Javascript must be enabled to continue!
Portable X-Ray Fluorescence calibration – Workflow to Optimize the Analysis of Carbonates.
View through CrossRef
Portable X-Ray fluorescence (PXRF) instruments have become more and more common tools in the last few years for chemical analysis (major, minor and some traces elements) in carbonates and sedimentary rocks. PXRF is a relatively cheap and fast technique, non-destructive and prevents tedious sample preparation. Manufacturers calibrations are usually made for a very large range of rock types or materials but specific empirical calibrations are essential to improve the quantification of multi-elemental concentrations.We present a general workflow for building an empirical calibration model for a PXRF spectrometer from choosing reference materials to validating calibration’s efficiency and quantifying its limit of quantification. We also compare the quantified results on a sedimentary rock suite obtained from sixteen calibrations that were built using several software available on the market, including a simple homemade spreadsheet, the Bruker calibration software named EasyCal, a free and open-source calibration app named CloudCal, and the built-in GeoMining and GeoExplorer calibrations provided by Bruker manufacturer on the Tracer 5 PXRF. This decoupled approach allows (i) to explore the pros and cons for each calibration software solutions, (ii) to investigate and weight the effect of each correction parameters (i.e. regression line geometry, peaks interferences, spectra normalization, influence coefficients, multi-phases excitation conditions) on the quantified results and (iii) to propose an original and empirical approach to estimate the lower limit of quantification (LOQ) of a PXRF instrument and its calibration.For quality check, each of these newly built calibrations was then validated on carbonate samples of known composition, corresponding to a series of Devonian limestones (Belgium) showing a large CaCO3 content ranging between 20 and 99 wt% and for which powder press pellets were formerly measured on a laboratory WD-XRF. These matrix-match empirical calibrations are systematically bringing improvement of the quantification efficiency, compared to the manufacturer calibrations. 
Title: Portable X-Ray Fluorescence calibration – Workflow to Optimize the Analysis of Carbonates.
Description:
Portable X-Ray fluorescence (PXRF) instruments have become more and more common tools in the last few years for chemical analysis (major, minor and some traces elements) in carbonates and sedimentary rocks.
PXRF is a relatively cheap and fast technique, non-destructive and prevents tedious sample preparation.
Manufacturers calibrations are usually made for a very large range of rock types or materials but specific empirical calibrations are essential to improve the quantification of multi-elemental concentrations.
We present a general workflow for building an empirical calibration model for a PXRF spectrometer from choosing reference materials to validating calibration’s efficiency and quantifying its limit of quantification.
We also compare the quantified results on a sedimentary rock suite obtained from sixteen calibrations that were built using several software available on the market, including a simple homemade spreadsheet, the Bruker calibration software named EasyCal, a free and open-source calibration app named CloudCal, and the built-in GeoMining and GeoExplorer calibrations provided by Bruker manufacturer on the Tracer 5 PXRF.
This decoupled approach allows (i) to explore the pros and cons for each calibration software solutions, (ii) to investigate and weight the effect of each correction parameters (i.
e.
regression line geometry, peaks interferences, spectra normalization, influence coefficients, multi-phases excitation conditions) on the quantified results and (iii) to propose an original and empirical approach to estimate the lower limit of quantification (LOQ) of a PXRF instrument and its calibration.
For quality check, each of these newly built calibrations was then validated on carbonate samples of known composition, corresponding to a series of Devonian limestones (Belgium) showing a large CaCO3 content ranging between 20 and 99 wt% and for which powder press pellets were formerly measured on a laboratory WD-XRF.
These matrix-match empirical calibrations are systematically bringing improvement of the quantification efficiency, compared to the manufacturer calibrations.
 .
Related Results
Automatic Hand-Eye Calibration Method of Welding Robot Based on Linear Structured Light
Automatic Hand-Eye Calibration Method of Welding Robot Based on Linear Structured Light
Aiming at solving the problems such as long calibration time, low precision, and complex operation in hand-eye calibration of welding robot, an automatic hand-eye calibration algor...
A calibration method combining hand-eye calibration and TCP calibration
A calibration method combining hand-eye calibration and TCP calibration
Abstract
Robots' traditional Tool Center Point (TCP) calibration and hand-eye calibration are implemented independently, which is likely to generate large cumulative errors...
[RETRACTED] ChilWell Portable AC “Portable AC Cooler” Reviews v1
[RETRACTED] ChilWell Portable AC “Portable AC Cooler” Reviews v1
[RETRACTED]Is it safe to say that you are searching for inexpensively compact air cooling arrangement? Indeed, the late spring season is at its pinnacle and there is tremendous int...
Determination of Operators' Portable X-ray Safety
Determination of Operators' Portable X-ray Safety
Objective: Ionizing radiation in the form of rays interacts with matter and has immediate and delayed impacts. Applications in dentistry include extraoral and intraoral X-rays and ...
Theoretical study of wide-field fluorescence microscopy based on dynamic speckle illumination
Theoretical study of wide-field fluorescence microscopy based on dynamic speckle illumination
In order to obtain the internal fine structure of biological tissues and living cells, the microscopic imaging technology is required to be capable of microscopy. In the wide-field...
Efficient and Effective Gas Sensor Calibration with Randomized Gas Mixtures
Efficient and Effective Gas Sensor Calibration with Randomized Gas Mixtures
Introduction
The selective quantification of target gases in complex mixtures is an important part of numerous applications of chemical gas sensors. ...
Optimizing Emergency Department Workflow Using Radio Frequency Identification Device (RFID) Data Analytics
Optimizing Emergency Department Workflow Using Radio Frequency Identification Device (RFID) Data Analytics
Emergency Department (ED) is a complex care delivery environment in a hospital that provides time sensitive urgent and lifesaving care [1]. Emergency medicine is an unscheduled pra...
Consistent Calibration of VIRR Reflective Solar Channels Onboard FY-3A, FY-3B, and FY-3C Using a Multisite Calibration Method
Consistent Calibration of VIRR Reflective Solar Channels Onboard FY-3A, FY-3B, and FY-3C Using a Multisite Calibration Method
The FengYun-3 (FY-3) Visible Infrared Radiometer (VIRR), along with its predecessor, the Multispectral Visible Infrared Scanning Radiometer (MVISR), onboard the FY-1C and FY-1D, ha...

