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Production of Hydroxyl Radicals from Oxygenation of Simulated Acid Mine Drainage in Presence of Extracellular Polymers Substances
by
Zhu, Jian
, Wu, Pan
, Zhong, Xuewen
, Fan, Feifei
, Liu, Fang
in
Acid mine drainage
/ Calcium carbonate
/ Extracellular polymers
/ Free radicals
/ Hydroxyl groups
/ Hydroxyl radicals
/ Iron
/ Microorganisms
/ Mine drainage
/ Oxidation
/ Oxygenation
/ pH effects
/ Polymers
/ Reaction mechanisms
2022
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Production of Hydroxyl Radicals from Oxygenation of Simulated Acid Mine Drainage in Presence of Extracellular Polymers Substances
by
Zhu, Jian
, Wu, Pan
, Zhong, Xuewen
, Fan, Feifei
, Liu, Fang
in
Acid mine drainage
/ Calcium carbonate
/ Extracellular polymers
/ Free radicals
/ Hydroxyl groups
/ Hydroxyl radicals
/ Iron
/ Microorganisms
/ Mine drainage
/ Oxidation
/ Oxygenation
/ pH effects
/ Polymers
/ Reaction mechanisms
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Production of Hydroxyl Radicals from Oxygenation of Simulated Acid Mine Drainage in Presence of Extracellular Polymers Substances
by
Zhu, Jian
, Wu, Pan
, Zhong, Xuewen
, Fan, Feifei
, Liu, Fang
in
Acid mine drainage
/ Calcium carbonate
/ Extracellular polymers
/ Free radicals
/ Hydroxyl groups
/ Hydroxyl radicals
/ Iron
/ Microorganisms
/ Mine drainage
/ Oxidation
/ Oxygenation
/ pH effects
/ Polymers
/ Reaction mechanisms
2022
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Production of Hydroxyl Radicals from Oxygenation of Simulated Acid Mine Drainage in Presence of Extracellular Polymers Substances
Journal Article
Production of Hydroxyl Radicals from Oxygenation of Simulated Acid Mine Drainage in Presence of Extracellular Polymers Substances
2022
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Overview
The reaction mechanisms Fe(II) abiotic oxidation produce ·OH by CaCO3-induced in acid mine drainage (AMD) are well-documented, but little is known about the influence of extracellular polymeric substances (EPS) secreted by microorganisms on Fe(II) oxidation in AMD. In this study, ·OH production was experimently measured from oxygenation of simulated AMD in the presence of EPS. The cumulative ·OH increased from 56.75 to 158.70 µM within 24 h at pH 3 with the increase in EPS concentration from 0 to 12 mg/L. An appropriate pH (about 6) and EPS (6 mg/L) concentration were required for the moderate rate of Fe(II) oxidation. Besides, the yield of ·OH increased remarkably with the addition of Fe3+. In the presence of EPS, ·OH production is attributed mainly the complexation of Fe(II) with EPS, of which is rich of carboxyl and hydroxyl groups. The findings provide fundamental supplement of ·OH production from Fe(II) oxidation by microorganisms in natural AMD.
Publisher
Springer Nature B.V
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