Coastal acid sulfate soils (CASS) are rich in meta-stable Fe(III) minerals that are important sorbents for arsenic under oxic conditions. Tidal seawater inundation to remediate CASS has recently been trailed on a large scale and has potential to moblise arsenic during the redox transition. Tidal seawater inundation caused reductive dissolution of As(V)-bearing Fe(III) minerals, resulting in elevated concentrations of Fe2+ (2000 mg L-1) and As (~400 μg L-1) in upper-intertidal zone groundwater. Oscillating vertical and horizontal hydraulic gradients caused by tidal pumping promoted upward advection of As and Fe2+-enriched groundwater within the intertidal zone. This led to flux of Asaq and Fe2+ aq to surface waters and the accumulation of As...
The effects of restoring marine tidal inundation to a severely degraded acid sulfate soil landscape ...
Iron sulfide oxidation in drained coastal lowland soils liberates acidity, Fe and SO4, and leads to ...
Arsenic concentration in groundwater throughout Cache Valley exceeds the drinking water limit. Previ...
Coastal Acid Sulfate Soils (CASS) are rich in meta-stable iron (Fe - III) minerals that are importan...
Tidal seawater inundation of coastal acid sulfate soils can generate Fe- and SO₄-reducing conditions...
Tidal seawater inundation of coastal acid sulfate soils can generate Fe- and SO4-reducing conditions...
A large-scale field trial indicates that tidal seawater inundation of coastal acid sulfate soils (CA...
Over 17 million ha of coastal lowlands contain acid sulfate soils (CASS). These soils are rich in me...
The accumulation and behavior of arsenic at the redox interface of Fe-rich sediments is strongly inf...
The drainage-induced oxidation of iron-sulfide minerals in acid-sulfate soils has adversely affected...
Inorganic arsenic has been widely used during the production cycle of fertilizers and pesticides and...
Tidal inundation is a new technique for remediating coastal acid sulfate soils (CASS). Here, we exam...
Sparks, Donald L.The impacts of sea level rise (SLR) on biogeochemical processes in contaminated soi...
The effects of restoring marine tidal inundation to a severely degraded acid sulfate soil landscape ...
Inorganic arsenic has been widely used during the production cycle of fertilizers and pesticides a...
The effects of restoring marine tidal inundation to a severely degraded acid sulfate soil landscape ...
Iron sulfide oxidation in drained coastal lowland soils liberates acidity, Fe and SO4, and leads to ...
Arsenic concentration in groundwater throughout Cache Valley exceeds the drinking water limit. Previ...
Coastal Acid Sulfate Soils (CASS) are rich in meta-stable iron (Fe - III) minerals that are importan...
Tidal seawater inundation of coastal acid sulfate soils can generate Fe- and SO₄-reducing conditions...
Tidal seawater inundation of coastal acid sulfate soils can generate Fe- and SO4-reducing conditions...
A large-scale field trial indicates that tidal seawater inundation of coastal acid sulfate soils (CA...
Over 17 million ha of coastal lowlands contain acid sulfate soils (CASS). These soils are rich in me...
The accumulation and behavior of arsenic at the redox interface of Fe-rich sediments is strongly inf...
The drainage-induced oxidation of iron-sulfide minerals in acid-sulfate soils has adversely affected...
Inorganic arsenic has been widely used during the production cycle of fertilizers and pesticides and...
Tidal inundation is a new technique for remediating coastal acid sulfate soils (CASS). Here, we exam...
Sparks, Donald L.The impacts of sea level rise (SLR) on biogeochemical processes in contaminated soi...
The effects of restoring marine tidal inundation to a severely degraded acid sulfate soil landscape ...
Inorganic arsenic has been widely used during the production cycle of fertilizers and pesticides a...
The effects of restoring marine tidal inundation to a severely degraded acid sulfate soil landscape ...
Iron sulfide oxidation in drained coastal lowland soils liberates acidity, Fe and SO4, and leads to ...
Arsenic concentration in groundwater throughout Cache Valley exceeds the drinking water limit. Previ...