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XX4404700

Millipore

Filter Holder, 47 mm, stainless steel

Filter Holder, 47mm, stainless steel

Synonym(s):

47 mm filter holder, Stainless steel filter holder

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About This Item

UNSPSC Code:
41104909
eCl@ss:
32031613
NACRES:
NB.24

material

silicone seal
stainless steel

Quality Level

parameter

19 bar max. inlet pressure (275 psi)

technique(s)

pressure filtration: suitable

H

2.7 cm

diam.

7.6 cm

filter diam.

47 mm

filtration area

13.8 cm2

fitting

1/4 in. female NPT inlet fitting
1/4 in. female NPT outlet fitting

application(s)

filtration

compatibility

for use with In-Line Stainless Steel Filter Holder

shipped in

ambient

General description

Applications:
In-Line Stainless Steel Filter Holders are commonly used for the filtration of gases or liquids at inlet pressures of 20 to 700 bar. Differential pressure depends on filter type used. All filter holders may be autoclaved (available in 25 mm and 47 mm).

Filter holder XX4404700 is equipped with a back-pressure support screen. It may be autoclaved with filter in-place, if PTFE-coated support screens, XX4404702 and XX4404704, are used.
- XX4204709, XX4304701, XX4404703, 5614, and 00907P are replacement parts for Filter Holder XX4404700.

Filter holder XX4504700 may be equipped with an upstream filter support screen, XX4504704, for back-pressure protection of filter.
- XX4504704, XX4504705, XX4504710, XX4504713, and XX45047RK are replacement parts for Filter Holder XX4504700.

Replacement parts for the 25mm SS Filter Holder are available as a kit under Catalog Number XX45025RK, which includes: (3) stainless steel hex-cap screws, (3) LCR-treated Buna-N O-rings (2-018), (1) stainless steel support screen, (1) Allen wrench.

Application

Filter Holder, 47mm, stainless steel

Principle

Pressure

Certificates of Analysis (COA)

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Yun Long Xue et al.
Nature communications, 11(1), 1461-1461 (2020-03-21)
Polymer crosslinking imbues chemical stability to thin films at the expense of lower molecular transportation rates. Here in this work we deployed molecular dynamics simulations to optimise the selection of crosslinking compounds that overcome this trade-off relationship. We validated these

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