions, so it has a long service life. It does not adsorb sugars, inorganic acids, alkalis, salts, and small-molecule hydrophilic organic substances, so it can separate common Chinese medicine components from these substances. The performance of this resin is comparable to Amberlite XAD-4 and Diaion HP-20.<\/p>\n\n

Quality Index:<\/p>\n\n

Appearance:<\/strong> Milky white spherical particles<\/p>\n\n

Specific surface area:<\/strong> 600~700 m2\/g<\/p>\n\n

Particle size range:<\/strong> 0.3~1.25 mm<\/p>\n\n

Average pore size:<\/strong>\u2014\u2014\u2014\u2014<\/p>\n\n

Wet apparent density:<\/strong>0.6~0.72 g\/ml<\/p>\n\n

D101 resin has a wide range of uses. There are many successful application examples in the extraction of natural medicine components, such as:<\/p>\n\n

  1. Separation and Purification of Pueraria Flavonoids \nPueraria lobata extract solution with a total flavonoid content of 51.2% is adsorbed with D101 resin and eluted with 70% ethanol to obtain pueraria flavonoids with a total flavonoid purity of 90% (the table below). The effect is obviously better than the polyamide adsorption method and the n-butanol extraction method.<\/li><\/ol>\n
    Method<\/td>Extract volume after purification<\/td>Total flavonoids after purification<\/td>Purity of total flavonoids<\/td>Yield of total flavonoids<\/td><\/tr>
    <\/td>\u00a0(g) \u00a0<\/td>\u00a0\u00a0(g) \u00a0<\/td>\u00a0\u00a0(%)\u00a0<\/td>\u00a0\u00a0(%)\u00a0<\/td><\/tr>
    D101 resin<\/td>4.63<\/td>4.14<\/td>89.4<\/td>79.3<\/td><\/tr>
    Polyamide adsorption<\/td>3.03<\/td>2.91<\/td>96.0<\/td>55.7<\/td><\/tr>
    N-butanol extraction<\/td>4.86<\/td>4.03<\/td>82. 9<\/td>77.2<\/td><\/tr><\/tbody><\/table><\/figure>\n
    1. Examples of adsorption and separation of saponin<\/li><\/ol>\n