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Nanoscale heterogeneity of arsenic and selenium species in coal fly ash particles: analysis using enhanced spectroscopic imaging and speciation techniques

Coal combustion byproducts are known to be enriched in arsenic (As) and selenium (Se). This enrichment is a concern during the handling, disposal, and reuse of the ash as both elements can be harmful to wildlife and humans if mobilized into water and soils. The leaching potential and bioaccessibilit...

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Autores principales: Rivera, Nelson A., Ling, Florence T., Jin, Zehao, Pattammattel, Ajith, Yan, Hanfei, Chu, Yong S., Peters, Catherine A., Hsu-Kim, Heileen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10339362/
https://www.ncbi.nlm.nih.gov/pubmed/37457049
http://dx.doi.org/10.1039/d2en01056a
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author Rivera, Nelson A.
Ling, Florence T.
Jin, Zehao
Pattammattel, Ajith
Yan, Hanfei
Chu, Yong S.
Peters, Catherine A.
Hsu-Kim, Heileen
author_facet Rivera, Nelson A.
Ling, Florence T.
Jin, Zehao
Pattammattel, Ajith
Yan, Hanfei
Chu, Yong S.
Peters, Catherine A.
Hsu-Kim, Heileen
author_sort Rivera, Nelson A.
collection PubMed
description Coal combustion byproducts are known to be enriched in arsenic (As) and selenium (Se). This enrichment is a concern during the handling, disposal, and reuse of the ash as both elements can be harmful to wildlife and humans if mobilized into water and soils. The leaching potential and bioaccessibility of As and Se in coal fly ash depends on the chemical forms of these elements and their association with the large variety of particles that comprise coal fly ash. The overall goal of this research was to determine nanoscale and microscale solid phase mineral associations and oxidation states of As and Se in fly ash. We utilized nanoscale 2D imaging (30–50 nm spot size) with the Hard X-ray Nanoprobe (HXN) in combination with microprobe X-ray capabilities (∼5 μm resolution) to determine the As and Se elemental associations. Speciation of As and Se was also measured at the nano- to microscale with X-ray absorption spectroscopy. The enhanced resolution of HXN showed As and Se as either diffusely located around or comingled with Ca- and Fe-rich particles. The results also showed nanoparticles of Se attached to the surface of fly ash grains. Overall, a comparison of As and Se species across scales highlights the heterogeneity and complexity of chemical associations for these trace elements of concern in coal fly ash.
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spelling pubmed-103393622023-07-14 Nanoscale heterogeneity of arsenic and selenium species in coal fly ash particles: analysis using enhanced spectroscopic imaging and speciation techniques Rivera, Nelson A. Ling, Florence T. Jin, Zehao Pattammattel, Ajith Yan, Hanfei Chu, Yong S. Peters, Catherine A. Hsu-Kim, Heileen Environ Sci Nano Chemistry Coal combustion byproducts are known to be enriched in arsenic (As) and selenium (Se). This enrichment is a concern during the handling, disposal, and reuse of the ash as both elements can be harmful to wildlife and humans if mobilized into water and soils. The leaching potential and bioaccessibility of As and Se in coal fly ash depends on the chemical forms of these elements and their association with the large variety of particles that comprise coal fly ash. The overall goal of this research was to determine nanoscale and microscale solid phase mineral associations and oxidation states of As and Se in fly ash. We utilized nanoscale 2D imaging (30–50 nm spot size) with the Hard X-ray Nanoprobe (HXN) in combination with microprobe X-ray capabilities (∼5 μm resolution) to determine the As and Se elemental associations. Speciation of As and Se was also measured at the nano- to microscale with X-ray absorption spectroscopy. The enhanced resolution of HXN showed As and Se as either diffusely located around or comingled with Ca- and Fe-rich particles. The results also showed nanoparticles of Se attached to the surface of fly ash grains. Overall, a comparison of As and Se species across scales highlights the heterogeneity and complexity of chemical associations for these trace elements of concern in coal fly ash. The Royal Society of Chemistry 2023-05-24 /pmc/articles/PMC10339362/ /pubmed/37457049 http://dx.doi.org/10.1039/d2en01056a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Rivera, Nelson A.
Ling, Florence T.
Jin, Zehao
Pattammattel, Ajith
Yan, Hanfei
Chu, Yong S.
Peters, Catherine A.
Hsu-Kim, Heileen
Nanoscale heterogeneity of arsenic and selenium species in coal fly ash particles: analysis using enhanced spectroscopic imaging and speciation techniques
title Nanoscale heterogeneity of arsenic and selenium species in coal fly ash particles: analysis using enhanced spectroscopic imaging and speciation techniques
title_full Nanoscale heterogeneity of arsenic and selenium species in coal fly ash particles: analysis using enhanced spectroscopic imaging and speciation techniques
title_fullStr Nanoscale heterogeneity of arsenic and selenium species in coal fly ash particles: analysis using enhanced spectroscopic imaging and speciation techniques
title_full_unstemmed Nanoscale heterogeneity of arsenic and selenium species in coal fly ash particles: analysis using enhanced spectroscopic imaging and speciation techniques
title_short Nanoscale heterogeneity of arsenic and selenium species in coal fly ash particles: analysis using enhanced spectroscopic imaging and speciation techniques
title_sort nanoscale heterogeneity of arsenic and selenium species in coal fly ash particles: analysis using enhanced spectroscopic imaging and speciation techniques
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10339362/
https://www.ncbi.nlm.nih.gov/pubmed/37457049
http://dx.doi.org/10.1039/d2en01056a
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