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Merck
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主要文件

HTTP04700

Millipore

Isopore膜滤器

Isopore, filter diam. 47 mm, hydrophilic, white

别名:

聚碳酸酯膜过滤器,孔径0.4 μm

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选择尺寸

5 G
¥960.36

¥960.36


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选择尺寸

变更视图
5 G
¥960.36

About This Item

UNSPSC代码:
40161507
eCl@ss:
32031602
NACRES:
NB.24

¥960.36


请联系客服了解存货情况

物料

plain filter
polycarbonate membrane
white filter

质量水平

无菌性

non-sterile

特点

hydrophilic

制造商/商品名称

Isopore
Millipore

参数

≥50 mL/min-cm2 water flow rate at 10 psi (typical results)
≥7 L/min air flow rate at 10 psi
140 °C max. temp.
18 mL/min-cm2-psi water flow rate (maximum flow rate per 1.0 psi)

直径

47 mm

过滤器直径

47 mm

厚度

10 μm

重量萃取物

<1%

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此商品
TSTP02500GTTP04700ATTP02500
manufacturer/tradename

Isopore, Millipore

manufacturer/tradename

Isopore, Millipore

manufacturer/tradename

Isopore, Millipore

manufacturer/tradename

Isopore, Millipore

parameter

≥7 L/min air flow rate at 10 psi, 18 mL/min-cm2-psi water flow rate (maximum flow rate per 1.0 psi), ≥50 mL/min-cm2 water flow rate at 10 psi (typical results), 140 °C max. temp.

parameter

0.868 L/min-cm2-psi air flow rate, 140 °C max. temp., 3628 mL/min-cm2-psi water flow rate (maximum flow rate per 1.0 psi), ~475 mL/min-cm2 water flow rate at 10 psi (typical results)

parameter

0.007 L/min-cm2-psi air flow rate, 140 °C max. temp., 3.36 mL/min-cm2-psi water flow rate (maximum flow rate per 1.0 psi), ~16 mL/min-cm2 water flow rate at 10 psi (typical results)

parameter

125 mL/min-cm2-psi water flow rate (maximum flow rate per 1.0 psi), 140 °C max. temp., 4.08 L/min-cm2-psi air flow rate, ~85 mL/min-cm2 water flow rate at 10 psi (typical results)

material

plain filter, white filter, polycarbonate membrane

material

plain filter, polycarbonate membrane, white filter

material

plain filter, polycarbonate membrane, white filter

material

plain filter, polycarbonate membrane, white filter

pore size

0.4 μm pore size, 10-20 % porosity

pore size

11.3 % porosity, 3.0 μm pore size

pore size

0.22 μm pore size, 13.8 % porosity

pore size

0.8 μm pore size, 5-20 % porosity

sterility

non-sterile

sterility

non-sterile

sterility

non-sterile

sterility

non-sterile

feature

hydrophilic

feature

hydrophilic

feature

hydrophilic

feature

hydrophilic

一般描述

Isopore滤膜由聚碳酸酯薄膜组成,具有光滑的玻璃状表面,便于更清晰地观察样品。这种轨迹蚀刻滤网被推荐用于膜表面的样品分析。Isopore滤膜可使用电子显微镜分析空气中的污染物。

应用

  • 可吸收有机卤化物(AOX)
  • 颗粒监测
  • 空气监测
  • 微塑料分析
  • 微塑料分析级水

Isopore 膜过滤器已用于:
  • 由河流挖掘淤泥堆分离的微塑料上清液的过滤[1]
  • 生物物理学研究用双十八烷基二甲基溴化铵(DODAB)囊泡的制备[2]
  • 过滤微生物分析用饮用水[3]

特点和优势

  • Isopore滤膜显示低背景干扰。
  • 表面颗粒保留简化了计数和分析。
  • 不吸湿有利于快速干燥和样品分析。
  • 半透明材料;也提供棕色品种。

注意

高压灭菌后可能会降低流速。

法律信息

ISOPORE is a trademark of Merck KGaA, Darmstadt, Germany

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    Johanna A L Goldman et al.
    PloS one, 14(9), e0222325-e0222325 (2019-09-12)
    Iron (Fe) is an important growth factor for diatoms and its availability is further restricted by changes in the carbonate chemistry of seawater. We investigated the physiological attributes and transcriptional profiles of the diatom Thalassiosira pseudonana grown on a day:
    Wendy Rusli et al.
    Polymers, 10(7) (2019-04-10)
    Vesicle templated emulsion polymerization is a special form of emulsion polymerization where the polymer is grown from the outside of the vesicle, leading to nanocapsules. Cost effective nanocapsules synthesis is in high demand due to phasing out of older methods
    Development and Validation of a Simple Bioaerosol Collection Filter System Using a Conventional Vacuum Cleaner for Sampling
    Unterwurzacher V, et al.
    Aerosol Science and Technology, 1-15 (2021)
    Xiaoliang Ji et al.
    Journal of hazardous materials, 404(Pt A), 124132-124132 (2020-10-07)
    Microplastics (MPs) are an environmental problem of growing concern. Aquatic sediments are considered as a final sink for MPs, but dredging can remobilize sedimentary MPs into both aquatic and terrestrial ecosystems. Although dredging is globally used for waterway deepening and
    Drinking water microbiology in a water-efficient building: stagnation, seasonality, and physicochemical effects on opportunistic pathogen and total bacteria proliferation
    Ley C, et al.
    Environmental science : water research & technology, 6(10), 2902-2913 (2020)

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