5 Videos about the topic separation

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More space on your laboratory bench – most compact refrigerated centrifuge in its class

Standby feature ECO mode is energy-efficient and reduces noise level

The high-performance Sigma 4-5KL laboratory centrifuge is designed for throughput and capacity. The hight torque enables especially short acceleration times and makes laboratory processes efficient. With a temperature adjustment range of –10°C to +40°C the refrigerated version Sigma 4-5KL is ...

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Solid-liquid extraction in less than 2 hours

Fully automatic and four times faster than the conventional Soxhlet method

Whether fat determination or residue and environmental analytics - efficiency and safety are at the forefront of the SOXTHERM rapid extraction system. Fully automatic and programmable processes increase the reproducibility of analysis while saving valuable time. Simply insert the extraction ...

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Did you know that metal interactions can put your analytical results at RISK?

Did you know that metal interactions can put your analytical results at RISK?

Non-specific adsorption (NSA) of metal sensitive analytes can lead to loss of sensitivity, poor peak shape, poor reproducibility and lengthy passivation procedures. The occurrence of these NSA losses can be hard to predict and therefore, a good plan to mitigate them leads to less risk and more ...

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EAF4 Electrical-Asymmetrical Flow FFF for Characterization of sample CHARGE and SIZE

2 Dimensional FFF Characterization with Electrical field combined to Flow Field in a single Separation Channel

Postnova Analytics announces the launch of the new EAF2000 - an innovative new member of the FFF Platform simultaneous working Electrical and Asymmetrical Flow Field-Flow Fractionation (EAF4) system designed to enhance separation and characterization of biopharmaceuticals, environmental and ...

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New method for making zeolite nanosheets for ultra-selective membranes

A new method to make zeolite nanosheets leads to high performance membranes for separation and purification processes. Credit: Prashant Kumar and Michael Tsapatsis, University of Minnesota

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