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1. Gas Chromatograph: A gas chromatograph is a common instrument used to separate and analyze compounds in a mixture. It is commonly used in industrial settings for detecting the presence of compounds such as diethanolamine (DEA) in processes involving chemicals like industrial-grade diethanolamine.
2. Mass Spectrometer: A mass spectrometer is a powerful analytical tool that can be used to identify and quantify compounds in a sample. It is often employed in industrial settings to detect the presence of diethanolamine (DEA) in various processes involving chemical reactions.
3. High Performance Liquid Chromatograph (HPLC): HPLC is a technique commonly used in industrial laboratories to separate, identify, and quantify components in a mixture. It can be utilized for detecting diethanolamine (DEA) in industrial processes where accurate analysis is crucial.
4. Fourier Transform Infrared Spectrometer (FTIR): FTIR is a spectroscopic technique used to analyze the chemical composition of a sample. In an industrial setup, FTIR can be utilized for detecting the presence of diethanolamine (DEA) in various chemical processes.
5. Ultraviolet-Visible (UV-Vis) Spectrophotometer: This instrument is commonly used in industrial laboratories for analyzing the absorption and transmission of UV or visible light by a sample. It can be employed for detecting diethanolamine (DEA) based on its unique spectral characteristics.
6. Ion Chromatograph: Ion chromatography is a technique used for separating and analyzing ions in a solution. It can be utilized in the industrial sector for detecting traces of diethanolamine (DEA) in different chemical processes.
7. Atomic Absorption Spectrophotometer: This instrument is commonly used in industrial settings for detecting and quantifying the concentration of metallic elements in a sample. It can be employed for analyzing the presence of elements related to diethanolamine (DEA) in industrial processes.
8. Inductively Coupled Plasma Mass Spectrometer (ICP-MS): ICP-MS is a highly sensitive technique used for detecting and quantifying trace elements in a sample. It can be utilized in the industrial sector for analyzing the presence of elements associated with diethanolamine (DEA) in various chemical processes.
9. Raman Spectrometer: Raman spectroscopy is a technique used to study vibrational, rotational, and other low-frequency modes in a system. In an industrial setting, Raman spectrometers can be used for detecting diethanolamine (DEA) based on its unique Raman spectrum.
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