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3P Instruments BeVision S1 classic image analyzer for particle size and shape
3P Instruments BeVision S1 employs the latest particle image processing software to the traditional microscope imaging method, providing visualized and accurate particle size distribution and shape analysis results. BeVision S1 is used widely in particle shape observation and analysis, such as grinding abrasives, superhard materials, spherical materials and metal powder abrasives.

3P Instruments BeVision M1 image scanning and particle size and shape analyzer
BeVision M1 is an automatic image scanning system for filter paper cleanliness analysis. Equipped with a metallurgical microscope, programmable motorized stage, autofocus function, and high-resolution CCD, BeVision M1 can capture and recognize each and every particle, automatically stitching the images to a large panoramic image.

3P Instruments Bettersize catalog
3P Instruments Bettersize has 5 main product series. Each of the series in their portfolio provides you simple, fast, and reliable analysis of powder and particle materials.

3P Instruments AMI-300Lite catalyst characterization instrument
The AMI-300Lite provides rapid catalyst characterization in a compact, affordable package. The AMI-300Lite was designed specifically for the price-conscious customers with applications that are more routine or less demanding. As always, full automation and powerful data-handling software assure data accuracy and improve laboratory efficiency

3P Instruments AMI-300HP high pressure catalyst characterization instrument
The AMI-300HP is an automated high pressure catalyst characterization system. The AMI-300HP performs dynamic high pressure temperature-programmed experiments designed to reach 100 barg (higher pressures available in custom instruments). When integrated with a pump, the AMI-300RHP provides the most sophisticated and automated characterization and micro-reactor instrument in the industry.

Chemisorption experiments on Pt based catalysts by 3P Altamira
This application is an example of a Pt catalyst characterization by a pulsed experiment. The results, like a TPD, will tell us uptake, dispersion, surface area and crystallite size.

Chemisorption experiments on Ni based catalysts by 3P Altamira
This application is an example of common catalyst characterization experiment that will tell us surface area, dispersion, activation energies and basic desorption temperature profiles for a nickel based catalyst.

Chemisorption experiments on Co based catalysts by 3P Altamira
This application is an example of common catalyst characterization experiment using a temperature-programmed reduction (TPR) technique that can yield direct information on the reducibility of a catalyst and catalyst precursors. As such, it is an excellent technique for characterizing a variety of catalysts.

Acid site determination on a zeolite catalyst by 3P Altamira
To help evaluate the applicability of a particular catalyst, Temperature Programmed Desorptions (TPD’s) are commonly performed. TPD’s of basic molecules from the surface of zeolites have been extensively used to measure their acid properties.

Breakthrough curves of polar and nonpolar vapors on activated carbon
In this application, the breakthrough curves of water and toluene from nitrogen were measured and evaluated. It was shown that for toluene a typical S­-shaped breakthrough with well­ defined temperature peaks was obtained, whereas the shape for the breakthrough and for the temperature profile of water is highly dependent on the water con­centration.

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