Welcome Customer !

Membership

Help

Shanghai Sida Analytical Instrument Co., Ltd
Custom manufacturer

Main Products:

instrumentb2b>Products

Shanghai Sida Analytical Instrument Co., Ltd

  • E-mail

  • Phone

  • Address

    Building 11, Heshengcha'an Cultural and Creative Park, No. 1300 Jungong Road, Yangpu District, Shanghai

Contact Now

Fully automatic headspace sampler

NegotiableUpdate on 07/07
Model
Nature of the Manufacturer
Producers
Product Category
Place of Origin

Overview

The fully automatic headspace sampler HS-27B developed by Shanghai Sida Analytical Instrument Co., Ltd. can be used in various industries such as drug solvent residue, food flexible packaging, VOC analysis and detection, blood alcohol and ethanol detection, and tap water analysis. Shakeable heating station: 12 or more positions.

Product Details

*To ensure that you have a comprehensive understanding of our product performance and technical specifications, as well as detailed instrument parameters, please contact our business representative. Our business representative has rich practical experience and can provide you with solutions that meet your specific needs and application scenarios.

HS-27BIntroduction to fully automatic headspace sampler


  • HS-27B is a stable and reliable sample pretreatment instrument that can be applied to different sample matrices

  • Reduce or eliminate the need for sample pre-treatment

  • Reduce maintenance costs for injection ports and chromatography columns

  • Fully automated analysis

  • Easy to operate

  • High sample carrying capacity and processing capability

  • Stable and reliable design

1. From daily quality control to new product research and development, provide diverse support for volatile components.

  • The most suitable way to meet the high reliability requirements of modern analysis is to use a stable, sturdy, and durable precision instrument.

  • HS-27BFully automatic headspace samplerThe performance it possesses is capable of handling new challenges in daily analysis and providing reliable and trustworthy analysis results.

2、HS-27BFully automatic headspace samplerSample processing capability*

  • 10ml and 20ml headspace bottles can be used to meet a large number of analytical requirements

  • The starting and ending bottle positions can be freely set to meet special on-site requirements.

  • The shaking function of the sample bottle accelerates the balance time, improves efficiency, enhances sensitivity and reproducibility;

  • 12 or more sample heating positions can be overlapped for heating, saving analysis time and achieving high Zen speed.

  • Automatically detect missing sample bottles to reduce confusion in sequence analysis.

3. Reliable results and reproducibility

  • Valve and quantitative loop technology are currently highly reliable and highly reproducible techniques in use. With fixed and known volumes of samples, precise temperature control ensures good reproducibility and avoids the risk of erroneous results and sample condensation.

  • All sample flow paths have undergone insulation treatment and chemical inertness treatment, which greatly reduces analytical residues and maintains the integrity of the sample.

4. HS-27B has 2 control modes

  • It can be controlled directly through the touch screen or through software on the computer.

  • Function *, simple and clear operation interface greatly improves work efficiency.

  • It can be operated separately on the instrument touch screen and computer. The setting of methods and sequences is simple and intuitive. Methods and sequences can be easily edited and saved, and applied to instruments. Real time display of injection status and intuitive presentation of temperature conditions.

5. Product application

  • GB/T 5750.8-2023 Standard Test Methods for Drinking Water Part 8: Organic Matter Index

  • HJ 620-2011 Determination of volatile halogenated hydrocarbons in water quality - Headspace gas chromatography method

  • HJ 642-2013 Determination of volatile organic compounds in soil and sediment by headspace/gas chromatography-mass spectrometry

  • HJ 6432013 Determination of volatile organic compounds in solid waste by headspace/gas chromatography-mass spectrometry method

  • HJ 679-2013 Determination of Bingxiquan, Acrylonitrile, and Acetonitrile in Soil and Sediments by Headspace Gas Chromatography

  • HJ 714-2014 Determination of volatile halogenated hydrocarbons in solid waste by headspace/gas chromatography-mass spectrometry method

  • HJ 736-2015 Determination of volatile halogenated hydrocarbons in soil and sediment by headspace/gas chromatography-mass spectrometry

  • HJ 741-2015 Determination of volatile organic compounds in soil and sediment by headspace/gas chromatography method

  • HJ 742-2015 Determination of volatile aromatic hydrocarbons in soil and sediment by headspace/gas chromatography method

  • HJ 760-2015 Determination of Volatile Organic Compounds in Solid Waste by Headspace Gas Chromatography

  • HJ 810-2016 Determination of volatile organic compounds in water quality - Headspace/gas chromatography-mass spectrometry method

  • HJ 874-2017 Determination of Solid Waste Bingxiquan, Acrylonitrile, and Acetonitrile by Headspace Gas Chromatography

  • HJ 959-2018 Determination of Tetraethylene in Water Quality by Headspace/Gas Chromatography Mass Spectrometry

  • HJ 975-2018 Determination of Benzene Compounds in Solid Waste by Headspace Gas Chromatography

  • HJ 1067-2019 Determination of Benzene Derivatives in Water Quality by Headspace/Gas Chromatography Method

  • HJ 1072-2019 Determination of Pyridine in Water Quality - Headspace/Gas Chromatography Method

  • GA/T 842-2019 Test Method for Blood Alcohol Content

  • SN/T 4148-2015 Determination of volatile organic compounds (VOCs) in packaging materials - Static headspace gas chromatography method

  • GB/T 16886.7-2015 Biological Evaluation of Medical Devices Part 7: Residual Ethylene Oxide Sterilization

  • HJ 1289-2023 Determination of 15 Ketones and 6 Ether Compounds in Soil and Sediments by Headspace/Gas Chromatography Mass Spectrometry