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Way to Calculate the Correct Amount of Desiccant for Pharmaceuticals

Posted on January 16, 2021January 21, 2021 by admin

If your desiccant does not have enough absorption capability, your Pharmaceutical product won’t be adequately protected from moisture. If you include an excessive amount of desiccant on your package; drug products become brittle and can crack. To make sure pharmaceutical products are in their best Environment, Multisport uses simulation technology to figure the amount of desiccant needed for a particular drug chemistry. Using the perfect amount of desiccant keeps medication products secure and effective. In the movie below, a Multisport scientist explains how Multisport Works with pharmaceutical companies to guarantee drug products are safe and effective when they reach the men and women who rely on them.

pharmaceutical desiccant

The most typical Use for an indicating silica gel is to get a moisture sensitive product which will be inspected regularly as it provides a quick visual indicator of how well it is doing. Due to the inclusion of cobalt chloride, indicating silica gel shouldn’t be used in contact with products for consumption such as food or pharmaceuticals. The Dry-Box Canister is stuffed with an indicating silica gel that is regenerable. Rather than replacing the desiccant inside, heating the canister will undo the adsorbing action and permit the material to be reused. Molecular sieve is the best pharmaceutical desiccant based on technical performance characteristics. Its capacity to adsorb moisture, in this case water vapor, is so pronounced it may eliminate trapped H20 molecules from a completely saturated silica gel bead, which then alters the silica gel back to its initial Cobalt blue color.

Molecular sieves Are artificial porous crystalline aluminosilicates that have been designed to have a very strong affinity for especially sized molecules. The definitive characteristic of the molecular sieve structure, as compared to other desiccant medias, is the uniformity of the pore size openings. There is No pore Size distribution with molecular sieves, within the production process the pore size on the molecular sieve particles can be controlled. The most widely used pore size is 4 angstroms 4A although 3 angstroms 3A, 5 angstroms 5A and 10 angstroms 13X can be found. This distinctive feature allows for the choice of a molecular sieve product that may adsorb water vapor yet exclude many other molecules like volatile organic compounds VOCs that may or might not be within the bundle.

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