Comparative Analysis and Evaluation of Handheld X-ray Fluorescence Spectrometry to Measure Silicon in Crop Plants

Rice, wheat and corn are the three most consumed crop foods worldwide and, as such, are important when considering future global food security. All three species are members of the Poaceae family and are silica accumulators. For those plants that accumulate silica, silica fertilisation is considered...

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发表在:Proceedings
Main Authors: Daniel Howell, Daniel Tan, Stanislav Ulitzka, Rosanne Quinnell
格式: 文件
语言:英语
出版: MDPI AG 2020-02-01
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在线阅读:https://www.mdpi.com/2504-3900/36/1/87
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author Daniel Howell
Daniel Tan
Stanislav Ulitzka
Rosanne Quinnell
author_facet Daniel Howell
Daniel Tan
Stanislav Ulitzka
Rosanne Quinnell
author_sort Daniel Howell
collection DOAJ
container_title Proceedings
description Rice, wheat and corn are the three most consumed crop foods worldwide and, as such, are important when considering future global food security. All three species are members of the Poaceae family and are silica accumulators. For those plants that accumulate silica, silica fertilisation is considered to improve plant health and alleviate abiotic and biotic stresses thereby lessening reliance on pesticides. Measuring the silicon (Si) content in soils and plants is useful for identifying Si-poor systems; however, traditional chemical digestion methods to measure Si are hazardous and time consuming. Advances in the sensitivity of handheld X-ray fluorescence spectrometers (hh-xrf) create new opportunities for rapid plant elemental analyses. We present a Si analysis of using two handheld X-ray fluorescence devices (SciAps X-300 and the Niton XL3t GOLDD+) compared with a traditional NaOH-digestion method. The SciAps was found to be more accurate than the Niton and the average time taken to analyse Si using the SciAps was four seconds per sample. These data support the use of hh-xrf for rapid analysis of Si and indicate there are additional opportunities for future research to accurately quantify potassium and phosphorus using this technology.
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spelling doaj-art-e8cb4ab465194ceb96db2011fa5f09f32025-08-20T01:29:27ZengMDPI AGProceedings2504-39002020-02-013618710.3390/proceedings2019036087proceedings2019036087Comparative Analysis and Evaluation of Handheld X-ray Fluorescence Spectrometry to Measure Silicon in Crop PlantsDaniel Howell0Daniel Tan1Stanislav Ulitzka2Rosanne Quinnell3School of Life and Environmental Sciences, Faculty of Science, The University of Sydney, Camperdown 2006, AustraliaSchool of Life and Environmental Sciences, Faculty of Science, The University of Sydney, Camperdown 2006, AustraliaAXT Pty Ltd—Materials Australia, Warriewood 2101, AustraliaSchool of Life and Environmental Sciences, Faculty of Science, The University of Sydney, Camperdown 2006, AustraliaRice, wheat and corn are the three most consumed crop foods worldwide and, as such, are important when considering future global food security. All three species are members of the Poaceae family and are silica accumulators. For those plants that accumulate silica, silica fertilisation is considered to improve plant health and alleviate abiotic and biotic stresses thereby lessening reliance on pesticides. Measuring the silicon (Si) content in soils and plants is useful for identifying Si-poor systems; however, traditional chemical digestion methods to measure Si are hazardous and time consuming. Advances in the sensitivity of handheld X-ray fluorescence spectrometers (hh-xrf) create new opportunities for rapid plant elemental analyses. We present a Si analysis of using two handheld X-ray fluorescence devices (SciAps X-300 and the Niton XL3t GOLDD+) compared with a traditional NaOH-digestion method. The SciAps was found to be more accurate than the Niton and the average time taken to analyse Si using the SciAps was four seconds per sample. These data support the use of hh-xrf for rapid analysis of Si and indicate there are additional opportunities for future research to accurately quantify potassium and phosphorus using this technology.https://www.mdpi.com/2504-3900/36/1/87x-ray fluorescencehandheld devicesiliconcrop plantspoaceae
spellingShingle Daniel Howell
Daniel Tan
Stanislav Ulitzka
Rosanne Quinnell
Comparative Analysis and Evaluation of Handheld X-ray Fluorescence Spectrometry to Measure Silicon in Crop Plants
x-ray fluorescence
handheld device
silicon
crop plants
poaceae
title Comparative Analysis and Evaluation of Handheld X-ray Fluorescence Spectrometry to Measure Silicon in Crop Plants
title_full Comparative Analysis and Evaluation of Handheld X-ray Fluorescence Spectrometry to Measure Silicon in Crop Plants
title_fullStr Comparative Analysis and Evaluation of Handheld X-ray Fluorescence Spectrometry to Measure Silicon in Crop Plants
title_full_unstemmed Comparative Analysis and Evaluation of Handheld X-ray Fluorescence Spectrometry to Measure Silicon in Crop Plants
title_short Comparative Analysis and Evaluation of Handheld X-ray Fluorescence Spectrometry to Measure Silicon in Crop Plants
title_sort comparative analysis and evaluation of handheld x ray fluorescence spectrometry to measure silicon in crop plants
topic x-ray fluorescence
handheld device
silicon
crop plants
poaceae
url https://www.mdpi.com/2504-3900/36/1/87
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AT stanislavulitzka comparativeanalysisandevaluationofhandheldxrayfluorescencespectrometrytomeasuresiliconincropplants
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