86
Views
31
CrossRef citations to date
0
Altmetric
Research

Correlation of X-ray Fluorescence Spectrometry And Inductively Coupled Plasma Atomic Emission Spectroscopy for Elemental Determination In Composted Products

, , , , , , & show all
Pages 79-82 | Published online: 23 Jul 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (1)

Amanda McWhirt, David C. Weindorf & Yuanda Zhu. (2012) Rapid Analysis of Elemental Concentrations in Compost Via Portable X-ray Fluorescence Spectrometry. Compost Science & Utilization 20:3, pages 185-193.
Read now

Articles from other publishers (30)

Shubin Zhou, Qiuming Cheng, David C. Weindorf, Biying Yang, Zhaoxian Yuan & Jie Yang. (2022) Determination of trace element concentrations in organic materials of “intermediate-thickness” via portable X-ray fluorescence spectrometry . Journal of Analytical Atomic Spectrometry 37:11, pages 2461-2469.
Crossref
Alice Kohli, René Guénon, Liliane Jean-Soro & Laure Vidal-Beaudet. (2022) Home and community composts in Nantes city (France): quality and safety regarding trace metals and metalloids. Environmental Monitoring and Assessment 194:9.
Crossref
Rafael López-Núñez. (2022) Portable X-ray Fluorescence Analysis of Organic Amendments: A Review. Applied Sciences 12:14, pages 6944.
Crossref
Michael Horf, Robin Gebbers, Sebastian Vogel, Markus Ostermann, Max-Frederik Piepel & Hans-Werner Olfs. (2021) Determination of Nutrients in Liquid Manures and Biogas Digestates by Portable Energy-Dispersive X-ray Fluorescence Spectrometry. Sensors 21:11, pages 3892.
Crossref
Shubin Zhou, David C. Weindorf, Qiuming Cheng, Biying Yang, Zhaoxian Yuan & Somsubhra Chakraborty. (2020) Elemental assessment of vegetation via portable X-ray fluorescence: Sample preparation and methodological considerations. Spectrochimica Acta Part B: Atomic Spectroscopy 174, pages 105999.
Crossref
David C. Weindorf & Somsubhra Chakraborty. (2020) Portable X‐ray fluorescence spectrometry analysis of soils. Soil Science Society of America Journal 84:5, pages 1384-1392.
Crossref
Rafael López-Núñez, Fátima Ajmal-Poley & Pilar Burgos-Doménech. (2020) Prediction of As, Cd, Cr, Hg, Ni, and Se Concentrations in Organic Amendments Using Portable X-ray Fluorescence and Multivariate Modeling. Applied Sciences 10:17, pages 5726.
Crossref
Carly A Hoffmann, Jhones O Sarturi, David C Weindorf, Darren D Henry, Hugo A Ramirez- Ramirez, Samuel Jackson, Michael A Ballou, Michael D Sandes & Legrand Bouyi. (2020) The use of portable X-ray fluorescence spectrometry to measure apparent total tract digestibility in beef cattle and sheep. Journal of Animal Science 98:3.
Crossref
Yadav Sapkota, Brandon Lee Drake, Louis M. McDonald, Thomas C. Griggs & Thomas J. Basden. (2020) Elemental composition and moisture prediction in manure by portable X‐ray fluorescence spectroscopy using random forest regression. Journal of Environmental Quality 49:2, pages 472-482.
Crossref
Yujian Yang, Xueqin Tong & Yingpeng Zhang. (2020) Spatial Variability of Soil Properties and Portable X-Ray Fluorescence-quantified Elements of typical Golf Courses Soils. Scientific Reports 10:1.
Crossref
Rafael López-Núñez, Fátima Ajmal-Poley, José A. González-Pérez, Miguel Angel Bello-López & Pilar Burgos-Doménech. (2019) Quick Analysis of Organic Amendments via Portable X-ray Fluorescence Spectrometry. International Journal of Environmental Research and Public Health 16:22, pages 4317.
Crossref
Jouni Havukainen, Jaana Hiltunen, Liisa Puro & Mika Horttanainen. (2019) Applicability of a field portable X-ray fluorescence for analyzing elemental concentration of waste samples. Waste Management 83, pages 6-13.
Crossref
Prahlad Jat & Marc L. Serre. (2018) A novel geostatistical approach combining Euclidean and gradual-flow covariance models to estimate fecal coliform along the Haw and Deep rivers in North Carolina. Stochastic Environmental Research and Risk Assessment 32:9, pages 2537-2549.
Crossref
Raj K. Jat, Parvinder Singh, Mangi L. Jat, Mahendra Dia, Harminder S. Sidhu, Shankar L. Jat, Deepak Bijarniya, Hanuman S. Jat, Chhiter M. Parihar, Uttam Kumar & Santiago L. Ridaura. (2018) Heat stress and yield stability of wheat genotypes under different sowing dates across agro-ecosystems in India. Field Crops Research 218, pages 33-50.
Crossref
Mahendra Dia, Todd C. Wehner, Gary W. Elmstrom, August Gabert, James E. Motes, Jack E. Staub, Greg E. Tolla & Irvin E. Widders. (2018) Genotype X Environment Interaction for Yield of Pickling Cucumber in 24 U.S. Environments. Open Agriculture 3:1, pages 1-16.
Crossref
Saroj Devi, Charu Gupta, Shankar Lal Jat & M.S. Parmar. (2017) Crop residue recycling for economic and environmental sustainability: The case of India. Open Agriculture 2:1, pages 486-494.
Crossref
Bogdan M. Duda, David C. Weindorf, Somsubhra Chakraborty, Bin Li, Titus Man, Laura Paulette & Shovik Deb. (2017) Soil characterization across catenas via advanced proximal sensors. Geoderma 298, pages 78-91.
Crossref
Valeria Cardelli, David C. Weindorf, Somsubhra Chakraborty, Bin Li, Mauro De Feudis, Stefania Cocco, Alberto Agnelli, Ashok Choudhury, Deb Prasad Ray & Giuseppe Corti. (2017) Non-saturated soil organic horizon characterization via advanced proximal sensors. Geoderma 288, pages 130-142.
Crossref
Mangi Lal Jat, Raj Kumar Jat, Parvinder Singh, Shankar Lal Jat, Harminder Singh Sidhu, Hanuman Sahay Jat, Deepak Bijarniya, Chiter Mal Parihar & Raj Gupta. (2017) Predicting Yield and Stability Analysis of Wheat under Different Crop Management Systems across Agro-Ecosystems in India. American Journal of Plant Sciences 08:08, pages 1977-2012.
Crossref
Mahendra Dia, Todd C. Wehner & Consuelo Arellano. (2017) RGxE: An R Program for Genotype x Environment Interaction Analysis. American Journal of Plant Sciences 08:07, pages 1672-1698.
Crossref
S.M. O'Rourke, U. Stockmann, N.M. Holden, A.B. McBratney & B. Minasny. (2016) An assessment of model averaging to improve predictive power of portable vis-NIR and XRF for the determination of agronomic soil properties. Geoderma 279, pages 31-44.
Crossref
Sérgio Silva, Giovana Poggere, Michele Menezes, Geila Carvalho, Luiz Guilherme & Nilton Curi. (2016) Proximal Sensing and Digital Terrain Models Applied to Digital Soil Mapping and Modeling of Brazilian Latosols (Oxisols). Remote Sensing 8:8, pages 614.
Crossref
U. Stockmann, S.R. Cattle, B. Minasny & Alex B. McBratney. (2016) Utilizing portable X-ray fluorescence spectrometry for in-field investigation of pedogenesis. CATENA 139, pages 220-231.
Crossref
Eric C. Brevik, Costanza Calzolari, Bradley A. Miller, Paulo Pereira, Cezary Kabala, Andreas Baumgarten & Antonio Jordán. (2016) Soil mapping, classification, and pedologic modeling: History and future directions. Geoderma 264, pages 256-274.
Crossref
A. Horta, B. Malone, U. Stockmann, B. Minasny, T.F.A. Bishop, A.B. McBratney, R. Pallasser & L. Pozza. (2015) Potential of integrated field spectroscopy and spatial analysis for enhanced assessment of soil contamination: A prospective review. Geoderma 241-242, pages 180-209.
Crossref
Hai Lin & Jian Cheng Kang. (2014) The Rapid Detecting Technology on Heavy Metal Pollution in Soil. Advanced Materials Research 1073-1076, pages 648-652.
Crossref
David C. Weindorf, Noura Bakr & Yuanda Zhu. 2014. 1 45 .
Yuanda Zhu, David C. Weindorf & Wentai Zhang. (2011) Characterizing soils using a portable X-ray fluorescence spectrometer: 1. Soil texture. Geoderma 167-168, pages 167-177.
Crossref
David C. Weindorf, Yuanda Zhu, Ray Ferrell, Nelson Rolong, Tom Barnett, B. L. Allen, Juan Herrero & Wayne Hudnall. (2009) Evaluation of Portable X-ray Fluorescence for Gypsum Quantification in Soils. Soil Science 174:10, pages 556-562.
Crossref
Yuanda Zhu & David C. Weindorf. (2009) Determination of Soil Calcium Using Field Portable X-Ray Fluorescence. Soil Science 174:3, pages 151-155.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.