Automation in gaseous sample tests

Inactive Publication Date: 2015-03-26
APPLIED LAB AUTOMATION
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0027]In one embodiment, the present invention collects and calculates the data from the analysis in real-time. In a preferred embodiment, the present invention requires only one calibration to one matrix during the gaseous sample analysis. The calibrations to other matrixes may be eliminated since the readings from the other matrixes could be converted to the readings f

Problems solved by technology

Repeating the calibration process to each of the matrix effect may result in a time-consuming and labor-intensive task.
Nevertheless, said repeating process is usually carried out manually, thus the gaseous sample analysis may require human intervention instead of being a highly automatic process.
However, not all the matrix effects could be corrected and compensated for by using the k factor.
The matrix effect can be more complic

Method used

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  • Automation in gaseous sample tests

Examples

Experimental program
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Effect test

example i

[0062]Applying the correction factor in the gaseous sample analysis

[0063]The apparatus consisted of connecting cables and a computer system. The connecting cables served as a mean of connection between the apparatus and two analyzers used in this experiment. The computer system comprised at least a hard drive as the storage device, a CPU as the calculation device and a screen as the display device. The experimental gaseous sample test was carried out under a stable environment where the temperature and the pressure remain stable.

[0064]Contaminant data at various concentrations in two separate matrix gases was collected. The contaminant in this experiment is Methane. The first matrix gas was Nitrogen; and, the second matrix gas was Helium. The analyzer used in this experiment was Baseline Mocon 9000 Total Hydrocarbon Analyzer.

[0065]The contaminant was first analyzed and the readings were obtained under Nitrogen matrix under conditions of the room temperature and atmospheric pressure.

[00

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Abstract

The present invention is related to an apparatus facilitating the automation of gaseous sample analysis and the method thereof. Specifically, the present invention is related to the apparatus that is capable of detecting and converting a reading from a first matrix to a second matrix, thus simplifies a calibration process required for the gaseous sample analysis and the method thereof.

Description

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Claims

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Application Information

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Owner APPLIED LAB AUTOMATION
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