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UNSPSC Code:
40161507
NACRES:
NB.24
eCl@ss:
32031602
Pore size:
1.0 μm pore size, ≥65 % porosity
Material:
PTFE membrane, plain filter, white filter
Feature:
hydrophobic
Diam.:
47 mm
Sterility:
non-sterile
material
PTFE membrane, plain filter, white filter
sterility
non-sterile
feature
hydrophobic
manufacturer/tradename
Fluoropore®, Millipore
sustainability
Greener Alternative Product
parameter
≥150 mL/min-cm2 flow rate (27.5inHg, methanol), ≥300 mL/min-cm2 air flow rate (Gurley), 130 °C max. temp. (Curling observed at elevated temperatures)
diam.
47 mm
filter diam.
47 mm
thickness
≥100 μm
gravimetric extractables
≤0.5%
matrix
Fluoropore®
pore size
1.0 μm pore size, ≥65 % porosity
bubble point
≥6.5 psi (0.45 bar), air with methanol at 23 °C
greener alternative category
shipped in
ambient
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General description
Fluoropore®膜是一种由聚四氟乙烯(PTFE)组成的疏水聚合物。PTFE粘接在高密度聚乙烯支架上,以改善过滤应用。Fluoropore®膜滤器发现在空气监测,过滤和排气气体,在紫外线(UV)光谱,澄清酸,碱和溶剂的应用。
Need a custom membrane filter? Click here to request a custom membrane filter or unique and large package sizes that may not be available via our website.
We are committed to bringing you Greener Alternative Products, which have been re-engineered to enable more sustainable research solutions. The inner & outer boxes containing the membrane discs are made from bio-circular material allocated using the ISCC mass balance approach. Click here for more information.
Application
- 澄清酸、碱和溶剂
- 气体过滤或通气
- 紫外光谱
- 颗粒监测
- PLC、UPLC、LC-MS/MS 流动相过滤
- 微塑料分析
Features and Benefits
- Fluoropore®膜可显示一致性,并提供广泛的化学相容性。
- 生物和化学惰性。
- 高孔隙率产生高流速。
- 可用于过滤水性和有机样品。
Legal Information
Fluoropore is a registered trademark of Merck KGaA, Darmstadt, Germany
Cheryl L Weyant et al.
Environmental science & technology, 53(6), 3306-3314 (2019-02-26)
Traditional biomass stoves are a major global contributor to emissions that impact climate change and health. This paper reports emission factors of particulate matter (PM2.5), carbon monoxide (CO), organic carbon (OC), black carbon (EC), optical absorption, and scattering from 46
Rui Rong et al.
Nanotoxicology, 13(3), 354-368 (2019-02-02)
Nanomaterials are widely used in an ever-increasing number of consumer and industrial products. It is therefore essential that the toxic effects of nanomaterials are understood in order to improve product safety. Here we evaluate the toxicity of inhaled halloysite nanotubes
J M Pacheco et al.
Transboundary and emerging diseases, 64(2), 564-573 (2015-08-26)
Foot-and-mouth disease (FMD) is a highly contagious livestock disease of high economic impact. Early detection of FMD virus (FMDV) is fundamental for rapid outbreak control. Air sampling collection has been demonstrated as a useful technique for detection of FMDV RNA
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