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Merck
CN

FGLP04700

Fluoropore膜滤器

greener alternative

Fluoropore®, filter diam. 47 mm, hydrophobic

别名:

PTFE膜滤器,孔径0.22 μm

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关于此项目

UNSPSC Code:
40161507
NACRES:
NB.24
eCl@ss:
32031602
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产品名称

Fluoropore膜滤器, Fluoropore®, filter diam. 47 mm, hydrophobic

material

PTFE membrane
plain filter
white filter

sterility

non-sterile

feature

hydrophobic

manufacturer/tradename

Fluoropore®
Millipore

sustainability

Greener Alternative Product

parameter

130 °C max. temp.
24 mL/min-cm2 water flow rate
5 L/min-cm2 air flow rate

diam.

47 mm

filter diam.

47 mm

thickness

150 μm

gravimetric extractables

0.5%

matrix

Fluoropore®

pore size

0.22 μm pore size
85 % porosity

bubble point

≥1.0 bar, air with methanol at 23 °C

greener alternative category

shipped in

ambient

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General description

我们的 Fluoropore® 滤膜是一种疏水性的聚四氟乙烯(PTFE)聚合物膜,与高密度聚乙烯支架粘合在一起,可以改善正常应用中过滤器的处理性能。Fluoropore 滤膜可提供广泛的化学相容性、高流速和一致性。 (请注意,包含“ FHUP”的目录号是非叠片的,或在没有衬垫的情况下生产的。)

我们的 Omnipore 滤膜是一种亲水性 PTFE 滤膜,可与所有溶剂、酸和碱性溶液相容。

特点 & 优势:
-生物和化学惰性
-高孔隙率产生高流速
-疏水和亲水 PTFE 品种可用于过滤水性和有机样品

应用:
-Fluoropore 滤膜:澄清酸、碱和溶剂;空气监测;过滤和排放气体;紫外光谱

- Omnipore 滤膜:过滤水溶液,澄清酸和碱性溶液
滤器编码:FGLP
过滤器类型:网式过滤器
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.

Other Notes

使用说明

  • 生物截留:微生物
  • 作用机制:过滤(体积排阻)
  • 应用:一般实验室过滤
  • 预期用途:截留或去除生物污染物
  • 使用说明:用 0.2 μm(或更小)孔径的膜对液体进行除菌过滤,有效去除包括细菌、霉菌和酵母菌在内的生物污染物
  • 储存条件:干燥储存
  • 处置声明:根据国家、省市和当地适用法规处置。

Application

  • 澄清酸、碱和溶剂
  • 过滤气体或通气
  • 紫外光谱
  • 颗粒监测
  • HPLC、UPLC、LC-MS/MS流动相过滤
  • 微塑料分析

Legal Information

Fluoropore is a registered trademark of Merck KGaA, Darmstadt, Germany

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Nadine Borduas-Dedekind et al.
Chimia, 74(3), 142-148 (2020-03-22)
During their atmospheric lifetime, organic compounds within aerosols are exposed to sunlight and undergo photochemical processing. This atmospheric aging process changes the ability of organic aerosols to form cloud droplets and consequently impacts aerosol-cloud interactions. We recently reported changes in

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Because of its high sensitivity and extreme versatility, mass spectrometry has become a popular technique for identifying and quantifying molecules within complex mixtures, in diverse research areas that range from systems biology and proteomics to environmental analysis. Successful mass spectrometry requires extremely areful sample preparation, in order to avoid complexity of the mixtures being analyzed. EMD Millipore supports researchers using mass spectrometry with tools or multiple steps of the workflow, including purification, clarification, and analysis.

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