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Case Studies in Chemistry and Materials Analysis

Featuring case studies on material analysis, including challenges in chemical and material analysis! Also includes case studies on IR imaging system analysis!

This document is a business guide for the analytical solutions business developed by Nippon Steel Environmental Corporation. It focuses on the characteristic chemical structures of chemical substances and includes case studies of IR imaging systems that visualize the distribution state of these substances through imaging. [Contents] ■ Imaging measurements using infrared spectroscopy ■ 3D laser microscope observation ■ Analysis of foreign substances in food ■ Material investigation of packaging materials ■ Microscopic foreign substances on electronic components ■ Analysis of surface extrusions on wallpaper ■ Analysis of ultra-trace substances ■ Analysis of nitrogen compounds released from coal liquefaction hydrogenated refined oil ■ Qualitative analysis of oil in seabed sediments ■ Organic elemental analysis (GC method) and trace total nitrogen analysis (chemiluminescence method), etc. *For details, please request the document or view the PDF data from the download.

  • Analytical Equipment and Devices
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Technical Data: Analysis of Tar Components by GC×GC-TOF/MS

Connect columns with different polarities in series and analyze! Introducing the measurement results of tar samples!

Our company is engaged in the analysis solution business, and this document presents the results of measuring tar samples using GCxGC-TOF/MS. GCxGC (comprehensive two-dimensional GC) is a method that connects columns with different polarities in series through a modulator for analysis. By performing boiling point separation in the 1st column and polarity separation in the 2nd column, it is possible to rapidly expand compound groups in two dimensions. [Contents] ■ Overview ■ Analysis of tar beverages - Qualitative - Semi-quantitative *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
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Technical Data: Analysis of Odors

Introducing examples of analyzing odor components in the environment of living spaces and work sites!

Our company is engaged in the analysis solutions business. This document presents the analysis results obtained when identifying and quantitatively analyzing odor components in the environment of living spaces and workplaces, as well as odor components emitted from products. We conducted identification and quantitative analysis of components adsorbed onto solid-phase adsorption cartridges using thermal desorption gas chromatography-mass spectrometry. [Contents] ■ Overview ■ Odors from food packaging containers: Analysis of odor components from egg cartons ■ Environmental odors: Analysis of odor components from under the floor *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
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Analysis solution business "Chemical and Material Analysis Case Studies"

Featuring case studies on material analysis, including challenges in chemical and material analysis! Also includes case studies on IR imaging system analysis!

This document is a business guide for the analytical solutions business developed by Nippon Steel Environmental Corporation. It focuses on the distinctive chemical structures of chemical substances and includes case studies of IR imaging systems that visualize the distribution of these substances through imaging. 【Contents】 ■ Imaging measurements using infrared spectroscopy ■ 3D laser microscope observations ■ Foreign substance analysis in food ■ Material investigation of packaging materials ■ Microscopic foreign substances on electronic components ■ Analysis of surface protrusions on wallpaper ■ Analysis of ultra-trace substances ■ Analysis of nitrogen compounds released from coal liquefaction hydrogenation refined oil ■ Qualitative analysis of oil in seabed sediments ■ Organic elemental analysis (GC method) and trace total nitrogen analysis (chemiluminescence method), etc. *For details, please request the document or view the PDF data from the download.

  • Analytical Equipment and Devices
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Technical Data: Grease Life Evaluation

An analysis case investigating the usage temperature conditions to extend the service life of grease hardened due to oxidation degradation.

Our company is engaged in the analysis solution business. This document provides an overview, analysis principles, and procedures for evaluating the lifespan of grease. The grease used hardened after four years, leading to issues. The cause of hardening was determined to be oxidative degradation through elemental analysis (C/O), infrared spectroscopy, and proton nuclear magnetic resonance spectroscopy. To reduce the running costs of grease usage, we conducted kinetic analysis using thermogravimetric analysis/differential thermal analysis to investigate temperature conditions that could allow for a minimum service life of seven years. [Contents] ■ Overview ■ Features ■ Analysis Principles and Procedures - Analysis using Arrhenius plots ■ Analysis Results - Service temperature for a lifespan of seven years based on TG/DTA and Arrhenius plots *For more details, please refer to the PDF document or feel free to contact us.

  • Analytical Equipment and Devices
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Technical Data: Imaging Measurement by Infrared Spectroscopic Analysis

Examples of infrared spectroscopy for identifying chemical substances such as plastics, paints, and surfactants are presented.

Our company is engaged in the analysis solution business. This document presents case studies of imaging measurements using infrared spectroscopy. Infrared spectroscopy (IR) is an analytical method that identifies chemical substances such as plastics, paints, and surfactants from the patterns of spectra obtained by irradiating a sample with infrared light. The IR imaging system focuses on the characteristic chemical structures of chemical substances and visualizes the distribution of those substances through imaging. [Contents] ■ Overview ■ Analysis Cases - Material evaluation of printed plastic areas - Composition evaluation of multilayer materials *For more details, please refer to the PDF document or feel free to contact us.

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Technical Data: Organic Element Analysis and Trace Total Nitrogen Analysis

Technical documentation featuring analysis examples using organic element analysis devices and chemiluminescence methods!

Our company is engaged in the analysis solution business. This document includes case studies of quantitative analysis of carbon (C), nitrogen (N), hydrogen (H), and oxygen (O) using organic elemental analyzers, as well as a case study of trace total nitrogen analysis (chemiluminescence method) that measures approximately 1 ppm of trace nitrogen with high precision. [Contents] ■ Organic Elemental Analysis (GC Method) - Overview - Case Studies ■ Trace Total Nitrogen Analysis (Chemiluminescence Method) - Overview *For more details, please refer to the PDF document or feel free to contact us.

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ICP luminescence spectroscopic analysis method

You can determine the type of element from the wavelength (qualitative) and the concentration from the emission intensity (quantitative)!

ICP stands for Inductively Coupled Plasma, and it is a method for the qualitative and quantitative analysis of inorganic elements in samples. By introducing the analytical sample solution into argon plasma, it is possible to obtain the characteristic emission spectrum of each element. From the wavelength, the type of element can be determined (qualitative), and from the emission intensity, the concentration can be determined (quantitative). Additionally, the quantification limit may vary depending on the target elements, sample preparation, and the influence of coexisting elements, so please contact us for more information. 【Features】 ■ Simultaneous multi-element analysis is possible ■ Introduction to the device requires acidic aqueous solutions, so solid samples need to be converted to solutions through pretreatment ■ Measurement conditions can be optimized according to the presence of coexisting matrices ■ Arsenic (As), selenium (Se), and antimony (Sb) can be quantified in the ppb range using the hydride generation method *For more details, please download the PDF or feel free to contact us.

  • Other physical property measurements and component analysis

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