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Merck
CN

Z114014

Sigma-Aldrich

Wheaton 玻璃血清瓶

volume 125 mL, clear, O.D. 20 mm, diam. × H 54 mm × 107 mm

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别名:
Wheaton Serum Vial
UNSPSC代码:
41122001
NACRES:
NB.11

物料

borosilicate glass bottle

描述

USP Type I

特点

autoclavable
closure type crimp top vial

外径

20 mm

容量

125 mL

直径× 高度

54 mm × 107 mm

体积

125 mL

颜色

clear

配件

opening for 20 mm

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一般描述

它可高压灭菌,易于灭菌,用于保存化学物质,防止污染。

应用

  • 28 Validation of a closed system for dispensing serum eye drops.: This study validates a closed system for dispensing serum eye drops, employing Wheaton glass serum bottles to maintain sterility and prevent contamination, which is critical in ophthalmological applications (Hogg et al., 2022).
  • Optimizing the effect of hydrochar on anaerobic digestion of organic fraction municipal solid waste for biogas and methane production.: The research explores the optimization of hydrochar′s effect on anaerobic digestion, utilizing Wheaton glass serum bottles to conduct controlled experiments, ensuring precise measurement of biogas and methane production (Ghasemzadeh et al., 2022).
  • Technical note: Design, development and validation of an automated gas monitoring equipment for measurement of the dynamics of microbial fermentation.: This technical note describes the development of automated gas monitoring equipment, using Wheaton glass serum bottles to monitor microbial fermentation dynamics accurately, contributing to advancements in bioengineering processes (Rahavi et al., 2022).

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Leonard I Wassenaar et al.
Rapid communications in mass spectrometry : RCM, 32(3), 184-194 (2017-11-14)
The nitrogen and oxygen (δ δ NO The Cd-azide method yielded excellent results for routine determination of δ
Mark A Altabet et al.
Rapid communications in mass spectrometry : RCM, 33(15), 1227-1239 (2019-04-14)
The nitrogen and oxygen (δ15 N, δ18 O, and δ17 O values) isotopic compositions of nitrate (NO3- ) are crucial tracers of nutrient nitrogen (N) sources and dynamics in aquatic systems. Current methods such as bacterial denitrification or Cd-azide reduction
Roland Wirth et al.
Frontiers in bioengineering and biotechnology, 8, 557572-557572 (2020-10-20)
Microalgae-based bioenergy production is a promising field with regard to the wide variety of algal species and metabolic potential. The use of liquid wastes as nutrient clearly improves the sustainability of microalgal biofuel production. Microalgae and bacteria have an ecological

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