IW Tremont MD-100-3001 Multi-Density Filter Disk for Cannabis & Botanical Extractions, Retention: 1.0um, Diam: 2.4cm (Pack of 10)

  • Diameter: 2.4cm: Final Retention: 1.0um
  • Designed for cannabis and botanical extraction filtration processes considered too challenging for normal filtration products.
  • Manufactured with 100% binderless, glass microfiber material. Excellent chemical resistance to solvents, acids and bases.
  • Built-in pre-filter captures particulates of >300um and binds typically difficult-to-filter subtances without clogging.
  • Filter imparts low signature or background extractables which negatively affect cannabis and botanical extract quality.
  • Pack of 10
  • Manufacturer: IW Tremont
  • Manufacturer Part No: TREM-MD-100-3001
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Item Number: TREM-MD-100-3001
$9.08

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Details

The IW Tremont Multi-Density Filter Disk is manufactured with 100% binderless, borosilicate glass which features several layers of density along with a unique surface formation that speeds and optimizes filtration. These filter disks can handle botanical extraction tasks typically considered too challenging for other filter products. This unique product bridges the gap between macro and micro filtration.

Using a newly developed production method, IW Tremont produces this filter with a final retention stage selection of <0.5um to 2.7um (the same as Tremont’s binderless glass microfiber line of products). The unique filter has a built-in robust pre-filter which captures particulates from >300um and binds typically difficult to filter substances without clogging such as:

  • Lipids (Natural Fats, Oils and Waxes
  • Tars
  • Cellular Matter
  • Proteins
  • Irregularly granular material
  • Viscous suspensions and slurries




These Multi-Density Filter Disks also have been optimized to meet the extreme demands of high fluidic volumes including:

  • Manifold Vacuum Filtration
  • Short Path Extraction Methods
  • High Fluidic Volume Filtration
  • Buchner Funnel Filtration
  • Positive Pressure Filtration



The flow and drainage rate is exceptionally rapid via the filter's highly irregular surface formation which has both high and low points which aid in the reduction of surface loading. The unique fibers which sit on the outermost surface of the pre-filter side are designed to extend up and add further pre-filtration structure similar to glass floss. In standing solutions, the pre-filter side resists compaction causing surface plugging found in other common filter configurations.

The filter is free of binders, glues and resins which ensures a higher-purity filtrate. They also impart very low signature or background extractables which negatively affect extract quality. This filter replaces multi pre-filtration stage products in applications where a series of pre-filters are used to prepare samples prior to membrane filtration which saves you time and reduces variability in extract signature upon analysis methods.

Lastly, the borosilicate glass microfiber construction of this filter disk is highly resistant to aggressive solvents, acids and bases with a usable range of 0 to 14pH and a wide effective temperature range of -200 to 500°C. The final filtration stage is available in the same porosity range of IW Tremont's binderless glass microfiber line of products including Grade A-83 Nano-Scale filters.

  • Not compatible with hydrofluoric acid solutions.
  • (Glass microfiber filters may become brittle and susceptible to cracking at <-100*C).

Documents

The IW Tremont Multi-Density Filter Disk is manufactured with 100% binderless, borosilicate glass which features several layers of density along with a unique surface formation that speeds and optimizes filtration. These filter disks can handle botanical extraction tasks typically considered too challenging for other filter products. This unique product bridges the gap between macro and micro filtration.

Using a newly developed production method, IW Tremont produces this filter with a final retention stage selection of <0.5um to 2.7um (the same as Tremont’s binderless glass microfiber line of products). The unique filter has a built-in robust pre-filter which captures particulates from >300um and binds typically difficult to filter substances without clogging such as:

  • Lipids (Natural Fats, Oils and Waxes
  • Tars
  • Cellular Matter
  • Proteins
  • Irregularly granular material
  • Viscous suspensions and slurries




These Multi-Density Filter Disks also have been optimized to meet the extreme demands of high fluidic volumes including:

  • Manifold Vacuum Filtration
  • Short Path Extraction Methods
  • High Fluidic Volume Filtration
  • Buchner Funnel Filtration
  • Positive Pressure Filtration



The flow and drainage rate is exceptionally rapid via the filter's highly irregular surface formation which has both high and low points which aid in the reduction of surface loading. The unique fibers which sit on the outermost surface of the pre-filter side are designed to extend up and add further pre-filtration structure similar to glass floss. In standing solutions, the pre-filter side resists compaction causing surface plugging found in other common filter configurations.

The filter is free of binders, glues and resins which ensures a higher-purity filtrate. They also impart very low signature or background extractables which negatively affect extract quality. This filter replaces multi pre-filtration stage products in applications where a series of pre-filters are used to prepare samples prior to membrane filtration which saves you time and reduces variability in extract signature upon analysis methods.

Lastly, the borosilicate glass microfiber construction of this filter disk is highly resistant to aggressive solvents, acids and bases with a usable range of 0 to 14pH and a wide effective temperature range of -200 to 500°C. The final filtration stage is available in the same porosity range of IW Tremont's binderless glass microfiber line of products including Grade A-83 Nano-Scale filters.

  • Not compatible with hydrofluoric acid solutions.
  • (Glass microfiber filters may become brittle and susceptible to cracking at <-100*C).

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