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A NEW LEADER IN PARTICLE CHARACTERIZATION
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A NEW LEADER IN PARTICLE CHARACTERIZATION - 1

PARTICLE CHARACTERIZATION • LASER DIFFRACTION & DYNAMIC LIGHT SCATTERING • DYNAMIC & STATIC IMAGE ANALYSIS • SURFACE & POROSITY ANALYSIS A NEW LEADER IN PARTICLE CHARACTERIZATION part of VERDERtw scientific

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A NEW LEADER IN PARTICLE CHARACTERIZATION - 2

2002 Premiere of the breakthrough curve measurement system via adsorption column method BELSORP-Dyna. 1974 Microtrac launches the first commercial laser diffraction analyzer, Microtrac Model 7991. 1987 Rollout of the high-precision gas adsorption instrument BELSORP-28 by MicrotracBEL. 1998 Retsch Technology develops the CAMSIZER and its patented dual camera system. 2006 Improvement of CAMSIZER with AutoHeight, LED technology, enhanced software features, improved resolution, sharpness & contrast. 2011 Introduction of CAMSIZER XT with optional modules for wet and dry measurement. 2013...

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A NEW LEADER IN PARTICLE CHARACTERIZATION - 3

Three Technologies – Three Centers of Excellence MICROTRAC MRB: GOING FORWARD AS ONE SOLUTION PROVIDER Microtrac MRB is your superior partner for the characterization of disperse sys- Image analysis: With the CAMSIZER series Microtrac MRB provides high-quality tems. We provide our customers with advanced technologies to obtain consistent- systems for the determination of particle size and particle shape based on imaging ly reliable results. Innovations and quality form the basis of our success. techniques. These image analyzers are developed and manufactured in our competence center in...

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A NEW LEADER IN PARTICLE CHARACTERIZATION - 4

PARTICLE SIZE & SHAPE ANALYSIS LASER DIFFRACTION (LD) has become the most widely used technique among both suppliers and users of particulate systems in research and industry. It is now a standard for outgoing and incoming particle size quality control, providing the equivalent spherical diameter (ESD) in volume % over a typical range from 10 nanometers to 2-3 millimeters. In a laser diffraction measurement, a laser beam is passed through a well-dispersed sample. The particle size is measured by detecting the intensity of the scattered light. Small particles scatter light at large angles,...

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A NEW LEADER IN PARTICLE CHARACTERIZATION - 5

PARTICLE SIZE & SHAPE ANALYSIS Dynamic Light Scattering & Zeta Potential Microtrac MRB‘s innovative approach on DYNAMIC LIGHT SCATTERING (DLS) is based on a unique probe design. By focusing the laser probe at the material interface, the benefits of a short path length are combined with Reference Beating and 180° backscatter, delivering excellent accuracy, resolution and sensitivity. NANOTRAC FLEX | external “dip-in” probe with 180° backscatter | automated titration device that uses pH as the controlling variable | allows for turning any vessel into a sample cell | bubble-free pumping &...

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A NEW LEADER IN PARTICLE CHARACTERIZATION - 6

PARTICLE SIZE & SHAPE ANALYSIS Information about particle size & shape is an important aspect of process and quality control. All DYNAMIC IMAGE ANALYSIS (DIA) systems by Microtrac MRB determine the particle shape of the sample material in a detailed and representative manner. Due to its superior capability, dynamic image analysis is often used as an alternative to conventional methods such as sieve analysis or laser diffraction. The unique dual camera measuring setup of the CAMSIZER P4 / X2 makes it possible to measure an extremely wide dynamic size range accurately, without having to...

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A NEW LEADER IN PARTICLE CHARACTERIZATION - 7

PARTICLE SIZE & SHAPE ANALYSIS On-line Solutions for Process Control CAMSIZER ONLINE | characterizes 32 morphological parameters, including 3D | characterizes 32 morphological parameters, including 3D | non-contact measurement of large particles | developed for utilization in various industries | easy integration of 3rd party sample delivery devices | customizable sample introduction | enclosed optical system

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A NEW LEADER IN PARTICLE CHARACTERIZATION - 8

PARTICLE SIZE & SHAPE ANALYSIS Applications The products by Microtrac MRB cover a wide range of APPLICATIONS. Our analysis systems for particle size & shape are used in numerous industry segments, including the agricultural industry, geology, for catalysts, coal & carbon black, building materials, glass, metal powders, plastics, as well as in the chemical, pharmaceutical and food industries. Dynamic Image Analysis Laser Diffraction Dynamic Light Scattering Sieve Analysis Static Image Analysis Nanotrac Wave II Nanotrac Flex

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A NEW LEADER IN PARTICLE CHARACTERIZATION - 9

PARTICLE SIZE & SHAPE ANALYSIS DYNAMIC STATIC IMAGE ANALYSIS IMAGE ANALYSIS SIEVE ANALYSIS LASER DIFFRACTION DYNAMIC LIGHT SCATTERING (DLS) Wide dynamic measurement range oo o o oo OO very good O good Q not suitable

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A NEW LEADER IN PARTICLE CHARACTERIZATION - 10

Surface Area & Pore Size Distribution The SPECIFIC SURFACE AREA is calculated via BET theory. This theoretical model can be applied to either single point or multi point adsorption measurements. The single point BET is often used for quality control applications. More data can be obtained by multi point BET. The PORE SIZE DISTRIBUTION via gas adsorption is measured through an N2 or Ar adsorption isotherm, enabling analysis of the pore size from several hundred nanometers down to the molecular size range. | measurement of up to 4 adsorption isotherms si- | micropore measurement at up to 4...

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ADSORPTION BELCATII | fully automated catalyst analyzer | precise gas control by 3 high performance mass flow controllers | automatic gas injection system for calibration | pulse loop with temperature / pressure sensor BELMASS | benchtop quadrupole mass spectrometer | analyzes high gas amounts | can be used with BELCAT II ABSORPTION BELSORP VC | evaluation of multi-component gas adsorption | non-ideality correction function | volumetric method combined with gas chromatography BELSORP HP | high-pressure gas adsorption analyzer | maximum pressure: 13.5 MPa | compact design | easy to use...

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Density Measurement & Sample Preparation The gas displacement method is used for the DENSITY MEASUREMENT. An inert gas, such as nitrogen or helium, is used as the displacement medium. The gas is directed to the sealed sample compartment and then expands into an empty compartment with a defined volume. The pressure difference allows to determine the exact sample volume. | quick & reliable true density measurements via gas displacement | flow / heat degassing pretreatment device for specific | highly precise measurement of the sample thanks to variable cell volumes surface area & pore...

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