
Application Notes: General


Analyzing crops for beneficial and harmful compounds is an indispensable tool for assessing the viability of various agricultural crops for consumption.

This application note presents data on a rapid, automated polymer degradation study under ultraviolet (UV) light with the presence of oxygen at a controlled temperature.

An isocratic HPLC method for the analysis of aflatoxins. Uses the DFL-10 (filter fluorescence detector) with a photochemical reactor to improve sensitivity.

Select the proper manifold for your individual microbiological testing procedure, choose between reusable and single use funnels or filtration units, and decide between different sizes of manifolds and enjoy the manifold that adapts to your needs.

Automatic membrane filter dispensing either by touch of a button, hands-free motion detection or by using a foot switch minimize risks of secondary contamination.

Innovative design features, coupled with the largest surface areas and fastest flow rates make Minisart® syringe filters the ideal choice for your syringe filtration needs.

Safety first: Whatever beverage you produce – beer, wine, bottled water, softdrinks, or spirits - you cannot afford to compromise on quality. Sartorius helps you meet the industry’s growing challenges now.


This application note describes the improved identification of pharmaceutical low-level impurities when using SFC and UHPLC as orthogonal separation modes.

Discover an automated sample preparation system that effectively and efficiently extracts diquat and paraquat from drinking water via EPA Method 549.2.

Teach a virtual chromatography lab with LC simulation software. See how one chemistry professor replaced hands-on labs with online experiential learning.











This application demonstrates the efficacy of this chromatographic technique for a fast orthogonal analysis to evaluate mAb ADCC activity.


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From siRNA to mRNA to DNA, separating full length product from impurities can be challenging. Taking into consideration the nature of the oligonucleotide you are interested in, you will be able to make informed choices about what approach to use to characterize or purify your molecule.


This application note describes the company’s range of oligonucleotide columns and oligonucleotide standards.

This application note demonstrates the suitability of the company’s stationary phases to separate deprotected RNA and DNA oligonucleotides of different sizes.

A method using the company’s system to purify long-and short-term oligonucleotides is described.
