Arsenic (As) and antimony (Sb) speciation and mobility in river systems can be influenced by the redox conditions of benthic and hyporheic zone sediments. However, our understanding of how temperature fluctuations influence riverine As and Sb mobility over diel and seasonal timeframes, via moderation of sediment redox conditions, is poorly constrained. Here, we compare diel and seasonal water quality data from a river system contaminated with As and Sb with results from sediment-water incubations conducted at temperatures spanning 8 to 32oC under low-dissolved oxygen conditions. Higher incubation temperatures caused faster microbial respiration, lower redox potential and greater Asaq concentrations, coincident with reduction of As(V), Mn(III/IV), Fe(III) and SO42-. Initial rates of As3+aq formation increased exponentially with temperature (Q10=3.3+0.5) and were positively correlated with microbial respiration (r2=0.99, P<0.01). In contrast, Sbaq displayed an initially negative and comparatively weak overall temperature dependence during incubations. In river waters, diel mobilisation of reduced species (As3+aq, Fe2+aq) and contrasting attenuation of Sb was coincident with lower redox potential during nightly respiration cycles. Distinct seasonal oscillations in river water Asaq were exponentially correlated with temperature (r2=0.68, P<0.01), whereas Sbaq was not. These characteristics reflect the fundamental role of anaerobic metabolism (as influenced by temperature) within benthic and hyporheic zone sediments as a key driver of contrasting riverine As and Sb mobility. The findings imply that riverine As mobility may be enhanced, while Sb mobility possibly attenuated, by eutrophication or by elevated stream temperatures due to a warming climate.
Journal article
Seasonal temperature oscillations drive contrasting Arsenic and Antimony mobilisation in a mining‐impacted river system
Water Resources Research, Vol.56(10)
10/06/2020
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Abstract
Details
- Title
- Seasonal temperature oscillations drive contrasting Arsenic and Antimony mobilisation in a mining‐impacted river system
- Creators
- Scott G Johnston (Corresponding Author) - Southern Cross UniversityNiloofar Karimian - Southern Cross UniversityEd D Burton - Southern Cross University
- Publication Details
- Water Resources Research, Vol.56(10)
- Publisher
- Wiley
- Identifiers
- 991012888600202368
- Academic Unit
- Faculty of Science and Engineering; National Centre for Flood Research; Science; Southern Cross GeoScience
- Language
- English
- Resource Type
- Journal article