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マイクロトラック・ベル

capital6580Ten thousand
number of employees120
addressOsaka/Suminoe-ku, Osaka-shi/2-52, Higashi 8-chome, Nangang
phone06-6655-0362
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last updated:Jun 12, 2023
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Notice of Participation in the International Powder Technology Exhibition Osaka 2023

MicrotracMRB: Exhibiting various powder and particle evaluation instruments such as particle size distribution, particle shape, BET specific surface area, and true density. Measurement demonstrations will also be conducted.

We will be exhibiting at the "International Powder Technology Exhibition Osaka 2023," which will be held at Intex Osaka from October 11, 2023. In addition to showcasing various measurement devices capable of evaluating particle size distribution, particle shape, BET specific surface area, and true density, we will also conduct live demonstrations. This exhibition is highly recommended for those involved in quality control fields such as electronic components, batteries, and 3D printers. We hope to see you there. 【Exhibition Information】 "International Powder Technology Exhibition Osaka 2023" Dates: October 11 (Wednesday) to 13 (Friday), 2023, 10:00 AM to 5:00 PM (until 4:30 PM on the final day) Venue: Intex Osaka Booth Number: 4-I07 *Please make a reservation for your visit in advance via the link below. For more details, feel free to contact us.

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Notice of Web Seminar on September 21, 2023 (Thursday)

Particle Size Distribution (Laser Diffraction and Scattering) Analysis Seminar - Let's Learn the Basics of Measurement!

Microtrack Bell will hold a webinar on particle size distribution (laser diffraction and scattering) analysis. In this session, we will clearly explain the fundamentals of the analytical method using actual data to meet the measurement needs of various samples. We will provide comprehensive information that can serve as a catalyst for obtaining highly reproducible measurement results, not only for those who are just starting measurements but also for those who are already conducting measurements. You can register through the related link. We look forward to your participation. 【Event Overview】 ■ Date and Time: September 21, 2023 (Thursday) 13:30 – 14:50 ■ Format: Online (ZOOM) ■ Cost: Free *For more details, please download the PDF or feel free to contact us.

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MicrotracMRB Web Seminar (Advanced Edition)

[July 27, 2023 (Thursday)] Announcement of the Microtrac MRB Web Seminar (Advanced Edition)!

Microtrac MRB will hold an advanced-level seminar (application edition) for intermediate to advanced users. We will provide information on "Understanding structures through evaluation of specific surface area, pore distribution, particle size distribution, and particle shape of various battery materials (Li-ion batteries, all-solid-state batteries)." By responding to a survey after attending the seminar, you will be able to download the presentation materials. We look forward to the participation of many attendees. 【Event Overview】 ■ Date: July 27, 2023 (Thursday) ■ Time: 13:00 - 15:15 ■ Seminar Tool: ZOOM *For more details, please refer to the related links or feel free to contact us.

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CAMSIZER Measurement Experience On-Site Seminar

[July 26, 2023 (Wednesday)] Invitation to On-Site Seminar for MicrotracMRB Static Image Analysis CAMSIZER Measurement Experience

Microtrack Bell will hold an on-site seminar for beginners/intermediates featuring the Microtrac MRB static image analysis CAMSIZER measurement experience. The dynamic image analysis CAMSIZER allows for high-resolution "particle size distribution" measurements in a simple and short time, as well as simultaneous evaluation of "particle shape" characteristics such as circularity and aspect ratio in a single measurement. In this seminar, participants will have the opportunity to experience "particle size distribution" and "particle shape" measurements using the dynamic image analysis CAMSIZER. We sincerely look forward to your attendance. 【Event Overview】 ■ Date: July 26, 2023 (Wednesday) ■ Morning Session: 9:20 AM - 12:00 PM ■ Afternoon Session: 1:30 PM - 4:10 PM ■ Participation Fee: Free *For more details, please refer to the related links or feel free to contact us.

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Particle size distribution and particle shape measurement device 'SYNC' <Data Presentation>

Achieves wet measurement, dry measurement, and shape evaluation through image analysis in one device. Contributes to quality control and research and development of electronic materials and battery materials.

"SYNC" is a particle size distribution and shape measurement device that achieves particle size distribution measurement and shape evaluation through granule size distribution measurement and image analysis in one unit. It supports both wet and dry measurements, and the exchange of measurement modules is easy. Evaluation of particle size distribution can be performed from two perspectives: laser diffraction and image analysis, enabling the acquisition of highly reliable data. 【Features】 - High-resolution measurement of particle size distribution achieved with an optical system equipped with three lasers. - Ability to identify irregular shapes and contaminants of the same particle size. - More than 30 shape evaluations possible, including equivalent circular diameter, equivalent elliptical diameter (short diameter and long diameter), Feret diameter (short diameter and long diameter), circularity, aspect ratio, and roughness. - User-friendly software. - Excellent maintainability. *You can view materials with measurement examples of this product used in past webinars available for PDF download.

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[Data] Measurement Method for Particle Size of Nano-Order Barium Titanate Microparticles

It is important to select dispersants and dispersion processing methods! This explains the examination of particle size measurement methods using dynamic light scattering.

This document proposes an optimal particle size evaluation method for micronized materials based on the results of particle size distribution measurements of micronized barium titanate using dynamic light scattering. With the miniaturization and high performance of information and communication devices, the miniaturization of electronic materials is actively being promoted. Barium titanate, a representative electronic powder material used in multilayer ceramic capacitors, is one of them. Therefore, managing particle size in the fine particle region is a challenge in the research and development and quality control of powder materials, and selecting appropriate measurement methods is particularly important. [Contents] ■ Introduction ■ Experiment ■ Results and Discussion ■ Conclusion *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Measurement Method for Particle Size of Barium Titanate Microparticles in the Submicron Range

Discussion on the measurement methods of particle size using laser diffraction/scattering and dynamic light scattering techniques!

This document proposes a suitable particle size evaluation method for micronized barium titanate based on the results of particle size distribution measurements conducted using two techniques: laser diffraction/scattering method and dynamic light scattering method. With the miniaturization and high performance of information and communication devices, the miniaturization of electronic materials is actively being promoted. Barium titanate, one of the representative electronic powder materials used in multilayer ceramic capacitors, is being micronized from the submicron to the nanoscale. In the research and development and quality control of powder materials, managing particle size in the fine particle range is a challenge, and selecting appropriate measurement methods is particularly important. [Contents] ■ Overview ■ Experiment ■ Results ■ Summary *For more details, please refer to the PDF document or feel free to contact us.

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Study on Measurement Methods for Particle Size of Barium Titanate Microparticles

Highly versatile and easy to operate! An explanation of the examination of particle size measurement methods using laser diffraction and scattering techniques.

This document proposes a suitable particle size evaluation method for micronized materials based on the results of particle size distribution measurements of micronized barium titanate using laser diffraction and scattering methods. With the miniaturization and high performance of information and communication devices, the miniaturization of electronic materials is actively being pursued. Barium titanate, a representative electronic powder material used in multilayer ceramic capacitors, is one of them. Therefore, managing particle size in the fine particle region is a challenge in the research and development and quality control of powder materials, and particularly, the selection of appropriate measurement methods is crucial. [Contents] ■ Introduction ■ Experiment ■ Results and Discussion ■ Conclusion *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Dynamic Image Analysis System 'CAMSIZER 3D'

Suitable for replacement from three-dimensional analysis and sorting of individual particles! Particle size distribution and particle shape measurement device.

In this document, we introduce the particle size distribution and particle shape measurement device, the dynamic image analysis system 'CAMSIZER 3D'. It includes product lineup, evaluation items and content for materials, as well as processing technologies for powders and granules and their evaluations. Detailed explanations are provided using photos and graphs. Please feel free to download and take a look. 【Contents (excerpt)】 ■ Product lineup ADD 3D ■ Evaluation items and content for materials ■ Processing technologies for powders and granules and their "evaluation" ■ MICROTRAC MRB particle measurement technology ■ Image analysis system *For more details, please refer to the PDF document or feel free to contact us.

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[Data] Sieving and Dynamic Image Analysis CAMSIZER

Ideal for replacement from sieving! Includes measurement particle size ranges and shape analysis for each.

This document introduces the differences between sieving and dynamic image analysis "CAMSIZER." It includes reasons for adopting sieving, issues with sieving, and the measurement particle size ranges and shape analysis for each method. The information is summarized clearly using tables and figures, so please take a moment to read it. 【Contents (excerpt)】 ■ About sieving ■ Differences between sieving and dynamic image analysis "CAMSIZER" ■ Advantages of dynamic image analysis "CAMSIZER" compared to sieving ■ Issues with sieving *For more details, please refer to the PDF document or feel free to contact us.

  • Measurement and Inspection

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[Data] Particle Size Distribution Data Collection "CAMSIZER PART IV"

"High resolution" made possible by dynamic image analysis! Measured with CAMSIZER X2 and CAMSIZER P4.

This document is a collection of measurement results for the "particle size distribution" of "mixed particles" ranging from micrometers to millimeters. It includes high-resolution particle size distribution measurement results for polyethylene latex, glass beads, and ceramic beads, as well as an introduction to the MicrotracMRB dynamic image analysis device. The information is summarized clearly using tables and figures, so please take a moment to read it. [Contents (excerpt)] ■ MRB product lineup (particle size distribution, particle shape) ■ High-resolution particle size distribution measurement results ■ Introduction to the MicrotracMRB dynamic image analysis device ■ Resolution comparison based on the measurement principles of particle size distribution *For more details, please refer to the PDF document or feel free to contact us.

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No. 22 Evaluation of Pore Structure of Activated Carbon Fiber by GCMC Method

Modeling the pore structure from the pore distribution evaluation of activated carbon fibers using the GCMC method.

In this document, we evaluate the pore structure of activated carbon fibers (ACF) with slit-type pores using the GCMC method, and based on these results, we are examining pore shape models. Using the BELSORP MAX, we measured the N2 adsorption isotherm at 77.4 K for ACF (KURACTIVE FT-07) at ultra-low relative pressure (p/p0=1E-8) (pre-treatment: 300°C, 12 h). The measured adsorption isotherm is illustrated alongside the ideal adsorption isotherm calculated using the slit and carbon N2@77.4K GCMC kernel. We encourage you to read it. [Contents] ■ Figure 1: Adsorption isotherm of activated carbon fibers (ACF) (N2@77.4K) (pre-treatment: 573 K, 12 h, vac) ■ Figure 2: Comparison of the measured adsorption isotherm of ACF (N2@77.4K) and the ideal adsorption isotherm by GCMC method ■ Figure 3: Pore distribution (pore volume) and cumulative distribution (ΣVp) of ACF by GCMC method ■ Table 1: Comparison of ultra-super-micropore capacity of ACF by GCMC method ■ Figure 4: Slit pore model of ACF *For more details, please refer to the PDF document or feel free to contact us.

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Evaluation of Pore Structure by No. 21 NLDFT Method and GCMC Method

What are the optimal analysis methods and adsorbates for understanding the pore structure of porous materials? Various materials will be introduced as examples.

The NLDFT method assumes pore shape (pore diameter) and determines parameters at the adsorption temperature and pressure, using an approximate formula based on density functional theory for the adsorption density within the pores. The GCMC method calculates the adsorption density through computer simulations that model the adsorption phenomenon after determining the parameters. This document examines which theory, NLDFT or GCMC, is more suitable for pore distribution analysis, and how useful N2 adsorption is. We encourage you to read it. 【Contents (partial)】 ■ Figure 1 Local isotherms for 4nm and 10nm using NLDFT and GCMC (adsorption branch Ar@87.3 K) ■ Figure 2 Adsorption isotherms for MCM41 (N2@77.4 K, Ar@87.3 K) ■ Figure 3 Pore distribution (pore volume) for MCM41 (N2@77.4 K, Ar@87.3 K) ■ Figure 4 Adsorption isotherms for MFI1000H (N2@77.4 K, Ar@87.3 K) ■ Figure 5 Pore distribution (pore volume) for MFI1000H (N2@77.4 K, Ar@87.3 K) *For more details, please refer to the PDF document or feel free to contact us.

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Three-dimensional (3D) dynamic image analysis particle size distribution and particle shape measurement device.

3D particle size distribution analysis using unique particle tracking technology, measuring short diameter, long diameter, and particle thickness. Achieves high data consistency and compatibility with sieving!

The "CAMSIZER 3D" is a dynamic image analysis particle size distribution and particle shape measurement device that enables three-dimensional analysis of particle size distribution by measuring the "short diameter, long diameter, and thickness" of individual particles, in addition to traditional two-dimensional particle analysis for bulk powders that fall naturally. In addition to evaluating distinctive shapes such as spheres, pellets, cylinders, and coins, the consistency of data with sieve measurements has also improved. It supports automation through an auto-sampler. <Key Points for Choosing This Product> - Three-dimensional dynamic image analysis allows for the determination of true particle characteristics. - Frees the operator from measuring short diameter, long diameter, and thickness with calipers. - Improved data consistency and compatibility with sieve measurements through thickness measurement. - The CAMSIZER series, featuring a dual-camera optical system and high-speed, high-precision dynamic image analysis, has further evolved. *For more details about this product, please refer to the catalog available for download below "PDF Download."

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High-precision gas and vapor adsorption measurement device "BELSORP MAX X"

[PDF Document Presentation] The new generation BELSORP MAX series has finally been released: Maximum performance with the highest quality!

We would like to introduce the high-precision gas and vapor adsorption measurement device "BELSORP MAX X." It is capable of evaluating the specific surface area and pore distribution of up to 4 samples simultaneously. Specific surface area: 0.01 m²/g or more (N2), 0.0005 m²/g or more (Kr) Pore distribution: 0.35 to 500 nm (diameter) Additionally, through various vapor adsorption measurements, it is possible to assess the hydrophilicity and hydrophobicity of material surfaces, recover solvents from various materials, and understand deodorization capabilities. 【Features】 ■ Simultaneous measurement of up to 4 samples ■ Gas and vapor adsorption measurements under a wide range of conditions, from low to high temperatures and very low to high relative pressures ■ Free space continuous measurement method (AFSM): High precision and reproducible measurements with a small sample amount ■ Significant reduction in measurement time *For more details, please refer to the PDF document or feel free to contact us.

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True density measurement device "BELPYCNO L"

[PDF Document Provided] Standard temperature control included! Easy, quick, and high-precision true density evaluation for samples ranging from small to large volumes.

Introducing the true density measurement device "BELPYCNO L." It is capable of evaluating the true density of samples in various shapes and states using cells of different volumes (4, 20, 40, 60, 100, 135 cm³). Additionally, by performing a single calibration at any temperature and volume, stable density evaluations can be achieved over the long term, regardless of the installation environment. 【Features】 ■ Multi-volume (capable of evaluating samples from small to large volumes) ■ Temperature control (standard feature) and absolute pressure evaluation ■ Mechanism to prevent fine powder dispersion ■ Choice between standalone and PC control *For more details, please refer to the PDF document or feel free to contact us.

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Specific surface area measurement device 'BELSORP-MR1'

[Presentation of materials with YouTube video link] Ensuring that one point! Surface area measurement device for quality control!

The "BELSORP-MR1" is a specific surface area measurement device that performs pretreatment and measurement simultaneously, achieving high-efficiency measurement. It features a touch panel interface that allows anyone to easily conduct measurements, and it can output measurement result lists and trend data to a USB memory stick (no computer required). It is designed for quality control in fields such as catalysts, batteries, and carbon materials. 【Features】 ■ Simultaneous pretreatment and measurement for high-efficiency measurement ■ Easy measurement for anyone with a touch panel interface ■ Measurement result lists and trend data can be output to a USB memory stick (no computer required) ■ Number of measurement samples: 1 sample * You can download materials with a YouTube video link. * For more details, please refer to the PDF materials or feel free to contact us.

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Specific surface area and pore distribution measurement device "BELSORP MINI X"

Presentation of materials with YouTube video links: Improved operability! World-class reproducibility with proprietary technology.

The "BELSORP MINI X" is a measurement device for specific surface area and pore size distribution that allows for high-precision evaluation of up to four samples simultaneously. Specific surface area: 0.01 m²/g or more (N2) Pore size distribution: 0.7 to 500 nm (diameter) The gas introduction optimization function (GDO) significantly reduces measurement time. Additionally, it is possible to automatically measure adsorption isotherms by setting minimum conditions. 【Features】 ■ High-density measurement of up to four samples simultaneously ■ Significant reduction in measurement time ■ Reliable evaluation of each adsorption point in a short time due to the gas introduction optimization (GDO) function ■ Automatic measurement of adsorption isotherms by setting minimum conditions ■ High reproducibility evaluation using AFSM2, which does not require AFSM or He gas *You can download materials with a YouTube video link. *For more details, please refer to the PDF materials or feel free to contact us.

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High-precision gas adsorption measurement device "BELSORP MAX G"

【Presentation of materials with YouTube video link】No He gas required - high performance, compact, low-cost model!

"BELSORP MAX G" is a dedicated device that enables the evaluation of BET specific surface area, pore distribution of both porous and non-porous materials, as well as gas adsorption capacity. Specific surface area: 0.01 m²/g or more (N2)・0.0005 m²/g or more (Kr) Pore distribution: 0.35-500 nm It can be used for applications such as catalysts, batteries, and carbon materials. 【Features】 ■ By measuring at ultra-low pressures with N2 (77.4K) and Ar (87.3K), it provides BET specific surface area and a wide range of pore distribution from micropores. ■ Low specific surface area measurement through Kr (77.4K) gas adsorption. ■ Advanced analysis using BELMaster Ver.7 equipped with new pore distribution theories such as GCMC and NLDFT. ■ Gas introduction optimization (GDO) function ensures reliable evaluation of each adsorption point in a short time. ■ High reproducibility evaluation with AFSM2, which does not require AFSM or He gas. *You can download materials with a link to a YouTube video. *For more details, please refer to the PDF document or feel free to contact us.

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True density measurement device "BELPYCNO"

[Presentation of materials with YouTube video link] High-precision automatic measurement with one touch! Easy operation with a liquid crystal touch panel!

Introducing the true density measurement device "BELPYCNO." It automatically captures the mass from the electronic balance, allowing for fully automated measurement from purging the sample section to measurement. Additionally, it is equipped with a self-diagnostic check function, enabling quick response to maintenance needs. 【Features】 ■ Fully automated measurement from purging the sample section to measurement ■ Improved measurement accuracy due to the adoption of a gas expansion cell volume change mechanism ■ Significantly enhanced usability with a one-touch opening and closing mechanism and a touch panel ■ Capable of capturing mass from the electronic balance ■ Equipped with a self-diagnostic check function for quick maintenance response * You can download materials with a YouTube video link. * For more details, please refer to the PDF materials or feel free to contact us.

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Mercury Porosimeter "BELPORE"

[Presentation of materials with YouTube video link] Evaluation of pore structures in the nano to millimeter range is possible using the mercury intrusion method!

Introducing the mercury porosimeter "BELPORE." It features vertical mercury filling and automates the pressurization from degassing of the sample up to 400 kPa with the "BELPORE LP," as well as the "BELPORE HP" with a maximum pressure of 414 MPa, and the "BELPORE MP" with a maximum pressure of 228 MPa. Measurement Range: BELPORE LP: 3.25 μm to 180 μm (UMP option: 3.8 μm to 1000 μm) BELPORE MP: 6.5 nm to 15 μm BELPORE HP: 3.6 nm to 15 μm 【Features】 ■ Vertical installation of the dilatometer (reducing the risk of Hg leakage, enabling hydrostatic pressure correction, suppressing sample scattering, and facilitating pre-treatment pressure settings <moisture content settings>) ■ High-precision pore distribution evaluation through blank correction ■ Evaluation of particle size distribution, envelope density, apparent density, and bulk density through repeated measurements ■ Short measurement time (P.A.S.C.A.L method) through automatic control of mercury pressurization (depressurization) speed and appropriate equilibrium judgment technology *You can download materials with a YouTube video link. *For more details, please refer to the PDF materials or feel free to contact us.

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Catalyst Evaluation Series "BELCAT II/BELMASS II"

[Presentation of materials with YouTube video link] Various catalyst evaluations possible with one unit! Abundant options!

We would like to introduce the catalytic analysis device "BELCAT II" along with the online gas analyzer "BELMASS II." In addition to the evaluation of heterogeneous catalysts (solid acid/base catalysts and metal-supported catalysts), it is also possible to evaluate adsorbents through breakthrough curve measurements. 【Evaluation List】 ■ Temperature Programmed Desorption/Sorption (TPD/TPO/TPR) measurements ■ Chemical adsorption measurements using the pulse method (metal dispersion, particle size, surface area) ■ Fixed bed atmospheric pressure flow catalytic reactions ■ Breakthrough curve measurements for single and multi-component adsorption * You can download materials with a link to a YouTube video. * For more details, please refer to the PDF materials or feel free to contact us.

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Technical Data: Powder and Granular Evaluation Technology to Achieve Carbon Neutrality

Presentation of application materials containing useful measurement examples and data interpretation cases in the field of powder development and quality control.

In order to achieve a decarbonized society and carbon neutrality, we contribute with evaluation technologies and products for powders and particles at the nanoscale. Related materials can be downloaded from the "PDF Download" button in the middle of the page. ● For material evaluation for CO2 separation and recovery - High-precision gas/vapor adsorption measurement device - Catalyst evaluation device and gas analyzer ● For material evaluation of clean energy "batteries" that do not emit CO2 - Particle size distribution and shape measurement device - Zeta potential measurement device - Specific surface area and pore distribution measurement device - True density measurement device - Static image analysis particle size distribution and shape measurement device ● For material evaluation of cement and concrete aimed at effective utilization of CO2 - High-precision gas/vapor adsorption measurement device - True density measurement device - Mercury porosimeter - Particle size distribution and shape measurement device

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Flow potential measurement device with titration function 'STABINO ZETA'

Active in the evaluation of slurry dispersibility! Capable of measuring high concentration, high viscosity, and particles from nanometers to several hundred microns.

"STABINO ZETA" is a streaming potential measurement device that measures the dispersibility of colloidal solutions and various slurries in real-time every few seconds. Equipped with a titration system as standard, it enables isoelectric point measurements in a short time, which were difficult with conventional zeta potential measurement devices. In addition to streaming potential/zeta potential, conductivity, pH, and temperature, it can simultaneously measure particle size distribution when combined with NANOTRAC FLEX. 【Features】 ■ Real-time measurement every few seconds ■ Standard equipped with a titration system ■ Enables isoelectric point measurement in a short time ■ Can simultaneously measure particle size distribution when combined with NANOTRAC FLEX ■ Capable of measuring the isoelectric point of large particles (limestone, zeolite) ranging from a few micrometers to several tens of micrometers *For more details, please refer to the PDF document or feel free to contact us.

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Carbon Neutral High-Precision Gas/Steam Adsorption Measurement Device

Evaluation of materials for CO2 separation and recovery - Utilizing various adsorbents, enabling assessment of specific surface area in various shapes.

The flagship model of the new generation BELSORP is now complete ~ Maximum performance with the highest quality ~ The 'BELSORP MAX X' is a high-precision gas/vapor adsorption measurement device capable of measuring up to 4 samples across a wide range from ultra-low pressure to high relative pressure, and from low temperature to high temperature. Equipped with a full-scale 0.0133 kPa pressure sensor and utilizing unique technology that minimizes permeation, leakage, and gas release, it enables highly reproducible adsorption isotherm measurements from ultra-low pressures. The new measurement software enhances user productivity by improving material structure and durability understanding, measurement efficiency, tracking measurement progress and maintenance timing, and sending measurement results via email. Additionally, the analysis software (BELMasterTM) can be used for a wide range of material evaluations. 【Features】 ■ Simultaneous measurement of up to 4 samples ■ Achieves world-class reproducibility ■ Reduction of measurement time ■ Supports various adsorbates and a wide range of measurement conditions ■ Capable of measurements tailored to various materials *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out.

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Carbon Neutral High-Precision Gas/Steam Adsorption Measurement Device

Evaluation of cement and concrete materials aimed at effective utilization of CO2 - Utilizing various adsorbents to evaluate specific surface areas of different shapes.

The flagship model of the new generation BELSORP is now complete ~ Maximum performance with the highest quality ~ The 'BELSORP MAX X' is a high-precision gas/vapor adsorption measurement device capable of measuring up to 4 samples across a wide range from ultra-low pressure to high relative pressure, and from low temperature to high temperature. Equipped with a full-scale 0.0133 kPa pressure sensor and utilizing unique technology that minimizes permeation, leakage, and gas release, it enables highly reproducible adsorption isotherm measurements from ultra-low pressures. With new measurement software, it enhances user productivity by providing insights into material structure and durability, improving measurement efficiency, tracking measurement progress and maintenance timing, and enabling email transmission of measurement results. Additionally, the analysis software (BELMasterTM) can be used for a wide range of material evaluations. 【Features】 ■ Simultaneous measurement of up to 4 samples ■ Achieves world-class reproducibility ■ Reduces measurement time ■ Supports various adsorbates and a wide range of measurement conditions ■ Capable of measurements tailored to various materials *For more details, please contact us. We also accept requests for demos and sample analyses, so feel free to reach out.

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Carbon Neutral Particle Size Distribution and Shape Measurement Device

Evaluation of Cement and Concrete Materials for Effective Utilization of CO2 - Using a Single Device for Particle Size Distribution and Particle Shape Assessment -

The core technology of Microtrac MRB combines laser diffraction/scattering and dynamic image analysis into a single device. With our patented synchronized measurement technology, we achieve a multifaceted evaluation of particle size distribution and particle shape in a single measurement. 【Applications】 A wide variety of adaptable materials and applications Battery materials, ceramics, metal materials for 3D printers, glass beads, resins, construction materials (aggregates, cement), pharmaceuticals, food, cosmetics, etc. *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out.

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Carbon Neutral True Density Measurement Device

Evaluation of cement and concrete materials for effective utilization of CO2 - Achieving high-precision automatic measurement easily for anyone.

In the measurement of true density of powders and granules, a sample cell of 1cc to 10cc is used to precisely measure a small amount of sample. By evaluating the true density, it becomes possible to assess the porosity of the powder and the primary particle size. 【Applications】 Catalysts, fuel cells, secondary batteries, fibers, polymer materials, chemicals, pigments, cosmetics, magnetic powders, separation membranes, filters, toners, cement, ceramics, semiconductors, food. *For more details, please contact us. We also accept requests for demos and sample analyses, so feel free to reach out.

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Carbon Neutral High-Precision Gas/Steam Adsorption Measurement Device

Evaluation of cement and concrete materials aimed at the effective utilization of CO2 - Utilizing various adsorbents to enable the assessment of specific surface areas of different shapes.

The flagship model of the new generation BELSORP is now complete ~ Maximum performance with the highest quality ~ The 'BELSORP MAX X' is a high-precision gas/vapor adsorption measurement device capable of measuring up to 4 samples across a wide range from ultra-low pressure to high relative pressure, and from low temperature to high temperature. Equipped with a full-scale 0.0133 kPa pressure sensor and utilizing unique technology that minimizes permeation, leakage, and gas release, it enables highly reproducible adsorption isotherm measurements from ultra-low pressures. The new measurement software enhances user productivity by providing insights into material structure and durability, improving measurement efficiency, tracking measurement progress and maintenance timing, and enabling email transmission of measurement results. Additionally, the analysis software (BELMasterTM) can be used for a wide range of material evaluations. 【Features】 ■ Simultaneous measurement of up to 4 samples ■ Achieves world-class reproducibility ■ Reduces measurement time ■ Supports various adsorbates and a wide range of measurement conditions ■ Capable of measurements tailored to various materials *For more details, please contact us. We also welcome inquiries for demonstrations and sample analyses, so feel free to reach out.*

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Evaluation of materials for cement and concrete aimed at effective utilization of CO2.

Proposal for Microtrac MRB products towards achieving carbon neutrality.

MicrotracMRB contributes to the realization of a decarbonized society and carbon neutrality through its nanoscale powder and particle evaluation technologies. • High-precision gas/vapor adsorption measurement device BELSORP MAX X • True density measurement device BELPYCNO • Mercury porosimeter BELPORE • Particle size distribution and shape measurement device SYNC *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out to us.

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Evaluation of materials for "batteries," a clean energy source that does not emit CO2.

Proposal for Microtrac MRB products towards achieving carbon neutrality.

MicrotracMRB contributes to the realization of a decarbonized society and carbon neutrality through its nanoscale powder and particle evaluation technologies. • Particle size distribution and shape measurement device SYNC • Particle size distribution (granulometry) and zeta potential measurement device NANOTRAC WAVE • Specific surface area and pore distribution measurement device BELSORP MINI X • True density measurement device BELPYCNO • Static image analysis particle size distribution and shape measurement device CAMSIZER M1 *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out.

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For the evaluation of materials for CO2 separation and capture.

Proposal for Microtrac MRB products towards achieving carbon neutrality.

MicrotracMRB contributes to the realization of a decarbonized society and carbon neutrality through its nanoscale powder and particle evaluation technology. • High-precision gas/vapor adsorption measurement device BELSORP MAX X • High-precision gas/vapor adsorption measurement device BELSORP MAX II • Catalyst evaluation device and gas analyzer BELCAT II + BELMASS II *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out to us.

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Proposal for Microtrac MRB products for Carbon Neutrality

MicrotracMRB contributes to the realization of a decarbonized society and carbon neutrality through its nanoscale powder and particle evaluation technology.

1. For the evaluation of materials for CO2 separation and recovery: • High-precision gas/vapor adsorption measurement device BELSORP MAX X • High-precision gas/vapor adsorption measurement device BELSORP MAX II • Catalyst evaluation device and gas analyzer BELCAT II + BELMASS II 2. For the evaluation of materials for clean energy "batteries" that do not emit CO2: • Particle size distribution and shape measurement device SYNC • Particle size distribution (granulometric distribution) and zeta potential measurement device NANOTRAC WAVE • Specific surface area and pore distribution measurement device BELSORP MINI X • True density measurement device BELPYCNO • Static image analysis particle size distribution and shape measurement device CAMSIZER M1 3. For the evaluation of materials for cement and concrete aimed at effective utilization of CO2: • High-precision gas/vapor adsorption measurement device BELSORP MAX X • True density measurement device BELPYCNO • Mercury porosimeter BELPORE • Particle size distribution and shape measurement device SYNC *For more details, please contact us. We also accept requests for demonstrations and sample analysis. Feel free to reach out to us.

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Carbon Neutral Static Image Analysis Particle Size Distribution and Shape Measurement Device

Evaluation of materials for "batteries," a clean energy source that does not emit CO2 - High-speed and high-precision evaluation of particle shapes.

The CAMSIZER M1 measures particle size and shape in the range of 0.5μm to 1500μm based on the principle of static image analysis. It is based on a microscope system compliant with static image analysis ISO13322-1 and is equipped with hardware optimized for automation and user-friendly software. 【Applications】 Cement, concrete, fibers, abrasives, pharmaceuticals, food, metal powders, minerals *For more details, please contact us. We also accept requests for demos and sample analyses, so feel free to reach out.

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Carbon Neutral Mercury Porosimeter

Evaluation of Cement and Concrete Materials for Effective Utilization of CO2 - Optimal Mercury Porosimeter for Nanometer and Micrometer Order Pore Evaluation

The BELPORE series allows for the accurate and rapid evaluation of pores and voids ranging from 1mm to 3.6nm through mercury intrusion measurements under vacuum up to 414MPa. Furthermore, it is a state-of-the-art device capable of assessing specific surface area, density, and particle size distribution all in one unit. 【Applications】 Catalysts, cement, concrete, ceramics, batteries (solid-state batteries, fuel cells, etc.), filters, separation membranes, ores, and more. *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out.

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Carbon Neutral True Density Measurement Device

Evaluation of materials for CO2-free clean energy 'batteries' - Achieving high-precision automatic measurements easily for anyone.

In the measurement of true density of powders and granules, a sample cell of 1cc to 10cc is used to precisely measure a small amount of sample. By evaluating the true density, it becomes possible to assess the porosity of the powder and the primary particle size. 【Applications】 Catalysts, fuel cells, secondary batteries, fibers, polymer materials, chemicals, pigments, cosmetics, magnetic powders, separation membranes, filters, toners, cement, ceramics, semiconductors, food. *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out.

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Carbon Neutral Specific Surface Area / Pore Distribution Measurement Device

Evaluation of materials for "batteries," a clean energy source that does not emit CO2 - A surface area and pore distribution measurement device equipped with X's "outstanding superiority."

The BELSORP MINI X is a product that allows for the assessment of the performance of conductive materials through specific surface area evaluation. Additionally, it enables the evaluation of specific surface area and density (pore distribution) of electrode materials (oxides and sulfides) for all-solid-state batteries without exposing them to the atmosphere. In recent years, amid a global shortage of He gas, this product allows for high-precision specific surface area evaluation without using He gas. 【Applications】 Catalysts, battery electrodes/conductive materials, carbon, chemicals, cosmetics, cement, toner, pigments, ceramics, semiconductors. *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out to us.*

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Carbon Neutral Particle Size Distribution / Particle Size Distribution and Zeta Potential Measurement Device

Evaluation of materials for CO2-emission-free clean energy "batteries" - Particle size distribution and zeta potential measurement using a single device.

The NANOTRAC WAVE II series is a particle size distribution (particle size distribution) and zeta potential device that uses backscattering measurement with an optical probe. It is capable of obtaining stable data from low to high concentrations. 【Applications】 Battery materials, beverages, food, pharmaceuticals, cosmetics, cement, inks, paints, pigments, semiconductors, minerals, polymer materials, polymers. *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out.

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Carbon Neutral Particle Size Distribution and Shape Measurement Device

Evaluation of materials for "batteries," a clean energy source that does not emit CO2 - Particle size distribution and particle shape evaluation using a single device.

The core technology of Microtrac MRB combines laser diffraction/scattering and dynamic image analysis into a single device. With our patented synchronized measurement technology, we achieve a multifaceted evaluation of particle size distribution and particle shape in a single measurement. 【Applications】 A wide variety of adaptable materials and applications Battery materials, ceramics, metal materials for 3D printers, glass beads, resins, construction materials (aggregates, cement), pharmaceuticals, food, cosmetics, etc. *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out.

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Carbon Neutral Catalyst Analysis Device / Online Gas Analyzer

Evaluation of materials for CO2 separation and capture - Optimal for characterization of solid catalysts and breakthrough curve assessment.

With a single device, it is possible to characterize solid catalysts using the TPx method for acid-base evaluation, oxidation-reduction performance, and metal dispersion of precious metal-supported catalysts using the pulse method. Additionally, catalyst reaction evaluation synchronized with a mass spectrometer and separation performance evaluation using breakthrough curves are possible. 【Applications】 - Catalysts, separation, recovery, CCUS, fuel cells, secondary batteries - Polymer materials, magnetic powders, separation membranes, cement - Ceramics, PCP/MOF, zeolites, carbon *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out.*

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Carbon Neutral High-Precision Gas/Steam Adsorption Measurement Device

Evaluation of materials for CO2 separation and capture - The definitive device for measuring the world's highest level of gas and vapor adsorption.

With a single device, it is possible to evaluate specific surface area, pore distribution, gas and vapor adsorption capacity, adsorption rate, and chemical adsorption measurements. Since it can perform adsorption evaluations over a wide range (from low pressure to high pressure and low temperature to high temperature), it is optimal not only for material characterization but also for process evaluation. 【Applications】 Catalysts, gas separation, storage, CCS, CCSU, various batteries, capacitors, fibers, polymer materials, chemicals, pigments, cosmetics, magnetic powders, separation membranes, filters, toners, cement. *For more details, please contact us. We also accept requests for demonstrations and sample analyses, so feel free to reach out.

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[New Feature] Evaluation of specific surface area and pore distribution without the need for helium gas.

Developed and released a new feature that enables the evaluation of specific surface area and pore distribution without using helium gas!

At MicrotracMRB, we have developed a new feature called the 'AFSM2' free space continuous measurement method, which does not require helium gas due to the recent shortage of helium gas supply. By using an adsorbate such as N2 in advance to determine the "free space value of the blank sample tube" (calibration), we calculate the adsorption amount by subtracting the "excluded volume of the sample determined from the sample mass and density" from the free space (calculated value). The difference in free space due to the liquid nitrogen level during pre-calibration and adsorption measurement is automatically determined using a reference tube, so there is no need to keep the liquid level constant. 【Features】 ■ Continuous measurement of free space: Possible ■ He gas: Not required ■ Free space (initial value): Pre-measurement + reference tube correction ■ Sample tube ID management: Required (register ID and volume in software) ■ Measurement time: Approximately 45 minutes shorter ■ Direct measurement of net adsorption amount: Possible *For more details, please refer to the PDF document or feel free to contact us.

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New product! Gas/steam adsorption measurement device 'BELSORP MAX X'

This is a high-precision gas/vapor adsorption measurement device that utilizes various adsorbents and allows for the evaluation of specific surface areas of various shapes.

The flagship model of the new generation BELSORP is now complete ~ Maximum performance with the highest quality ~ The 'BELSORP MAX X' is a high-precision gas/vapor adsorption measurement device capable of measuring up to 4 samples across a wide range, from ultra-low pressure to high relative pressure, and from low temperature to high temperature. Equipped with a full-scale 0.0133 kPa pressure sensor and utilizing unique technology to minimize permeation, leakage, and gas release, it enables highly reproducible adsorption isotherm measurements from ultra-low pressure. The new measurement software enhances user productivity by providing insights into material structure and durability, improving measurement efficiency, tracking measurement progress and maintenance timing, and allowing for the emailing of measurement results. Additionally, the analysis software (BELMasterTM) can be used for a wide range of material evaluations. 【Features】 ■ Simultaneous measurement of up to 4 samples ■ Achieves world-class reproducibility ■ Reduction of measurement time ■ Supports various adsorbates and a wide range of measurement conditions ■ Capable of measurements tailored to various materials *For more details, please refer to the PDF document or feel free to contact us.*

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No.38 Evaluation of Surface Area and Pore Distribution Without Gas

Introduction to the free space pre-measurement / free space continuous measurement method "AFSM2" considering true density!

At MicrotracMRB, as a countermeasure against the recent shortage of helium (He) gas supply, we have added a new feature to the BELSORP series: the helium-free continuous measurement method "AFSM2: Advanced Free Space Measurement 2." In this document, we will compare the results obtained using the AFSM2 function and the AFSM function with the "BELSORP MINI X." We invite you to read it. [Contents] ■ Figure 1 Measurement routine of BELSORP MINI X using AFSM2 ■ Table 1 Comparison of AFSM2 and AFSM methods ■ Figure 2 CB#3845 Adsorption isotherm (N2, @ 77 K) ■ Figure 3 CB#3845 BET-Plot ■ Figure 4 TMPS-4 Adsorption isotherm (N2, @ 77 K) ■ Figure 5 TMPS-4 BJH-Plot (ads.) *For more details, please refer to the PDF document or feel free to contact us.

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Demo/Analysis Now Available Online Gas Analyzer 'BELMASS II'

Real-time analysis online is possible! Equipped with mass spectrometers and vacuum pumps, systematized.

The "BELMASS II" is an online gas analyzer designed to be easily used by simply connecting it to a flow path, systematizing a quadrupole mass spectrometer. It can measure gases that are prone to adsorption in piping, such as ammonia, with high quantitativeness. With MicrotracMRB's unique analysis software, Chem Master II, you can analyze the obtained mass spectra. 【Features】 ■ Capable of qualitative and quantitative analysis of gases ■ Real-time analysis online is possible ■ Incorporates a mass spectrometer and vacuum pump, systematized ■ Carefully selected materials and shapes for piping from the design stage to achieve high quantitativeness ■ Can be connected to the catalyst analysis device "BELCAT II" for measuring catalytic reactions and performing more advanced characterizations *For more details, please refer to the PDF materials or feel free to contact us.

  • Analysis and prediction system

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