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Correlation Between Fe/S/As Speciation Transformation and Depth Distribution of Acidithiobacillus ferrooxidans and Acidiphilium acidophilum in Simulated Acidic Water Column

It is well known that speciation transformations of As(III) vs. As(V) in acid mine drainage (AMD) are mainly driven by microbially mediated redox reactions of Fe and S. However, these processes are rarely investigated. In this study, columns containing mine water were inoculated with two typical aci...

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Autores principales: Zhou, Yu-hang, Wang, Can, Liu, Hong-chang, Xue, Zhen, Nie, Zhen-yuan, Liu, Yue, Wan, Jiao-li, Yang, Yu, Shu, Wen-sheng, Xia, Jin-lan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8863614/
https://www.ncbi.nlm.nih.gov/pubmed/35222314
http://dx.doi.org/10.3389/fmicb.2021.819804
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author Zhou, Yu-hang
Wang, Can
Liu, Hong-chang
Xue, Zhen
Nie, Zhen-yuan
Liu, Yue
Wan, Jiao-li
Yang, Yu
Shu, Wen-sheng
Xia, Jin-lan
author_facet Zhou, Yu-hang
Wang, Can
Liu, Hong-chang
Xue, Zhen
Nie, Zhen-yuan
Liu, Yue
Wan, Jiao-li
Yang, Yu
Shu, Wen-sheng
Xia, Jin-lan
author_sort Zhou, Yu-hang
collection PubMed
description It is well known that speciation transformations of As(III) vs. As(V) in acid mine drainage (AMD) are mainly driven by microbially mediated redox reactions of Fe and S. However, these processes are rarely investigated. In this study, columns containing mine water were inoculated with two typical acidophilic Fe/S-oxidizing/reducing bacteria [the chemoautotrophic Acidithiobacillus (At.) ferrooxidans and the heterotrophic Acidiphilium (Aph.) acidophilum], and three typical energy substrates (Fe(2+), S(0), and glucose) and two concentrations of As(III) (2.0 and 4.5 mM) were added. The correlation between Fe/S/As speciation transformation and bacterial depth distribution at three different depths, i.e., 15, 55, and 105 cm from the top of the columns, was comparatively investigated. The results show that the cell growth at the top and in the middle of the columns was much more significantly inhibited by the additions of As(III) than at the bottom, where the cell growth was promoted even on days 24–44. At. ferrooxidans dominated over Aph. acidophilum in most samples collected from the three depths, but the elevated proportions of Aph. acidophilum were observed in the top and bottom column samples when 4.5 mM As(III) was added. Fe(2+) bio-oxidation and Fe(3+) reduction coupled to As(III) oxidation occurred for all three column depths. At the column top surfaces, jarosites were formed, and the addition of As(III) could lead to the formation of the amorphous FeAsO(4)⋅2H(2)O. Furthermore, the higher As(III) concentration could inhibit Fe(2+) bio-oxidation and the formation of FeAsO(4)⋅2H(2)O and jarosites. S oxidation coupled to Fe(3+) reduction occurred at the bottom of the columns, with the formations of FeAsO(4)⋅2H(2)O precipitate and S intermediates. The formed FeAsO(4)⋅2H(2)O and jarosites at the top and bottom of the columns could adsorb to and coprecipitate with As(III) and As(V), resulting in the transfer of As from solution to solid phases, thus further affecting As speciation transformation. The distribution difference of Fe/S energy substrates could apparently affect Fe/S/As speciation transformation and bacterial depth distribution between the top and bottom of the water columns. These findings are valuable for elucidating As fate and toxicity mediated by microbially driven Fe/S redox in AMD environments.
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spelling pubmed-88636142022-02-24 Correlation Between Fe/S/As Speciation Transformation and Depth Distribution of Acidithiobacillus ferrooxidans and Acidiphilium acidophilum in Simulated Acidic Water Column Zhou, Yu-hang Wang, Can Liu, Hong-chang Xue, Zhen Nie, Zhen-yuan Liu, Yue Wan, Jiao-li Yang, Yu Shu, Wen-sheng Xia, Jin-lan Front Microbiol Microbiology It is well known that speciation transformations of As(III) vs. As(V) in acid mine drainage (AMD) are mainly driven by microbially mediated redox reactions of Fe and S. However, these processes are rarely investigated. In this study, columns containing mine water were inoculated with two typical acidophilic Fe/S-oxidizing/reducing bacteria [the chemoautotrophic Acidithiobacillus (At.) ferrooxidans and the heterotrophic Acidiphilium (Aph.) acidophilum], and three typical energy substrates (Fe(2+), S(0), and glucose) and two concentrations of As(III) (2.0 and 4.5 mM) were added. The correlation between Fe/S/As speciation transformation and bacterial depth distribution at three different depths, i.e., 15, 55, and 105 cm from the top of the columns, was comparatively investigated. The results show that the cell growth at the top and in the middle of the columns was much more significantly inhibited by the additions of As(III) than at the bottom, where the cell growth was promoted even on days 24–44. At. ferrooxidans dominated over Aph. acidophilum in most samples collected from the three depths, but the elevated proportions of Aph. acidophilum were observed in the top and bottom column samples when 4.5 mM As(III) was added. Fe(2+) bio-oxidation and Fe(3+) reduction coupled to As(III) oxidation occurred for all three column depths. At the column top surfaces, jarosites were formed, and the addition of As(III) could lead to the formation of the amorphous FeAsO(4)⋅2H(2)O. Furthermore, the higher As(III) concentration could inhibit Fe(2+) bio-oxidation and the formation of FeAsO(4)⋅2H(2)O and jarosites. S oxidation coupled to Fe(3+) reduction occurred at the bottom of the columns, with the formations of FeAsO(4)⋅2H(2)O precipitate and S intermediates. The formed FeAsO(4)⋅2H(2)O and jarosites at the top and bottom of the columns could adsorb to and coprecipitate with As(III) and As(V), resulting in the transfer of As from solution to solid phases, thus further affecting As speciation transformation. The distribution difference of Fe/S energy substrates could apparently affect Fe/S/As speciation transformation and bacterial depth distribution between the top and bottom of the water columns. These findings are valuable for elucidating As fate and toxicity mediated by microbially driven Fe/S redox in AMD environments. Frontiers Media S.A. 2022-02-09 /pmc/articles/PMC8863614/ /pubmed/35222314 http://dx.doi.org/10.3389/fmicb.2021.819804 Text en Copyright © 2022 Zhou, Wang, Liu, Xue, Nie, Liu, Wan, Yang, Shu and Xia. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Zhou, Yu-hang
Wang, Can
Liu, Hong-chang
Xue, Zhen
Nie, Zhen-yuan
Liu, Yue
Wan, Jiao-li
Yang, Yu
Shu, Wen-sheng
Xia, Jin-lan
Correlation Between Fe/S/As Speciation Transformation and Depth Distribution of Acidithiobacillus ferrooxidans and Acidiphilium acidophilum in Simulated Acidic Water Column
title Correlation Between Fe/S/As Speciation Transformation and Depth Distribution of Acidithiobacillus ferrooxidans and Acidiphilium acidophilum in Simulated Acidic Water Column
title_full Correlation Between Fe/S/As Speciation Transformation and Depth Distribution of Acidithiobacillus ferrooxidans and Acidiphilium acidophilum in Simulated Acidic Water Column
title_fullStr Correlation Between Fe/S/As Speciation Transformation and Depth Distribution of Acidithiobacillus ferrooxidans and Acidiphilium acidophilum in Simulated Acidic Water Column
title_full_unstemmed Correlation Between Fe/S/As Speciation Transformation and Depth Distribution of Acidithiobacillus ferrooxidans and Acidiphilium acidophilum in Simulated Acidic Water Column
title_short Correlation Between Fe/S/As Speciation Transformation and Depth Distribution of Acidithiobacillus ferrooxidans and Acidiphilium acidophilum in Simulated Acidic Water Column
title_sort correlation between fe/s/as speciation transformation and depth distribution of acidithiobacillus ferrooxidans and acidiphilium acidophilum in simulated acidic water column
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8863614/
https://www.ncbi.nlm.nih.gov/pubmed/35222314
http://dx.doi.org/10.3389/fmicb.2021.819804
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