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How to improve laboratory analysis efficiency through a fully automatic secondary thermal analyzer?
Date: 2025-08-06Read: 0
The fully automatic secondary thermal analyzer can significantly improve the analysis efficiency of the laboratory through its special working principle and advanced technical characteristics. Here is how to proceedFully automatic secondary thermal analyzerSpecific ways to improve laboratory analysis efficiency:
1、 Working principle and technical characteristics
1. Secondary thermal analysis technology:
By heating the sample, volatile and semi volatile organic compounds (VOCs/SVVOCs) in the sample are released from the solid or liquid matrix.
These compounds are transported to subsequent analytical instruments (such as gas chromatographs, mass spectrometers, etc.) for qualitative and quantitative analysis through carrier gas.
The "secondary" analysis emphasizes the in-depth analysis of the sample, usually including the initial analysis to remove interfering substances, and the secondary analysis focusing on the collection and analysis of target compounds, thereby improving the accuracy and sensitivity of the analysis.
2. Fully automated operation:
The entire process from sample loading, heating analysis, gas transmission to subsequent analysis can be unmanned.
Reduced manual intervention and shortened sample pre-processing time.
3. High precision temperature control system:
Being able to accurately control the heating temperature and time to ensure that the sample is analyzed under optimal conditions.
Reduce the loss and interference of target compounds and improve the accuracy of analysis.
4. Efficient enrichment and purification:
By using specially designed adsorption traps or capture tubes, target compounds can be efficiently enriched and impurities can be removed.
Improve the sensitivity and accuracy of analysis.

2、 Specific ways to improve analysis efficiency
1. High throughput sample processing:
  Fully automatic secondary thermal analyzerSupport multiple sample grade configuration options, such as 12 bit, 24 bit, 36 bit, or 50 bit, which can be flexibly selected according to experimental needs.
The automated operation process enables the instrument to continuously process a large number of samples, significantly improving the sample processing throughput.
2. Shorten the analysis cycle:
Fully automated operation reduces manual steps and time consumption.
The high-precision temperature control system and efficient enrichment and purification technology make the analysis process faster and more accurate.
3. Improve data quality and analysis accuracy:
The high-precision temperature control system and advanced sensing technology ensure the accuracy of every analysis.
The instrument is equipped with comprehensive data recording and analysis functions, which can record key parameters in real-time during the experimental process and automatically generate experimental reports.
4. Expand application scope and flexibility:
The flexible analysis program design enables the fully automatic secondary thermal analyzer to be suitable for various types of samples and analysis needs.
The analysis program can be customized according to actual needs, including parameters such as heating rate, temperature range, and carrier gas flow rate.
3、 Application scenarios and cases
The fully automatic secondary thermal analyzer has a wide range of applications in multiple fields, including but not limited to:
1. Environmental monitoring: used for detecting VOCs/SVOs in environmental samples such as atmosphere, water bodies, and soil, evaluating environmental pollution status and tracking pollution sources.
2. Food safety: detect volatile organic compounds such as pesticide residues, additives, essence and spices in food to ensure food safety.
3. Materials Science: Analyze the volatile components in polymer materials, coatings, adhesives, etc., and evaluate the performance and quality of materials.
4. Forensic toxicology: ultra sensitive detection of metabolites and abused substances in blood and hair, as well as rapid identification of fire residues.
passFully automatic secondary thermal analyzerThe application in these fields can significantly improve the analytical efficiency of laboratories and provide more powerful support for scientific research and industrial development.