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[Document] Restek PAL SPME Arrow User Manual

The fixed volume is large and the mechanical stability is high! Explanation of heating conditioning and solvent washing, etc.

This document is the instruction manual for the "Restek PAL SPME Arrow." It has several advantages over conventional SPME fibers in terms of having a larger stationary phase volume and higher mechanical stability. We provide detailed information on the selection of SPME Arrows and general precautions. Please take a moment to read it. 【Contents (partial)】 ■ Selection of SPME Arrow ■ Restek PAL SPME Arrow Conversion Kit ・ PAL System Compatibility ■ SPME Arrow Heating Conditioning and Solvent Washing ・ General Precautions ・ Heating Conditioning * For more details, please refer to the PDF document or feel free to contact us.

  • Separation device
  • Technical and Reference Books

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Technical Data: Analysis of Furan and Alkyl Furan in Food

Analysis of furan and alkyl furans in food using SPME Arrow GC-MS.

Using SPME Arrow and the PAL CTC autosampler for sample pretreatment, and the Rxi-624Sil MS column for analysis, we established the GC-MS optimization conditions for furan and alkyl furan in infant formula (hereafter referred to as powdered milk) and coffee samples. The results of this experiment revealed that sample pretreatment using SPME Arrow is suitable for a variety of sample types containing high and low concentrations of furan and alkyl furan. By using SPME Arrow alone for pretreatment, compared to headspace only or a combination of SPME and HS, an increase in productivity for food safety inspection laboratories is expected.

  • Other laboratory equipment and containers
  • Technical and Reference Books

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[Technical Data] High-Precision Analysis of Volatile Organic Compounds and Odor Compounds in Drinking Water

High-Precision Analysis of Volatile Organic Compounds and Odor Compounds in Drinking Water by HS-SPME Arrow-GC-MS

Testing for volatile organic compounds (VOCs) in drinking water is widely conducted to ensure its safety. Furthermore, odor substances such as methyl isoborneol (MIB) and geosmin are monitored as they cause unpleasant odors, making them subjects of analysis. This study aimed to develop a method that integrates the analysis techniques for VOCs and odor substances, which are typically conducted separately, to achieve high sample throughput. Solid-phase microextraction (SPME) Arrow is a particularly useful technique as it allows for sample pretreatment and sample introduction to be performed with a single device. Additionally, SPME Arrow can be automated using a rail-type autosampler, significantly reducing the time required for sample pretreatment. In this study, we proposed a method that efficiently measures VOCs and odor substances in drinking water by combining a simplified sample pretreatment workflow with headspace-solid-phase microextraction-gas chromatography-mass spectrometry (HS-SPME-GC-MS).

  • Other laboratory equipment and containers

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