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HAWP04700

Millipore

MF-Millipore 滤膜,孔径0.45 µm

MF-Millipore, filter diam. 47 mm, hydrophilic, white, pkg of 100 discs

别名:

MCE膜滤器,0.45 μm孔径

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About This Item

分類程式碼代碼:
40161507
eCl@ss:
32031602
NACRES:
NB.24

材料

mixed cellulose esters (MCE) membrane
plain filter
white filter

品質等級

agency

in accordance with ASTM® D4807,D4898

無菌

non-sterile

特點

hydrophilic

包裝

pkg of 100 discs

製造商/商標名

MF-Millipore
Millipore

參數

4 L/min-cm2 air flow rate
60 mL/min-cm2 water flow rate
75 °C max. temp.

過濾器直徑

47 mm

厚度

150 μm

重量法萃取物

2.5%

顏色

white

折射率

n/D 1.51

基質

MF-Millipore

孔徑

0.45 μm pore size
79 % porosity

容量

262 μg/cm2 adsorption capacity (insulin)

起泡點

≥1.8 bar, air with water at 23 °C

運輸包裝

ambient

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相关类别

一般說明

MF-Millipore 滤膜由纤维素醋酸酯和纤维素硝酸酯的生物惰性混合物制成,被广泛用于分析和研究应用。

不含 Triton 表面活性剂的 MF-Millipore 滤膜与标准 MF-Millipore 过滤器相比,湿润剂含量极少,并且水可萃取物含量较低。

特点 & 优势:
-用于生物学和环境监测应用的多功能滤膜
-具有各种孔径,黑色或白色,有或没有网格的表面
-可进行环氧乙烷、伽马射线和高压灭菌
滤器编码:HAWP

應用

  • 澄清水溶液
  • 颗粒去除
  • 颗粒分析
  • 微生物学分析
  • 废水中病毒样颗粒的分离
  • 微塑料分析级水
  • 核酸结合,包括eDNA

其他說明

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:通过孔径0.2 μm(或更小)的膜进行液体的除菌过滤可有效去除生物污染物,包括细菌、霉菌和酵母菌。 为了选择性地截留较大的生物污染物,可用孔径0.45μ m(或更大)的膜过滤液体以捕获并支持微生物的生长,然后进行培养和分析。
  • 储存申明:在干燥的地点远离热源储存
  • 处置申明:根据国家、省市和当地适用法规处置。

法律資訊

ASTM is a registered trademark of American Society for Testing and Materials
MF-Millipore is a trademark of Merck KGaA, Darmstadt, Germany

象形圖

Flame

訊號詞

Danger

危險聲明

危險分類

Flam. Sol. 1

儲存類別代碼

4.1B - Flammable solid hazardous materials

水污染物質分類(WGK)

WGK 3


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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
Rodrigo B Carneiro et al.
Journal of hazardous materials, 389, 121888-121888 (2019-12-28)
Understanding the role of the different anaerobic digestion stages on the removal of organic micropollutants (OMPs) is essential to mitigate their release from wastewater treatment plants. This study assessed the fate of 21 OMPs during hydrolysis and acidogenesis to elucidate
Anton Taboada-Santos et al.
Water research, 169, 115258-115258 (2019-11-12)
Novel wastewater treatment plants (WWTPs) are designed to be more energy efficient than conventional plants. One approach to becoming more energy efficient is the pre-concentration of organic carbon through chemically enhanced primary treatment (CEPT) or high-rate activated sludge (HRAS). This

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