Oxide–and silicate–water interfaces and their roles in technology and the environment

JL Bañuelos, E Borguet, GE Brown Jr… - Chemical …, 2023 - ACS Publications
Interfacial reactions drive all elemental cycling on Earth and play pivotal roles in human
activities such as agriculture, water purification, energy production and storage …

Schwertmannite: A review of its occurrence, formation, structure, stability and interactions with oxyanions

VA Schoepfer, ED Burton - Earth-Science Reviews, 2021 - Elsevier
In this article, we provide a critical review on the occurrence, formation, structure and stability
of schwertmannite–an enigmatic Fe (III) oxyhydroxy-sulfate mineral that is of widespread …

Phosphorus recovery from wastewater and sewage sludge as vivianite

J Zhang, Z Chen, Y Liu, W Wei, BJ Ni - Journal of Cleaner Production, 2022 - Elsevier
Develo** feasible techniques to recover phosphorous (P) from wastewater and sewage
sludge is urgent work to meet the huge demand for P resources and wastewater/sludge …

Arsenic-imposed effects on schwertmannite and jarosite formation in acid mine drainage and coupled impacts on arsenic mobility

ED Burton, N Karimian, SG Johnston… - ACS Earth and Space …, 2021 - ACS Publications
This study explores interactions between As and Fe (III) minerals, predominantly
schwertmannite and jarosite, in acid mine drainage (AMD) via observations at a former mine …

Anaerobic syntrophic system composed of phosphate solubilizing bacteria and dissimilatory iron reducing bacteria induces cadmium immobilization via secondary …

X Zhao, Z Teng, G Wang, W Luo, Y Guo, X Ji… - Journal of Hazardous …, 2023 - Elsevier
Secondary mineralization is a promising method for remediating cadmium (Cd) pollution in
sediments, but the poor stability of Cd-containing secondary minerals is a bottleneck that …

[HTML][HTML] Mineral transformation and dissolution of jarosite coprecipitated with hazardous oxyanions and their mobility changes

JG Ryu, Y Kim - Journal of Hazardous Materials, 2022 - Elsevier
Jarosite coprecipitation with hazardous oxyanions can attenuate the concentrations of these
elements in acid mine drainage. However, jarosite can be easily transformed to goethite with …

Microbial reduction of schwertmannite by co-cultured iron-and sulfate-reducing bacteria

C Ke, C Guo, S Zhang, Y Deng, X Li, Y Li, G Lu… - Science of The Total …, 2023 - Elsevier
Schwertmannite (Sch) is an iron-hydroxysulfate mineral commonly found in acid mine
drainage contaminated environment. The transformation mechanism of Sch mediated by …

Effects of Fe (III) oxide mineralogy and phosphate on Fe (II) secondary mineral formation during microbial iron reduction

EJ O'loughlin, MI Boyanov, CA Gorski, MM Scherer… - Minerals, 2021 - mdpi.com
The bioreduction of Fe (III) oxides by dissimilatory iron-reducing bacteria may result in the
formation of a suite of Fe (II)-bearing secondary minerals, including magnetite (a mixed Fe …

Biosynthesis of vivianite from microbial extracellular electron transfer and environmental application

Q Yuan, S Wang, X Wang, N Li - Science of The Total Environment, 2021 - Elsevier
Abstract Vivianite (Fe 3 (PO 4) 2· 8H 2 O) is a common hydrous ferrous phosphate mineral
which often occurs in reductive conditions, especially anoxic non-sulfide environment …

[HTML][HTML] Past, present and future global influence and technological applications of iron-bearing metastable nanominerals

MA Caraballo, MP Asta, JPH Perez, MF Hochella Jr - Gondwana Research, 2022 - Elsevier
Iron-bearing nanominerals such as ferrihydrite, schwertmannite, and green rust behave as
metastable precursors leading to the formation of more thermodynamically stable iron …