We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Elemental Analysis Equipment.
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Elemental Analysis Equipment Product List and Ranking from 28 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

Elemental Analysis Equipment Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

  1. アイテス Shiga//Electronic Components and Semiconductors
  2. 日東精工アナリテック Kanagawa//Industrial Machinery
  3. テカンジャパン Kanagawa//Pharmaceuticals and Biotechnology
  4. 4 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  5. 5 アナリティクイエナジャパン Kanagawa//Testing, Analysis and Measurement

Elemental Analysis Equipment Product ranking

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

  1. Examples of cross-sectional observation of wire bonding with various compositions. アイテス
  2. The latest automatic dispenser Fluent from Tekan. テカンジャパン
  3. Automatic Sample Combustion Device 'AQF-5000H' 日東精工アナリテック
  4. 4 High-precision, high-functionality, low-resistance meter 'Lorestor GXII MCP-T710' 日東精工アナリテック
  5. 4 Automated Liquid Handling Device CyBio FeliX Series アナリティクイエナジャパン

Elemental Analysis Equipment Product List

91~120 item / All 146 items

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Automatic Dispensing Device: High-Speed Continuous Dispensing and Dilution Processing Type 'EDR-96RX'

Introducing the compact design auto diluter and dropper that takes up no space.

The "EDR-96RX" is a continuous automatic dispensing and dilution device suitable for clinical testing, capable of handling reagent dispensing into 96-well microplates, specimen dispensing and transfer tasks, and creating dilution series with 8-channel/12-channel processing per row. The stacker section can hold 20 microplates and 5 tip racks. Additionally, the stage rotation mechanism allows for dispensing and dilution tasks in both vertical and horizontal directions of the plates. 【Features】 ■ Intuitive and user-friendly dedicated PC software available ■ Dispensing and dilution pattern settings using CSV files ■ Management of reagent remaining amounts, tip disposal limits, work status, etc. ■ Log management function suitable for traceability ■ Compact design that saves space *For more details, please refer to the PDF document or feel free to contact us.

  • Dispenser
  • Elemental Analysis Equipment

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Desktop Space-Saving Automatic Dispensing Device 'EDR-384SX-6'

Supports 0.1μL dispensing! Even when connecting dedicated plate stackers on both sides, it takes up minimal space.

The "EDR-384SX-6" is a 6-stage workstation that has been introduced as a compact version of the popular 12-stage workstation "EDR-384SX." The dispensing unit can be easily replaced with a one-touch mechanism. It does not take up much space even when connecting dedicated plate stackers on both sides. Additionally, it is equipped with the control software "ICS," which has been thoroughly designed for ease of use with a simple start. 【Features】 ■ Compatible with 96/384/1536 well plates ■ Supports double-range heads ■ Compact version ■ Can accommodate up to 6 micro well plates and tip racks ■ Easily changeable channel numbers and dispensing ranges *For more details, please refer to the PDF document or feel free to contact us.

  • Other physicochemical equipment
  • Elemental Analysis Equipment

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Automatic Dispensing Device - Compact 8-channel Variable Pitch Type 'EDR-8LZ'

Achieves space-saving with a compact design, and can also be installed in safety cabinets! It is a dual-function model that combines high-precision micro dispensing and large-volume dispensing!

The "EDR-8LZ" features 8 stages, allowing for a variety of stage layouts. It is compatible with a wide range of containers, from centrifuge tubes to 384-well plates. It can be used with any number of channels from 1ch to 8ch, enabling continuous operations such as dispensing rare reagents with 1ch and samples with 8ch. The newly adopted "double range mechanism" in the head section eliminates the need for head replacement. By using different syringes according to the volume, it allows for high-precision dispensing from small to large volumes. Being produced domestically ensures a stable supply of consumables. 【Features】 ■ Compact design ■ Abundant stages ■ Compatible with various containers ■ No need for head replacement & realization of high-precision micro-dispensing ■ Drip prevention shutter ■ Equipped with liquid level detection functions using various sensors *For more details, please refer to the PDF document or feel free to contact us.

  • Automatic Dispensing Device
  • Elemental Analysis Equipment

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Automated Dispensing Device Workstation Type 'EDR-384GX'

Are you ready to break free from the tedious purification of antibodies and proteins and create new value?

We would like to introduce the 'EDR-384GX' that we handle. For high-throughput screening with a small number of samples, the combination of PhyTip and a 96-channel liquid handler is suitable. Purification can also be done with your preferred number of samples. Additionally, we offer the compact 8-channel type 'EDR-8LZ', which is suitable for automation of multiple samples. 【Features】 <EDR-384GX> ■ Automation of each process that requires processing time, such as low-speed pipetting ■ Achieves high throughput by improving chip exchange speed and increasing dispensing head speed ■ The device has a large opening, making it suitable for automation integration *For more details, please refer to the PDF document or feel free to contact us.

  • Automatic Dispensing Device
  • Elemental Analysis Equipment

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[Analysis Case] Comprehensive Evaluation of Lighting Emitting Devices

We will conduct analysis of various materials, including the disassembly of LEDs, phosphors, and LED chips.

We will disassemble commercially available LED lighting, conduct composition analysis of each material, identify defects, perform physical analysis, and analyze impurities for energy-saving key devices.

  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Comprehensive Evaluation of Lithium-Ion Secondary Battery Materials

We will conduct an evaluation that combines various methods to solve the problem.

Lithium-ion secondary batteries have excellent characteristics among secondary batteries and are widely used as power sources for various portable devices. However, there are still various challenges remaining, such as increasing output, capacity, longevity, and reliability. Comprehensive evaluation of battery materials is possible using various analytical methods.

  • Contract Analysis
  • Elemental Analysis Equipment

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How to send a sample

I have summarized how to send samples for analysis to MST.

If you have any questions, please feel free to contact us. ◆ Other Notes - Please provide instructions so that the measurement surface is clear. - Please be careful not to touch the sample surface (measurement surface). - If the sample is at risk of deterioration due to exposure to the atmosphere, please consult us separately. - For fragile samples, please ship them in a cardboard box with cushioning material.

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  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Condition Assessment of Highly Degraded Organic Materials

It is possible to accurately evaluate materials through sampling under controlled atmospheric conditions.

Organic EL has advantages such as high brightness, high-resolution color, and thinness due to its self-emission principle, and it is expected to be one of the next-generation devices. Accurate analysis and evaluation of materials are crucial for improving characteristics, extending lifespan, and enhancing reliability; however, caution is required in handling them due to the use of highly reactive materials. A comparison between samples exposed to the atmosphere and those handled under a high-purity argon atmosphere confirms that oxidation (such as molecular ions +O, +OH, etc.) observed in atmospheric exposure is suppressed when handled in a high-purity argon environment.

  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Impurity Evaluation of Crystalline Si Solar Cells

Trace analysis of metallic elements and atmospheric component elements.

We propose a method for evaluating the control of impurity levels required in each process from substrate growth to cell formation of crystalline silicon solar cells, using high-sensitivity analysis for element concentration measurement. Metal elements can be measured at concentrations below ppb, and atmospheric component elements containing hydrogen can be measured at concentrations below ppm. Measurement methods: SIMS, ICP-MS, etching, disassembly Product field: Solar cells Analysis purpose: Trace concentration evaluation, product investigation For more details, please download the materials or contact us.

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  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Evaluation of Impurities in Metal Wires

Visualizing the in-plane distribution of impurities such as atmospheric components with a field equivalent to SEM.

SIMS analysis can be applied to various shapes of samples beyond wafers and substrates. In this case study, we will introduce an example of evaluating the distribution of impurities in a wire. The results of evaluating the impurity distribution in the depth direction from the side of the wire (Figure 2) indicate that the impurity profiles of H, O, F, S, and Cl vary in intensity with depth, suggesting that they are localized within the wire. The elemental mapping of the wire cross-section (Figure 3) confirmed the localization of impurities within the wire.

  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Evaluation of Dopant and Carrier Concentration Distribution in Power Devices

Evaluation of activation rate is possible through composite analysis.

By comparing the impurity concentration distribution obtained from SIMS with the carrier concentration distribution from SRA, not only can we understand the activation state of the dopants, but the presence of unknown impurities and inherent structural issues are also suggested in areas that do not align. Using Profile Viewer, it is possible to overlay and analyze SIMS data and SRA data on your own. As an example, we will introduce a case where SIMS and SRA were performed on a commercially available diode chip, specifically on the central part of the surface and the outer edge (Figure 1) as well as the backside after the package was opened.

  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Analysis of Microscopic Contaminants on Wafer Surface

Composition analysis of 30nm size is possible without processing.

AES analysis is a method for obtaining compositional information from the surface down to a depth of several nanometers, and it is an effective analysis for investigating the composition of contaminants and foreign substances that occur on the surface during the manufacturing process. Since it rarely detects information about the substrate or base material, it allows for a simple examination of only the abnormal areas, such as foreign substances, without preprocessing. Additionally, by conducting surface analysis, it is possible to obtain elemental distribution images. In this case study, we will present data evaluated using AES analysis regarding foreign substances present on a Si wafer.

  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Evaluation of Nitrogen Components in Solution

It is possible to analyze inorganic nitrogen by form.

Nitrogen is utilized in various forms across a wide range of fields including chemistry, materials, food, and pharmaceuticals. Nitrogen compounds consist of inorganic nitrogen compounds such as nitrates, nitrites, and ammonia, as well as organic nitrogen compounds like amino acids. In the case of samples in aqueous solution, inorganic nitrogen compounds such as nitrate ions, nitrite ions, and ammonium ions can be evaluated using ion chromatography, while organic nitrogen can be assessed using HPLC or LC/MS. Total nitrogen, which includes both inorganic and organic nitrogen compounds, can be evaluated using spectrophotometry.

  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Evaluation of Metal Element Concentration Near the Surface of Gallium Oxide Ga2O3 Film

High sensitivity analysis even in extremely shallow areas.

Gallium oxide (Ga2O3) has a wider bandgap than SiC and GaN, and possesses excellent physical properties, making it a material of interest for high-efficiency, low-cost power devices. Controlling the impurity concentration, which affects the characteristics, is crucial in wafer development. This document presents a case study of quantitative analysis of metal elements in the vicinity of Ga2O3 films. TOF-SIMS allows for highly sensitive evaluation even in very shallow regions.

  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Analysis of Nonylphenol Ethoxylates in Fibers

Inspection of various fiber products made from different materials is possible.

Nonylphenol ethoxylate (NPnEO) is used in industrial cleaning agents, but in January 2016, a restriction on the use of NPnEO in textile products was added to the European REACH regulation (Regulation on the Registration, Evaluation, Authorization, and Restriction of Chemicals). From February 3, 2021, the sale of specific textile products containing NPnEO (at 0.01 weight% or more) will be prohibited. This document presents the measurement results of NPnEO in various textile products.

  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Elemental Analysis of Wire Bonding Interface

By using a combination of processing, elemental analysis of the interface is possible.

AES analysis is a method for obtaining compositional information and elemental distribution at the very surface (to a depth of a few nanometers). By combining it with cross-sectional processing, similar information can also be obtained within layered structures and at structural interfaces. This allows for the evaluation of alloy layers, elemental diffusion, and segregation, making it effective for failure analysis and defect investigation of devices. Below, we present a case where a cross-section was prepared using IP processing to evaluate the state near the bonding interface of wire bonding, followed by assessment through AES analysis.

  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Hair Component Analysis

It is possible to evaluate hair components according to the purpose.

TOF-SIMS allows for simultaneous elemental analysis and molecular information analysis of organic and inorganic substances, and it also enables imaging analysis, making it an effective method for analyzing the distribution and penetration of target components in samples. By combining measurement methods and processing for hair, it is possible to evaluate the surface, cross-section, and depth distribution of hair from various perspectives, allowing for component comparison and permeability assessment in hair according to specific objectives.

  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Electronic State Evaluation of Wide Bandgap Semiconductor Dopant Site Identification

Evaluation of microscopic atomic structures is possible through computational simulation.

β-Ga2O3 has a wide band gap and is expected to be a promising material for next-generation power devices and oxide semiconductors in terms of excellent power transmission efficiency and cost reduction. In recent years, it has been reported that β-Ga2O3 can be n-doped with Si or Sn. In this study, we conducted structural optimization calculations for models of β-Ga2O3 doped with Si or Sn and evaluated which sites each dopant is more likely to occupy in the crystal. Subsequently, we calculated the density of states from the obtained structural models and investigated the changes in electronic states due to doping.

  • Contract Analysis
  • Other semiconductors
  • Elemental Analysis Equipment

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Case study of anomaly evaluation using AI and machine analysis.

We will scientifically investigate the essence of anomalies by leveraging the anomaly detection accuracy and processing power of AI.

Anomaly detection is a technique for finding data that does not match other patterns within large amounts of data. By incorporating anomaly detection into product development and manufacturing, labor-saving in quality control and other areas is expected. Furthermore, by conducting equipment analysis, the essence of anomalies can be scientifically investigated.

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  • Other image-related equipment
  • Elemental Analysis Equipment

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MST [Chitose Sales Office] OPEN!

We aim to further improve our services for customers in the Hokkaido area, based at the Chitose Sales Office.

We will open the Chitose Sales Office, the first in the Hokkaido area as MST. Based in the Chitose Sales Office, we aim to further improve our services for customers in the Hokkaido area. We will also achieve satisfactory quality and delivery times through close collaboration with our Tokyo headquarters (lab). Please look forward to it! Opening date: Thursday, April 11, 2024 Address: Room 160, Chitose Arcadia Plaza, 1-3-1 Kashiwadai Minami, Chitose City, Hokkaido *Please send samples to the headquarters located in Setagaya, Tokyo. Headquarters address: 1-18-6 Kitami, Setagaya, Tokyo Phone number: 090-4001-1578 (Contact: Yanagimachi)

  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Impurity Analysis of FeCoNi Alloy

It is possible to simultaneously analyze 77 elements using GDMS.

When impurities are mixed into metallic materials, depending on the combination of elements, it can affect the reduction of toughness and corrosion resistance. Therefore, it is important to understand the amount of impurities in metallic materials for quality control. GDMS can simultaneously analyze 77 elements without standard samples, making it effective for impurity analysis of samples with unknown contained elements, regardless of the matrix. This document presents a case study of impurity analysis of FeCoNi alloys using GDMS. Measurement method: GDMS Product field: Manufacturing equipment and parts Analysis purpose: Trace concentration evaluation For more details, please download the document or contact us.

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  • Contract Analysis
  • Elemental Analysis Equipment

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[Analysis Case] Comprehensive Evaluation of Positive Electrode Active Materials in Secondary Batteries

Proposing an evaluation that combines structure, composition, and electricity to solve development issues.

This article introduces a case study evaluating the surface morphology, cross-sectional structure, components, composition, crystal structure, and resistance value distribution of Li(NiCoMn)O2 (NCM), which is used as a positive electrode in lithium-ion secondary batteries. Based on a comprehensive evaluation of structure, composition, and electrical properties, MST proposes assessments suitable for solving development challenges aimed at improving characteristics and enhancing reliability.

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[Analysis Case] Precursor Adsorption Simulation in ALD Film Formation

Information on the activation energy and reaction heat during precursor adsorption on the substrate can be obtained!

Our organization is conducting simulations of precursor adsorption in ALD film deposition using first-principles calculations. ALD (Atomic Layer Deposition) is a film deposition technology that utilizes continuous chemical reactions in the gas phase. It is widely used in the semiconductor field, where fine processing is required, due to its ability to precisely control film thickness, operate at low temperatures, and provide good step coverage. In general, to understand the differences in film deposition rates between different substrates in the slow deposition process of ALD, it is necessary to elucidate the precursor adsorption mechanisms on the substrate. [Measurement Methods and Processing Techniques] ■ Computational Science, AI, Data Analysis *For more details, please download the PDF or feel free to contact us.

  • Contract Analysis
  • Elemental Analysis Equipment

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Tohoku University Technology: Polymer coating by cold spray method: T14-018

Easy to coat polymer which is difficult to mold by injection

Ultra-high molecular weight polyethylene (UHMWPE) is a material with excellent impact resistance, wear resistance, etc. However, due to poor flowability at high temperature, the injection molding, which is a common molding method for polymer, was not simple to use.  Therefore, ceramic nanoparticles (alumina, etc.) were mixed to UHMWPE, then deposited by the cold spray technique. This method has succeeded to form a thick film easily. It is expected that other polymers can be deposited in the same way by mixing ceramic nanoparticles.

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Elemental analysis device "Agilent 4210 MP-AES"

Using magnetic excitation microwave plasma! Costs are reduced by the nitrogen generator.

The "Agilent 4210 MP-AES" is an elemental analysis device that uses nitrogen from the air instead of flammable gases for measurements. It has high sensitivity with detection limits down to the ppb level and is faster than conventional flame atomic absorption (AA) for general multi-element analysis. It is suitable for industries such as mining, food, and agriculture, as well as applications like remote analysis and environmental monitoring. 【Features】 ■ Minimal ownership costs ■ No need for flammable or oxidizing gases ■ Once the method is set, anyone can reliably and quickly perform measurements ■ Supports a wide range of analyses ■ Automation software allows for remote control of the equipment *For more details, please refer to the PDF materials or feel free to contact us.

  • Analytical Equipment and Devices
  • Elemental Analysis Equipment

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Technical Document: "Analysis of Carbon and Sulfur Using Carbon and Sulfur Analyzer (CS Analyzer)"

A document introducing a combustion-infrared absorption method for rapid and high-precision analysis of carbon and sulfur content.

The technical document "Analysis of Carbon and Sulfur Using a Carbon and Sulfur Analyzer (CS Analyzer)" presents a method for accurately measuring the carbon and sulfur content in various industrial materials, which significantly affects their properties, from low to high concentrations. This document introduces the features of the combustion-infrared absorption method using the carbon and sulfur analyzer (CS Analyzer) for rapid and high-precision analysis of carbon and sulfur content. [Contents] ■ Combustion - Infrared Absorption Method ■ Carbon and Sulfur Analyzer ■ Features of Each, etc. For more details, please refer to the catalog or feel free to contact us.

  • Contract Analysis
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  • Elemental Analysis Equipment

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Elemental analysis device "Micral"

Significantly reduce analysis costs! It is possible to continuously analyze up to 60 samples.

"Micral" is an elemental analysis device that allows anyone to perform precise quantitative analysis of six macroelements and six microelements. Since it can conduct analysis without using reagents, it enables environmentally friendly analysis, improves the number of processed samples, and achieves low-cost analysis while significantly reducing the work required for analysis without compromising laboratory safety. Additionally, it can increase sample processing capacity while reducing the burden on training and staff. 【Features】 ■ Rapid simultaneous measurement of 12 elements ■ Low-cost analysis ■ No special training required ■ No need for decomposition treatment using hazardous chemicals like strong acids ■ Minimal sample preparation only *For more details, please refer to the PDF document or feel free to contact us.

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  • Analytical Equipment and Devices
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Changing the common knowledge of elemental analysis" New generation elemental analysis device "Micral

Changing the Common Knowledge of Elemental Analysis" Invitation to the Preview of the Next Generation Elemental Analysis Device "Micral

We are pleased to announce that our company will hold a preview event for our newly released device, "Micral," which overturns the conventional wisdom of elemental analysis. Micral is equipped with the latest LIBS technology (Laser-Induced Breakdown Spectroscopy) and represents a next-generation solution that achieves both "significant simplification of sample preparation" and "overwhelming analysis speed."

  • Testing Equipment and Devices
  • Elemental Analysis Equipment

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A simple nitrogen and protein analysis device with excellent running costs.

Low-cost analysis using improved Dumas method in accordance with the official method of combustion. A combustion-type device (compatible with carbon dioxide) that balances cost reduction and data quality.

The rapid N exceed nitrogen and protein analysis device enables rapid measurement, high-quality data, and thorough low costs. Thanks to EAS REGAINER technology, maintenance frequency is significantly reduced compared to conventional methods. It allows for high sensitivity and accuracy while enabling stable continuous measurement of a large number of samples. 【Features】 Easy operation and simple sampling: - Significantly reduces time spent on pretreatment - Enables complete combustion without pretreatment such as grinding - Achieves high reproducibility even with heterogeneous samples Compliance with official methods: - Domestic: Food labeling standards, feed analysis standards, fertilizer analysis methods - EAS REGAINER technology: - Reduces reagent consumption and maintenance frequency, allowing for continuous measurement of up to 2000 samples - High-sensitivity thermal conductivity detector allows selection from carbon dioxide, argon, and helium gases *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
  • Elemental Analysis Equipment

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High-capacity organic element analyzer

Leave the simultaneous quantitative analysis of carbon, hydrogen, nitrogen, and sulfur in heterogeneous samples such as coal and waste to the industry's only large-capacity model.

Organic Elemental Analyzer vario MACRO cube The only device capable of simultaneous analysis of carbon, hydrogen, nitrogen, and sulfur with large capacity samples. No additional modules or electric furnaces for sulfur analysis, like other devices, are required. High precision measurements can be achieved even with heterogeneous large capacity samples. <Features> 1. Selective adsorption: The APT method uses three types of adsorption-desorption columns that selectively adsorb CO2 from carbon, H2O from hydrogen, and SO2 from sulfur. 2. Nitrogen detection: Nitrogen-derived NOx is reduced to N2 gas and is detected first without being adsorbed by the column. 3. High adsorption capacity: The adsorption-desorption columns can achieve up to 250 times the adsorption capacity of typical GC columns, allowing analysis of samples containing up to 500 mg of carbon. 4. Sharp detection peaks: Rapid heating of the column results in sharp detection peaks, achieving an excellent S/N ratio. 5. Complete peak separation: Complete control over the heating and desorption of each component allows for complete peak separation regardless of elemental content or ratio. The C/N ratio and C/S ratio can be accurately separated and analyzed up to 12,000:1.

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  • Analytical Equipment and Devices
  • Elemental Analysis Equipment

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