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NY2004700

Millipore

尼龙网滤膜

Millipore, filter diam. 47 mm, hydrophilic

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别名:
尼龙膜过滤器,孔径20.0 μm
UNSPSC代码:
40161507
eCl@ss:
32031602
NACRES:
NB.24

物料

Nylon membrane
plain filter
white filter

无菌性

non-sterile

特点

hydrophilic

制造商/商品名称

Millipore

参数

100 °C max. temp. (curling may be seen at temperatures above 75°C)

过滤器直径

47 mm

厚度

55 μm

孔径

14 % porosity
20.0 μm pore size

运输

ambient

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一般描述

尼龙滤膜与多种溶液相容。有两种滤膜可供选用:1)孔径范围为0.20到1.2 µm 的尼龙滤膜,以及 2)网目范围为5到180 µm 的编织网滤膜。

我们的5 µm尼龙编织网滤膜(NY054700)常用于汽车工业的清洁度分析。

特点 & 优势:
•孔径范围广
•耐腐蚀性溶剂

应用:
微粒去除和澄清;溶剂过滤;微粒分析;颜料监测;汽车工业清洁度分析
滤器类型:滤网
过滤器编码:NY20

应用

  • 收集藻类和细胞
  • 颗粒分析
  • 大颗粒过滤
  • 秀丽隐杆线虫和斑马鱼的毒理学和药物筛查
  • 颗粒成像系统的背景过滤器
  • 溶剂预过滤

涂料监测

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Lei Su et al.
Chemosphere, 252, 126567-126567 (2020-05-24)
Microplastic pollution is an important issue for environmental management as their ubiquity in marine and freshwaters has been confirmed. Pollution sources are key to understanding how microplastics travel from land to open oceans. Given that information regarding microplastic transport from
Hua Deng et al.
Environmental pollution (Barking, Essex : 1987), 258, 113658-113658 (2019-12-16)
Microplastics pollution in the environment is closely determined by the surrounding industrial and human activities. In present study, we investigated microplastics in water and sediment samples collected from a textile industrial area in Shaoxing city, China. The abundance of microplastics
Bingxu Nan et al.
Environmental pollution (Barking, Essex : 1987), 259, 113865-113865 (2020-01-01)
Compared to marine microplastics research, few studies have bio-monitored microplastics in inland waters. It is also important to understand the microplastics' uptake and their potential risks to freshwater species. The Australian glass shrimp Paratya australiensis (Family: Atyidae) is commonly found
Patrícia C Henriques et al.
ACS applied materials & interfaces, 12(18), 21020-21035 (2020-04-03)
Graphene-based materials (GBMs) have been increasingly explored for biomedical applications. However, interaction between GBMs-integrating surfaces and bacteria, mammalian cells, and blood components, that is, the major biological systems in our body, is still poorly understood. In this study, we systematically

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