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Testing, Analysis and Measurement
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ビーエルテック

EstablishmentJuly 15, 2002
capital8400Ten thousand
number of employees46
addressTokyo/Chuo-ku/4th Floor Matsumoto Building, 14-15 Nihonbashi Odenmachō
phone03-5847-0252
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last updated:Apr 04, 2024
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ビーエルテック List of Products and Services

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Continuous flow analysis device Continuous flow analysis device
Near Infrared Analysis Device (NIR) Near Infrared Analysis Device (NIR)
Fully automatic acid decomposition and other pretreatment equipment and vials. Fully automatic acid decomposition and other pretreatment equipment and vials.
Discrete Analyzer Discrete Analyzer
Others Others
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Automation and Labor-Saving: "Pretreatment Process Using Nitric Acid in the Decomposition of Tobacco Leaves"

Decomposition of tobacco leaves using nitric acid! A study was conducted on sample pretreatment and the automation of analysis.

The acid decomposition of tobacco leaves involves complicated reagent addition operations, making it very labor-intensive. Additionally, there are concerns about human exposure to acidic reagents such as nitric acid, which poses risks during analysis. Therefore, we automated the sample pretreatment for ICP and ICP/MS using the automatic pretreatment device DEENA2 for acid addition and other processes. 【Summary (partial)】 ■ Established a method for fully automated analysis from automatic addition of nitric acid to stirring and dilution. ■ Achieved nearly zero exposure of nitric acid to humans. ■ Completely automated pretreatment tasks that previously required human intervention. ■ Conducted decomposition within a clean bench by using a fume hood. ■ Enabled analysis with ultra-low blanks by using dedicated vials. *For more details, please download the PDF or feel free to contact us.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Automation and labor-saving in the pretreatment process of "tap water and groundwater" in inorganic analysis.

A study on the fully automated pretreatment method using nitric acid with DEENA!

Methods established by the Minister of Health, Labour and Welfare based on the standards of the ministerial ordinance concerning water quality standards (Notification No. 61 of the Ministry of Health, Labour and Welfare, 2003) and the water quality testing methods for drinking water (2011 edition) involve complex reagent addition operations in the acid digestion process, making it very labor-intensive. Additionally, the use of nitric acid as an acid reagent raises concerns about human exposure, posing risks during analysis. Therefore, we automated the sample pretreatment for ICP-OES and ICP/MS using the automatic pretreatment device DEENA2. [Summary] ■ Conducted a study on the pretreatment of drinking water analysis ■ Used DEENA60 ■ Performed digestion using nitric acid ■ Added internal standard solution ■ Examined the automation of the process from acid addition to dilution *For more details, please download the PDF or feel free to contact us.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Automation and Labor Saving: "Pre-treatment Process in the Decomposition (Melting) of Metallic Silicon"

Sample pretreatment for ICP and ICP/MS in the decomposition (melting) of hydrofluoric acid and highly reactive metal silicon!

Silica (SiO2 and its compounds) involves complicated reagent addition operations in acid decomposition, making it very labor-intensive. Additionally, there are concerns about human exposure to acidic reagents such as hydrofluoric acid, which poses risks during analysis. Therefore, using the automated pretreatment device DEENA2 for acid addition and other processes, we automated the sample pretreatment for ICP and ICP/MS. 【Summary (Partial)】 ■ Established a method for fully automated analysis, from the automatic addition of nitric acid and hydrofluoric acid to stirring and dilution. ■ Successfully conducted safe analysis by controlling the reaction with highly reactive metallic silicon and hydrofluoric acid. ■ Achieved nearly zero human exposure to hydrofluoric acid and nitric acid. ■ Completely automated pretreatment tasks that previously required human intervention. ■ Conducted decomposition within a clean bench by using a fume hood. *For more details, please download the PDF or feel free to contact us.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Automation and Labor-Saving: Preprocessing Steps in the Analysis of Impurities in Titanium

Sample pretreatment for ICP and ICP/MS using the automatic pretreatment device DEENA2 with acid addition, etc.!

The acid decomposition of impurities in titanium involves complicated reagent addition operations and is very labor-intensive. Additionally, there are issues related to human exposure to acidic reagents such as mixed acids and nitric acid, making the analysis hazardous. Therefore, using the automated pretreatment device DEENA2 for acid addition and other processes, we automated the sample pretreatment for ICP and ICP/MS. 【Summary (Partial)】 ■ Established a method for fully automated analysis, from the automatic addition of mixed acids and nitric acid to stirring and dilution. ■ Controlled the reaction during the automatic addition of mixed acids and nitric acid to safely conduct the analysis. ■ Achieved nearly zero exposure of mixed acids and nitric acid to humans. ■ Completely automated pretreatment tasks that previously required human intervention. ■ Conducted decomposition within a clean bench by using a fume hood. *For more details, please download the PDF or feel free to contact us.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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About the pretreatment method for arsenic (As) analysis in JIS K 0102.

Utilize for labor shortages and work style reforms! Automation and efficiency improvement of pretreatment processes for nitric acid and sulfuric acid.

The pre-treatment method for arsenic specified in the industrial wastewater testing method (JIS K 0102) involves complicated reagent addition operations during acid digestion, making it very labor-intensive. Additionally, the use of acid reagents such as nitric acid and sulfuric acid poses exposure risks to humans, making the analysis hazardous. Therefore, using the automated pre-treatment device DEENA2 for acid addition and other processes, we automated the sample pre-treatment for atomic absorption spectrometry, ICP, and ICP/MS. [Summary] - Conducted a study on the pre-treatment of arsenic (As) in wastewater analysis - Used DEENA2 - Performed digestion using nitric acid, sulfuric acid, etc. - Considered automation *For more details, please download the PDF or feel free to contact us.*

  • Analytical Equipment and Devices
  • Other physicochemical equipment

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About the sample preparation method for selenium (Se) analysis in JIS K 0102.

Investigation using the fully automated acid addition heating decomposition pretreatment device DEENA2! Automation and efficiency of pretreatment processes such as nitric acid and sulfuric acid.

The method for the pretreatment of selenium specified in the industrial wastewater testing method (JIS K 0102) involves complex reagent addition operations during acid digestion, making it very labor-intensive. Additionally, the use of acidic reagents such as nitric acid and sulfuric acid poses exposure risks to humans, making the analysis hazardous. Therefore, using the automated pretreatment device DEENA2 for acid addition and other processes, we automated the sample pretreatment for atomic absorption spectrometry, ICP, and ICP/MS. [Summary] ■ Conducted a study on the pretreatment of selenium (Se) in wastewater analysis ■ Used DEENA2 ■ Performed digestion using nitric acid, sulfuric acid, etc. ■ Considered automation *For more details, please download the PDF or feel free to contact us.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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Grain Analysis Device AgriCheck

High-precision NIR device specifically for whole grain analysis!

The AgriCheck series of near-infrared spectroscopy (NIR) analysis devices from Bruins Instruments is a cost-effective, high-performance device specialized in the analysis of whole grains such as wheat, corn, soybeans, sorghum, and rice, equipped with specific calibration line libraries. Every day, AgriCheck analysis devices around the world measure reliable parameters such as moisture, protein, starch, as well as oil, fiber, gluten, zeleny, and other product types for incoming grains, in-process samples, and final products. AgriCheck offers rapid, accurate, and reliable quality measurements at an attractive price point for producers, millers, and processors.

  • Analytical Equipment and Devices

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Dough physical property measurement device Mixolab2

Easily measure the material properties of dough during mixing!

In a bread-making factory, the physical properties of the final product, such as volume and color, are important quality control parameters. These characteristics largely depend on the amount and functionality of proteins, starches, fibers, and enzymes that make up the majority of the flour. The Mixolab 2 is equipped with a unique function to evaluate the combined effects of these components during the mixing process, automatically assessing the rheological properties of the dough and predicting its behavior during the manufacturing process in heating and cooling cycles.

  • Food Testing/Analysis/Measuring Equipment

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Analysis equipment contributing to automation in the environment and food industry *Exhibiting at JASIS 2025

A large number of analytical instruments that assist in the automation of processes from pre-treatment of the environment and food to measurement will be exhibited! We will participate in "JASIS 2025," where technologies related to science and analysis come together.

"JASIS 2025" is a science, analysis systems, and solutions exhibition that brings together numerous manufacturers of analytical instruments and scientific equipment that support advancements in science beneficial to people's lives. Various presentations and seminars on many new technologies will be held. There are over 1,000 analytical methods for chemical analysis in fields such as the environment, agriculture, fisheries, and chemistry. Products such as the Continuous Flow Analyzer (CFA) "MiSSion," which is used in many analytical institutions, and devices that contribute to the automation of environmental and food analysis, as well as improvements in efficiency and quality, including "Heavy Metal Analysis Pretreatment Device" and "Near Infrared Analyzer," will be showcased! [Exhibited Products] ■ Continuous Flow Analyzer 'MiSSion' ■ Fully Automatic Acid Decomposition Pretreatment Device 'AATM' ■ Fully Automatic Acid Decomposition Pretreatment Device 'DEENA2' ■ Near Infrared Analyzer 'SpectraStar XT' ■ Damage Starch Measurement Device 'SDmatic 2' *For details on the exhibited products, please refer to the <PDF download>. For more information on various products, please contact us.

  • Other environmental analysis equipment

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Damage Starch Measurement Device SDmatic 2

Achieved full automation of damaged starch measurement for various milling products, including wheat flour.

SDmatic 2 measures the content of damaged starch by electrochemically measuring the iodine-starch reaction of diluted wheat flour samples based on an amperometric method that does not use enzymes.

  • Testing Equipment and Devices

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Automation of pre-treatment for inorganic analysis such as environmental analysis and soil analysis AATM/Atom

【Technical Data Presentation】Collaboration on Metal Analysis in Environmental and Wastewater Samples! ~Automation Equipment for Sample Preparation in Environmental Analysis and ICP/MS Measurement (AATM)~

The pretreatment methods for factory wastewater, environmental water, groundwater, etc., use substances such as nitric acid, as specified in factory wastewater testing methods and standards set by the Ministry of the Environment. However, the analytical procedures are complicated and require significant effort for decomposition, and care must be taken to avoid splashes of nitric acid reagents on the skin and eyes, as well as exposure to acidic gas emissions. To ensure the safety of analysts, improve work efficiency, and eliminate human error, our company introduces a device capable of automating the entire process from pretreatment to measurement in environmental analysis, wastewater analysis, and soil analysis. <Some introduction examples> ■ Inorganic analysis of wastewater using ICP/MS ■ Inorganic analysis of environmental water (river water, seawater) using ICP/MS ■ Inorganic analysis of soil (content/leaching) using ICP/MS ■ Inorganic analysis of groundwater and drinking water using ICP/MS *For detailed specifications, please download the PDF. Feel free to contact us.

  • Environmental Test Equipment

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Automatic Drainage Continuous Monitoring Monitor 'MiSSion-S Monitor Boro'

The automatic online device "MiSSion-S Monitor" using Continuous Flow Analysis (CFA) has been completed.

This is a device that has been partially modified from a continuous flow analysis system for laboratory equipment, which automatically samples the effluent collected in the overflow tank, and can perform automatic distillation and measurement at regular intervals. It uses the principle of bubble segmentation flow analysis (CFA) as described in JISK0126. The sample is automatically distilled, mixed with reagents, reaches the flow cell, and is quantitatively analyzed. If an abnormal value is detected, it is possible to send a signal to a designated location to alert about the anomaly.

  • Analytical Equipment and Devices

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Automatic Drainage Continuous Monitoring Monitor 'MiSSion-S Monitor Fluorine'

The automatic online device for fluorine, "MiSSion-S Monitor," using Continuous Flow Analysis (CFA) has been completed! 【*Technical materials available】

This device is a modified continuous flow analysis system for laboratory equipment that automatically samples the effluent collected in an overflow tank, allowing for automatic distillation and measurement at regular intervals. It uses the principle of the bubble segmentation flow analysis method (CFA) as described in JISK0126. The sample is automatically distilled, mixed with reagents, reaches the flow cell, and is quantitatively analyzed. If an abnormal value is detected, it can send a signal to a designated location to alert of the anomaly. 【Usage Examples】 ● Wastewater management in plant factories ● Process management in factories *For detailed specifications, please download the PDF. Feel free to contact us.

  • Analytical Equipment and Devices

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BL Tech Online Exhibition

Contributing to the improvement of customer productivity through the automation of analysis - BL Tech Online Exhibition

Contributing to the improvement of customer productivity through the automation of analysis. BL Tech is currently holding an online exhibition.

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Case study of measuring fluorinated compounds in factory wastewater using Continuous Flow Analysis (CFA) method.

Introduction of a case study on the measurement of fluorinated compounds in factory wastewater using Continuous Flow Analysis (CFA) method.

This document introduces a case study on the measurement of fluoride in factory wastewater using the continuous flow analysis method (CFA method) as per JIS K 0102 34.4. Contents ■ Overview of the analysis ■ Introduction of the equipment ■ Actual measurement case ■ Results of recovery rate *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
  • Water quality testing
  • Soil testing

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Technical Data: Metal Analysis Pretreatment of Rice and Rice Ears Using DEENA2

Fully automated analysis of metals such as cadmium in rice (brown rice and white rice) and rice ears, including the addition of nitric acid and perchloric acid, heating decomposition, cooling, and sample preparation!

Regarding the cadmium contained in rice, the standard limit was previously set at 1 ppm (mg/kg), but in April 2010, a revision was issued to amend part of the standards for food and food additives, changing the limit for cadmium and its compounds in rice (both brown and white rice) to 0.4 ppm (mg/kg) or less. Traditionally, wet digestion methods using nitric acid, sulfuric acid, or perchloric acid have been employed; however, these methods are time-consuming and labor-intensive, making it difficult to process multiple samples quickly. Therefore, we examined the automatic pretreatment of rice (both brown and white) and rice ears using the nitric acid reflux method with DEENA2, which can perform tasks such as acid addition, stirring, and dilution under PC control in a fully automated manner. - Acid addition heating pretreatment - Reagent addition - Cooling - Dilution - Prevention of human exposure to acids *For more details, please refer to the PDF document or feel free to contact us.*

  • Other physicochemical equipment
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Automated pretreatment method for acid decomposition in dairy products using DEENA2.

Examination of pretreatment methods using sulfuric acid and nitric acid regarding the ministerial ordinance on the standards for components of milk and dairy products, as well as the standard criteria for food and additives.

The pre-treatment methods for non-mineral water soft drinks specified in the "Ministerial Ordinance on Standards for Components of Milk and Dairy Products (Ministry of Health and Welfare Ordinance No. 52 of 1951)" and the "Standards for Food, Additives, etc. (Ministry of Health and Welfare Ordinance No. 370 of 1959)" involve complicated reagent addition operations in acid decomposition, making it very labor-intensive. Additionally, the use of acid reagents such as sulfuric acid and nitric acid poses exposure risks to humans, making the analysis hazardous. Therefore, we have automated the sample pre-treatment for ICP-OES and ICP/MS using the automatic pre-treatment device DEENA2, which includes: ■ Acid addition heating pre-treatment ■ Reagent addition ■ Cooling ■ Dilution ■ Prevention of human exposure to acids *For more details, please refer to the PDF document or feel free to contact us.

  • Other physicochemical equipment
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Establishment of a Cookie Ingredient Analysis Method Using a Confectionery Checker

We conducted a study on the measurement of the components of cookies: "moisture," "fat," and "sugar."

This document introduces the establishment of an automatic measurement method for component analysis in cookies using a snack checker. To ensure quality assurance in cookies, the items measured include "moisture," "lipids," and "sugars." The measurement of components requires the use of hazardous reagents and involves labor-intensive and skilled techniques. Therefore, in the analysis of cookie components, a calibration curve that can be measured using near-infrared (NIR) was created. Simultaneous measurement of the items is possible, and thus, we established an automated measurement method for the analysis of cookie components using NIR. [Contents] ■ Overview ■ What is Near-Infrared Analysis? ■ Keywords ■ Equipment Used ■ Method of Examination *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
  • Food Testing/Analysis/Measuring Equipment
  • Other environmental analysis equipment

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Establishment of a fertilizer component analysis method using a feed checker.

Using the NIR feed checker! Established a method for rapid and easy measurement of components in feed.

This document introduces the establishment of an automated measurement method for component analysis in feed using an NIR feed checker. Component analysis of feed is primarily conducted on "moisture," "protein," "lipids," "fiber," "ash," "calcium," "phosphorus," and "salt." In the component analysis of feed, a calibration curve that can be measured in the near-infrared range is created. Therefore, we have established an automated measurement method for the analysis of feed components using NIR (near-infrared analysis equipment). 【Contents】 ■ Overview ■ What is Near-Infrared Analysis? ■ Keywords ■ Equipment Used ■ Discussion Method *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
  • Food Testing/Analysis/Measuring Equipment
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[Technical Document] Establishment of a Component Analysis Method for Roasted Coffee Beans

Used the NIR coffee bean checker! We were able to quickly and easily measure the component analysis items.

This document introduces the establishment of an automated measurement method for component analysis of roasted coffee beans using an NIR coffee bean checker. To ensure quality assurance in roasted coffee beans, the parameters measured include "roasting depth," "moisture," and "caffeine." In the component analysis of roasted coffee beans, a calibration curve that can be measured in the near-infrared range has been created. The parameters "roasting depth," "moisture," and "caffeine" can now be measured simultaneously. Therefore, we have established a measurement method for automating the analysis of components in roasted coffee beans using NIR (near-infrared analysis equipment). [Contents] ■ Overview ■ What is Near-Infrared Analysis? ■ Keywords ■ Equipment Used ■ Research Methods *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
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Establishment of a Component Analysis Method for Green Coffee Beans

Using the NIR coffee bean checker! Establishment of an automatic measurement method for component analysis in green coffee beans.

This document introduces the establishment of an automatic measurement method for component analysis of green coffee beans using a NIR coffee bean checker. Near-infrared spectroscopy is a component measurement method that does not use reagents or consumables. We have established a method to rapidly and easily measure the components in green coffee beans, including "moisture," "caffeine," "potassium," "ash," "chlorogenic acid," "protein," and "trigonelline." 【Contents】 ■ Overview ■ What is Near-Infrared Analysis? ■ Keywords ■ Equipment Used ■ Examination Method *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
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Establishment of a component analysis method for coffee beans using a technical data coffee bean checker.

Using the NIR coffee bean checker! A method has been established for anyone to quickly and easily measure nutritional components.

This document introduces the establishment of an automatic measurement method for component analysis of coffee beans using the NIR coffee bean checker. A method has been established to quickly and easily measure the components in coffee beans, including "sucrose," "trigonelline," "caffeine," "moisture," "lipids," "phosphoric acid," "citric acid," "malic acid," "quinic acid," and "glycolic acid." For coffee beans, measurements can now be easily and rapidly conducted using our calibration curve. 【Contents】 ■ Overview ■ What is Near Infrared Analysis? ■ Keywords ■ Equipment Used ■ Examination Method *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
  • Food Testing/Analysis/Measuring Equipment
  • Other environmental analysis equipment

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Technical Document: Establishment of a Component Analysis Method for Potato Chips Using a Snack Checker

Using NIR (Near Infrared Analysis Device)! Established a method to quickly and easily measure "moisture" and "oil content."

This document introduces a method for analyzing the components of snacks (potato chips) using NIR (Near Infrared Analysis Device). To ensure quality assurance in potato chips, the items "moisture" and "oil content" are measured. The measurement of these components requires the use of hazardous reagents and skilled techniques, so a calibration curve that can be measured using near infrared has been created for the analysis of potato chip components. As a result, it has become possible to simultaneously measure "fat" and "moisture." Therefore, we have established an automated measurement method for analyzing the components of potato chips using NIR. [Contents] ■ Overview ■ What is Near Infrared Analysis? ■ Keywords ■ Equipment Used ■ Method of Examination *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
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Fully automatic acid addition and heating (sample pretreatment) device 'DEENA2'

Heated up to a maximum of 180°C. Automation of acid addition heating significantly reduces processing time, human errors, and the risk of exposure to people.

"DEENA2" is a device that can automate the pretreatment processes for measuring metal components, such as the addition of reagents, stirring, heating, and dilution. The maximum heating temperature is 180°C. For highly reactive samples, it can initially heat at a low temperature and then switch to high temperature once the reaction stabilizes. It can set up to 8 types of reagents, including pure water, hydrofluoric acid, nitric acid, and hydrochloric acid. The addition of acids is performed automatically, and the dilution process is also automated, significantly reducing manual labor and eliminating concerns about operator exposure. 【Features】 ■ Up to 60 positions (when using 50mL vials) ■ Up to 36 positions (when using 36mL vials) ■ Compatible with various samples, including wastewater, environmental water, metals, non-ferrous metals, and semiconductor materials ■ Non-contact dilution is possible using ultrasonic sensors *For more details, please refer to the materials. Feel free to contact us with any inquiries.

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Separation analysis of low-concentration silica using a continuous flow analysis device (STAA-3)

A method has been devised to analyze silica contained in semiconductor materials, battery anodes, tantalum, niobium, steel, etc., with high sensitivity and ease! Materials available upon request.

In materials such as batteries and semiconductor materials, silica as an impurity can lead to a decrease in product performance, necessitating separation and analysis. Silica contained in steel above a certain amount can be analyzed by the weight method specified by JIS, but this method has been complicated and has accuracy issues. Therefore, our company has devised a method to separate silica contained in samples as a gas, collect it in an absorbent solution, and measure it using molybdenum blue through a continuous flow analysis method. This document presents the results of our study titled "Separation and Analysis of Low Concentration Silica Using Continuous Flow Analysis Equipment (STAA-3) in Semiconductor Materials, Tantalum, Niobium, Steel, etc." in an easy-to-understand manner. *For more details, please see the download button. Feel free to contact us with any inquiries.

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Technical Data: Automatic Pretreatment with Hydrofluoric Acid and Nitric Acid Using DEENA2

Study on automatic pretreatment using hydrofluoric acid and nitric acid for the decomposition of silica with DEENA2.

This document introduces the examination of automatic pretreatment using hydrofluoric acid and nitric acid for the decomposition (melting) of silica (SiO2) with the use of "DEENA2." Silica (SiO2 and its compounds) involves complicated reagent addition operations in acid decomposition, making it very labor-intensive. Additionally, there are concerns about human exposure to acidic reagents like hydrofluoric acid, which poses risks during analysis. Therefore, we automated the sample pretreatment for ICP and ICP/MS using the automatic pretreatment device "DEENA2" for acid addition and other processes. 【Contents】 ■ Overview ■ What is DEENA2 ■ Keywords ■ Equipment Used ■ Examination Method *For more details, please refer to the PDF document or feel free to contact us.

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Technical Data: Establishment of Component Analysis Methods for Olive Oil

Using the NIR Olive Checker! It can measure a total of 21 types, including acidity and oleic acid.

This document introduces the establishment of a component analysis method for olive oil using the "NIR Olive Checker." Component analysis of olive oil has become possible through non-destructive analysis methods. Using NIR (Near Infrared Analysis Device), we have established a method to rapidly and easily measure 21 components in olive oil, including "acidity," "oleic acid," "linoleic acid," and "polyphenols." [Contents] ■ Overview ■ What is Near Infrared Analysis? ■ Keywords ■ Equipment Used ■ Examination Method *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
  • Food Testing/Analysis/Measuring Equipment
  • Other environmental analysis equipment

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Establishment of Component Analysis Method for Olive Pomace

Conducting a study on a rapid and simple analytical method for the components in olive pomace!

This document introduces the establishment of a component analysis method for olive pomace using the "NIR Olive Checker." The component analysis of olive pomace has become possible through non-destructive analysis methods. Using NIR (Near Infrared Analysis Device), we have established a method for the rapid and simple measurement of components such as "moisture" and "fat" in olive pomace. [Contents] ■ Overview ■ What is Near Infrared Analysis? ■ Keywords ■ Equipment Used ■ Examination Method *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
  • Food Testing/Analysis/Measuring Equipment
  • Other environmental analysis equipment

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[Technical Document] Establishment of an Automatic Measurement Method for Nutritional Component Analysis in Soy Sauce

Using the NIR Nutrition Analyzer! Established a method for rapid and easy measurement!

This document introduces the establishment of an automatic measurement method for analyzing food nutritional components in soy sauce using the "NIR Nutrition Analyzer." We conducted a study on the measurement of food nutritional components such as "calories," "protein," "fat," "carbohydrates," and "sodium equivalent." Using near-infrared analysis equipment, we were able to establish a rapid and simple analytical method for measurements in both soy sauce and white soy sauce. 【Contents】 ■ Overview ■ What is Near-Infrared Analysis? ■ Keywords ■ Equipment Used ■ Examination Method *For more details, please refer to the PDF document or feel free to contact us.

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  • Food Testing/Analysis/Measuring Equipment
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[Technical Document] Examination of Fully Automated Preprocessing Methods

Decomposition was carried out using ammonium oxalate, sulfuric acid, and nitric acid with DEENA3.

This document introduces the examination of fully automated pretreatment methods using sulfuric acid and nitric acid in the "Ministerial Ordinance on Standards for Ingredients of Milk and Dairy Products" and "Standards for Foods and Additives" using "DEENA3." The pretreatment methods for non-mineral water soft drinks involve complicated reagent addition operations during acid digestion, making them very labor-intensive. Additionally, the use of acidic reagents such as sulfuric acid and nitric acid poses exposure risks to humans, making the analysis hazardous. Therefore, using the automated pretreatment device "DEENA3" for acid addition, we automated the pretreatment of samples for ICP-OES and ICP/MS analysis. [Contents (Excerpt)] ■ Overview ■ Keywords ■ Equipment Used ■ Reagents Used ■ Analysis Flow *For more details, please refer to the PDF document or feel free to contact us.

  • Other physicochemical equipment
  • Analytical Equipment and Devices

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[Technical Data] Automatic Pretreatment of DEENA2 Steel with Nitric Acid - Hydrochloric Acid (Aqua Regia)

A study was conducted on the addition of nitric acid-hydrochloric acid (aqua regia) for the heating decomposition (dissolution) in the analysis of impurities contained in iron and steel.

Steel increases in rigidity when it contains boron and other impurities, but too many impurities can make it brittle. Therefore, managing the impurity content is extremely important in the production of high-quality steel. As an analytical method, the nitric acid-hydrochloric acid (aqua regia) decomposition is commonly used, but it is time-consuming and labor-intensive, and generates a significant amount of harmful acid decomposition gases, making it difficult to safely and rapidly process multiple samples. To address this, we examined the automatic pretreatment using nitric acid-hydrochloric acid (water) for impurity analysis in iron and steel with DEENA2, which can perform tasks such as acid addition, stirring, and dilution control fully automatically via PC control. As a result, we were able to automate tasks that were previously done manually. Additionally, we successfully reduced human exposure to the acid decomposition gases. ■ Purpose ■ Overview ■ Keywords ■ Equipment Used ■ Analysis Flow ■ Results *For more details, please refer to the PDF document or feel free to contact us.

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  • Separation device

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Technical Data: Automatic Pre-treatment with Mixed Acid in DEENA2 Operating Environment Measurement and Analysis

Automatic pretreatment using mixed acid (hydrochloric acid: nitric acid: pure water = 2:1:4) in work environment measurement analysis with DEENA2.

This document introduces the automatic pretreatment using mixed acid (hydrochloric acid: nitric acid: pure water = 2:1:4) in the analysis of work environment measurement with "DEENA3." The analysis of work environment measurements involves complicated reagent addition operations in acid decomposition, which is very labor-intensive. Additionally, there are concerns about human exposure to acid reagents such as hydrochloric acid and nitric acid, making the analysis hazardous. Therefore, we automated the pretreatment of samples for ICP/OES and ICP/MS using the automatic pretreatment device "DEENA3" for acid addition and other processes. 【Contents】 ■ Overview ■ Keywords ■ Equipment used ■ Reagents used ■ Analysis flow *For more details, please refer to the PDF document or feel free to contact us.

  • Other physicochemical equipment
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  • Other environmental analysis equipment

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Technical Data: Automatic Pre-treatment with Aqua Regia in Work Environment Measurement and Analysis

Automatic pretreatment using aqua regia (nitric acid: hydrochloric acid = 1:3) in work environment measurement analysis with DEENA3.

This document introduces the automatic pretreatment using aqua regia (nitric acid: hydrochloric acid = 1:3) in the analysis of work environment measurement using "DEENA3." The analysis of work environment measurements involves complicated reagent addition operations in acid decomposition, which is very labor-intensive. Additionally, there are concerns about human exposure to acid reagents such as hydrochloric acid and nitric acid, making the analysis hazardous. Therefore, we automated the pretreatment of samples for ICP/OES and ICP/MS using the automatic pretreatment device "DEENA3." 【Contents】 ■ Overview ■ Keywords ■ Equipment used ■ Reagents used ■ Analysis flow *For more details, please refer to the PDF document or feel free to contact us.

  • Other physicochemical equipment
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Technical Data: Automatic Pre-treatment Using Hydrofluoric Acid and Nitric Acid

Automated pretreatment using hydrofluoric acid and nitric acid in the decomposition of silica with DEENA3.

This document introduces the automatic pretreatment using hydrofluoric acid and nitric acid for the decomposition of silica with "DEENA3." Silica involves complicated reagent addition procedures in acid decomposition, making it very labor-intensive. Additionally, there are concerns about human exposure to acidic reagents like hydrofluoric acid, which poses risks during analysis. Therefore, we automated the sample pretreatment for ICP/OES and ICP/MS using the automatic pretreatment device "DEENA3" for acid addition and other processes. [Contents (excerpt)] ■ Overview ■ Keywords ■ Equipment used ■ Reagents used *For more details, please refer to the PDF document or feel free to contact us.

  • Other physicochemical equipment
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Establishment of a Nutritional Component Analysis Method for Food Using Near-Infrared Analysis Equipment

Measurement was conducted using a nutrition analyzer, and a comparison of the results with conventional method values.

This document introduces the establishment of a nutritional component analysis method for foods such as bento, side dishes, and bread using the NIR Nutrition Analyzer (near-infrared analysis device). It includes an explanation of near-infrared analysis methods, the equipment used, the examination methods, and an example of measurements. Actual samples were blended into a paste and measured using the Nutrition Analyzer with installed calibration data, and the results were compared with those obtained by conventional methods. [Contents] ■ Overview ■ What is near-infrared analysis? ■ Keywords ■ Equipment used ■ Examination methods ■ Example of measurements *For more details, please refer to the PDF document or feel free to contact us.

  • Food Testing/Analysis/Measuring Equipment

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"Analysis Work Efficiency Improvement WEB Online Seminar" *Free Participation*

We propose work efficiency improvements using Continuous Flow Analysis (CFA) and Near-Infrared Analysis (NIR) devices. We will also introduce some examples.

Our company, engaged in the development, manufacturing, and sales of analytical machines, will hold a "Web Online Seminar on Streamlining Analytical Work." We will introduce the "Continuous Flow Analyzer (CFA)," which has become the standard method for environmental analysis, the "Acid Decomposition Pretreatment Device" capable of heating up to 300°C, and the "Near-Infrared Analyzer" that can analyze caloric content, protein, fat, carbohydrates, and equivalent salt in about 30 seconds. The seminar consists of three parts, and you can participate in any one of them. Participation is free (registration required). We will propose ways to improve efficiency, including real-life examples. 【Seminar Overview】 Date: July 3, 2020 (Friday) Part 1: 13:00 - Part 2: 14:00 - Part 3: 15:00 Cost: Free (registration required) How to apply: Please apply from http://www.bl-tec.co.jp/ (Registration will start on June 19) *You can view detailed materials for this seminar by downloading the PDF. Please feel free to contact us with any inquiries.

  • Technical Seminar
  • Analytical Equipment and Devices
  • Other environmental analysis equipment

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Continuous Flow Analysis System (CFA) "MiSSion"

Compatible with halogen and LED light sources! Vertical 2-channel system of the auto analyzer series.

We have newly released the continuous flow analysis device "MiSSion." It is a vertical two-channel system from the auto-analyzer series. The measurement principle is based on the flow analysis device using the absorbance method, specifically the bubble segmentation "CFA" method. The auto-analyzer series offers over 1,000 analytical methods for chemical analysis in fields such as environment, agriculture, fisheries, and chemistry, and is widely used in many analytical institutions. 【Features】 ■ Supports ultra-low concentration measurements ■ Can be equipped with halogen and LED light sources ■ Excellent maintenance capabilities ■ Temperature control function for the detector ■ New software *For more details, please refer to the PDF document or feel free to contact us.

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  • Logic Analyzer

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Automatic Spectrophotometer "Discrete Analyzer AQ400"

Automate everything from preprocessing to analysis, reducing labor and minimizing human errors! Supports various analysis items.

The "Discrete Analyzer AQ400" is a device that can automate the addition of reagents to samples, mixing and stirring, heating, chemical reactions, transferring to cells, and spectrophotometric analysis. It supports various measurement items such as alkalinity, chlorides, chromium, cyanide, total hardness, phosphate, silica, and sulfate, and can be automated for measurement methods using four or fewer reagents. In addition to preventing human exposure to samples and reagents, it contributes to labor-saving in pre-treatment and reduction of human errors. 【Features】 ■ Automation of the process from pre-treatment to analysis with a spectrophotometer ■ Reduction of the labor involved in pre-treatment such as reagent addition and mixing ■ Capability to accommodate various analysis items with setting changes ■ Prevention of human exposure to samples and reagents *For more details, please refer to the materials. Feel free to contact us with any inquiries.

  • Spectroscopic Analysis Equipment
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Near-infrared analyzer "Nutrient component analysis device in food 2600XT-R"

Measurement time is as short as 30 seconds! No reagents are required, and operation is simple. This is in response to the obligation for nutritional labeling.

The nutritional component analysis device "2600XT-R" can measure the basic five nutritional components, as well as various other components such as dietary fiber, ash, and moisture, in as little as 30 seconds. Simply place the crushed sample in a sealed bag, put it on the measurement section, and press a button to perform the measurement. Since no reagents are required, it contributes to reducing analysis costs. It has built-in calibration curve data for prepared foods and bento boxes, and adjustments to the calibration curve can be made according to manual analysis values. 【Features】 ■ Measured values can be used directly for component display (can be used if indicated as "estimated value") ■ Easy operation with a touch panel ■ Rich built-in calibration curve data. Reconstruction is possible with the addition of manual analysis data ■ Proven track record in the soy sauce industry *For more details, please refer to the materials available for download in PDF format. We are currently conducting device loan demonstrations! If you are interested, please apply through the contact form.

  • Food Testing/Analysis/Measuring Equipment
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[Presentation of Materials] Introduction of simple, quick, and accurate measurement examples of nutritional components!

"What is near-infrared analysis? An explanation of the basic knowledge." The inevitable obligation for nutritional labeling. What are the analysis methods for processed foods using near-infrared analysis devices that require minimal effort?

The Food Labeling Act came into effect on April 1, 2015, mandating nutritional labeling for all processed foods and additives that are pre-packaged for consumers. Unlike the previous law, which required the use of hazardous reagents and involved labor-intensive measurements that demanded skilled techniques, near-infrared analysis equipment allows for rapid and simple measurements. This document provides basic knowledge on "What is near-infrared analysis?" and presents case studies of nutritional component analysis for bento, bread, side dishes, and other food items using near-infrared analysis equipment. [Contents] ■ The obligation of nutritional component labeling due to the enforcement of the Food Labeling Act ■ What is near-infrared analysis? ■ Introduction of case studies on food sample analysis using near-infrared analysis equipment *For more details, please contact us or download the PDF.

  • Spectroscopic Analysis Equipment
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[Presentation of Materials] Introduction of simple, rapid, and accurate measurement examples of nutritional components!

Utilizing near-infrared analysis equipment. By leveraging over 1,000 measurement data points, it is possible to measure nutritional components with accuracy equivalent to conventional methods!

Our company, engaged in the development, manufacturing, and import sales of analytical machines, is currently offering a case study document on the measurement of nutritional components using "near-infrared analysis equipment." The document includes detailed explanations of the measurements and the advantages of the measurement methods, as well as measurements of over 1,000 diverse samples, including bento, side dishes, noodles, desserts, and sandwiches, highlighting the differences from conventional methods. 【What is Near-Infrared Analysis?】 ■ A component measurement method that does not use reagents or consumables. It allows for the non-destructive measurement of samples with unknown concentrations, using only physical pre-treatment methods such as non-destructive techniques or food mixers, enabling simple, rapid, and accurate measurement of target components. *For more details, please refer to the document. Feel free to contact us with any inquiries.

  • Spectroscopic Analysis Equipment
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Automatic Dilution Device "Syringe Dilutor 3"

Automation of operations solves issues during standard solution preparation and sample dilution!

The "Syringe Diluter 3" is a device that can automatically adjust standard solutions and dilute samples. We have received numerous requests from customers involved in analysis, expressing that "the dilution of standard solutions and samples takes a significant amount of time and effort, and we want to find a solution." This product addresses issues such as high costs and human errors caused by manual operations through automation of the process. 【Features】 ■ Automatic adjustment of standard solutions - Standard solutions can be adjusted by stepwise dilution of the standard stock solution. - By diluting the standard stock solution in two stages, a wider range of standard series can also be created. - By storing dilution methods in the software, it is possible to create the same standard solution each time. ■ Automatic dilution of samples - By specifying the dilution factor and dilution cup in advance, automatic sample dilution is possible. - High-concentration samples can be diluted in two stages, allowing for large dilutions such as 10,000 times. *For more details, please refer to the PDF document or feel free to contact us.

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Acid decomposition pretreatment device 'DEENA3' / 'Syringe Dilutor 3'

Fully automated from acid decomposition pretreatment to sample preparation! Easy operation also avoids human error.

The new 'DEENA3' in the "DEENA series," which can automate analysis in various fields, including metal acid decomposition pretreatment, can heat and decompose up to 300°C. It can perform everything from reagent addition, stirring, heating, cooling, to spike addition and sample preparation fully automatically without human intervention, and it now features a touch screen for easier operation. Additionally, by using the 'Syringe Dilutor 3,' which can automatically create standard solutions and dilute samples, it reduces the tasks previously performed by humans, contributing to time and cost savings. It also helps prevent exposure to hazardous reagents and human errors caused by manual addition. **Features of DEENA3:** - Avoids human exposure to hazardous reagents - Cost benefits from full automation - Reduces blanks by using dedicated vials - Supports sulfuric acid white smoke and Kjeldahl decomposition in addition to nitric and hydrochloric acid decomposition **Features of Syringe Dilutor 3:** - Enables accurate and efficient dilution - Supports large dilutions such as 10,000-fold dilution through stepwise dilution - Designed to prevent contamination of diluted samples - Prevents contamination in the syringe by not drawing samples into the syringe

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Study on the decomposition using hydrofluoric acid and nitric acid in the analysis of impurities in silica.

[Technical Data Presentation] Automation of Reagent Preprocessing Using Acid Decomposition Pretreatment Device DEENA

Silica (SiO2 and its compounds) involves complicated reagent addition operations in acid decomposition, making it very labor-intensive. Additionally, there are issues related to human exposure to acidic reagents such as hydrofluoric acid, which poses risks during analysis. Therefore, we have automated the sample pretreatment for ICP and ICP/MS using the automatic pretreatment device DEENA for acid addition and other processes. 【Technical Document Contents】 ■1. Overview ■2. Keywords ■3. Equipment Used ■4. Reagents Used ■5. Analysis Flow ■6. Results *For more details, please refer to the PDF document or feel free to contact us.

  • Mixer/agitator
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Near-infrared analyzer "Soy Sauce Component Analysis Device Spectruster XT-R"

Simultaneously and rapidly measure the total nitrogen, salt-free soluble solids, salt, and alcohol content of soy sauce. Just place the soy sauce on the auto-sampler.

World's highest performance device 1. The ultra-low noise of less than 15 micro AU across the entire range of 1100nm to 2500nm required for near-infrared analysis is unmatched by competitors. 2. The signal-to-noise ratio is an astonishing 125,000. 3. All shipped devices are NIST traceable, ensuring the accuracy of the wavelength goes without saying. 4. With TAS technology (patented), which maintains constant wavelength and absorbance levels, you can use it with confidence. 5. The only consumable is the lamp. 6. Simply place the test tubes containing soy sauce on the 80-sample auto-sampler, and it will automatically measure in the order of suction, temperature control, stop, photometry, and cleaning. 7. Complete automation.

  • Spectroscopic Analysis Equipment
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