产品名称
Durapore®膜过滤装置, 5.0 µm, Durapore®, filter diam. 47 mm, hydrophilic, white
material
PVDF membrane
plain filter
white filter
sterility
non-sterile
feature
hydrophilic
manufacturer/tradename
Durapore®
Millipore
sustainability
Greener Alternative Product
parameter
>15.4 mL/min-cm2 water flow rate
32 L/min-cm2 air flow rate
85 °C max. temp.
diam.
47 mm
filter diam.
47 mm
thickness
160 μm
gravimetric extractables
0.5%
color
white
refractive index
n/D 1.42
matrix
Durapore®
pore size
5.0 μm pore size
70 % porosity
bubble point
≥0.2 bar, air with water at 23 °C
greener alternative category
shipped in
ambient
Quality Level
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Application
- 澄清过滤生物溶液
- 颗粒监测
Durapore®膜滤器,5.0 μm已用于:
- the 从水生样本中收集浮游植物
- 温室苗圃水环境标本中游动孢子的采集
- 从各种细胞系中采集悬浮培养物
General description
Durapore®膜是聚偏氟乙烯膜,与尼龙、硝化纤维素和聚四氟乙烯等其他膜相比,它结合的蛋白质更少。它支持高流速,最大限度地提高样品回收率,并显示广泛的化学兼容性。
滤器编码:SVLP
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.
Legal Information
Durapore is a registered trademark of Merck KGaA, Darmstadt, Germany
存储类别
11 - Combustible Solids
wgk
WGK 3
Laboratory studies on the biodegradation of organisms for estimating carbon storage potential in coastal aquatic ecosystems
Ishii Y, et al.
Coastal Engineering Journal, 1-12 (2021)
G A Ridge et al.
Plant disease, 98(4), 551-558 (2014-04-01)
The goal of this study was to develop a procedure that could be used to evaluate the potential susceptibility of aquatic plants used in constructed wetlands to species of Phytophthora commonly found in nurseries. V8 agar plugs from actively growing
Lisa M Røst et al.
Metabolites, 10(2) (2020-02-26)
Absolute quantification of intracellular metabolite pools is a prerequisite for modeling and in-depth biological interpretation of metabolomics data. It is the final step of an elaborate metabolomics workflow, with challenges associated with all steps-from sampling to quantifying the physicochemically diverse
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