Articles citing this paper
Salinity-induced acidification in a wetland sediment through the displacement of clay-bound iron(II)
Annaleise R. Klein A , Darren S. Baldwin B , Balwant Singh C and Ewen J. Silvester A D
+ Author Affiliations
- Author Affiliations
A Department of Environmental Management and Ecology (DEME), La Trobe University, Albury-Wodonga Campus, VIC 3690, Australia.
B Murray–Darling Freshwater Research Centre (MDFRC), CSIRO Land and Water, La Trobe University, Albury-Wodonga Campus, VIC 3690, Australia.
C Faculty of Agriculture, Food and Natural Resources, The University of Sydney, NSW 2006, Australia.
D Corresponding author. Email: e.silvester@latrobe.edu.au
Environmental Chemistry 7(5) 413-421 https://doi.org/10.1071/EN10057
Submitted: 31 May 2010 Accepted: 4 August 2010 Published: 13 October 2010
13 articles found in Crossref database.
The occurrence of inland acid sulphate soils in the floodplain wetlands of the Murray–Darling Basin, Australia, identified using a simplified incubation method
Creeper N.,
Fitzpatrick R., Shand P.
Soil Use and Management. 2013 29(1). p.130
The influence of redox potential on phosphorus release from sediments in different water bodies
Ye Lijihong,
Xiao Yao,
Qin Jie,
Tang Jinyong,
Yin Yuepeng, Zhang Wen
Marine Pollution Bulletin. 2024 207 p.116909
On–Off Mobilization of Contaminants in Soils during Redox Oscillations
Couture Raoul-Marie,
Charlet Laurent,
Markelova Ekaterina,
Madé Benoı̂t, Parsons Christopher T.
Environmental Science & Technology. 2015 49(5). p.3015
Implementation of Ion Exchange Processes for Carbon Dioxide Mineralization Using Industrial Waste Streams
Bustillos Steven,
Alturki Abdulaziz,
Prentice Dale,
La Plante Erika Callagon,
Rogers Mitchell,
Keller Mark,
Ragipani Raghavendra,
Wang Bu,
Sant Gaurav, Simonetti Dante A.
Frontiers in Energy Research. 2020 8
Acidification and Buffering Mechanisms in Acid Sulfate Soil Wetlands of the Murray-Darling Basin, Australia
Glover Fiona,
Whitworth Kerry L.,
Kappen Peter,
Baldwin Darren S.,
Rees Gavin N.,
Webb John A., Silvester Ewen
Environmental Science & Technology. 2011 45(7). p.2591
Sediment phosphorus speciation and mobility under dynamic redox conditions
Parsons Chris T.,
Rezanezhad Fereidoun,
O'Connell David W., Van Cappellen Philippe
Biogeosciences. 2017 14(14). p.3585
Seawater flooding of calcareous soils: Implications for trace and alkaline metals mobility
Hailegnaw Niguss Solomon,
Bayabil Haimanote K.,
Li Yuncong C., Gao Bin
Science of The Total Environment. 2024 927 p.172210
Impact of sulfate pollution on anaerobic biogeochemical cycles in a wetland sediment
Baldwin Darren S., Mitchell Alison
Water Research. 2012 46(4). p.965
Process Simulations Reveal the Carbon Dioxide Removal Potential of a Process That Mineralizes Industrial Waste Streams via an Ion Exchange-Based Regenerable pH Swing
Bustillos Steven,
Prentice Dale,
La Plante Erika Callagon,
Wang Bu,
Sant Gaurav, Simonetti Dante
ACS Sustainable Chemistry & Engineering. 2022 10(19). p.6255
The effect of temperature on sulfate release from Pearl River sediments in South China
Zhu Dantong,
Cheng Xiangju,
Sample David J., Yazdi Mohammad Nayeb
Science of The Total Environment. 2019 688 p.1112
Seawater inundation of coastal floodplain sediments: Short-term changes in surface water and sediment geochemistry
Wong Vanessa N.L.,
Johnston Scott G.,
Burton Edward D.,
Hirst Phillip,
Sullivan Leigh A.,
Bush Richard T., Blackford Mark
Chemical Geology. 2015 398 p.32
Alkalinity capture during microbial sulfate reduction and implications for the acidification of inland aquatic ecosystems
Whitworth Kerry L.,
Silvester Ewen, Baldwin Darren S.
Geochimica et Cosmochimica Acta. 2014 130 p.113
Chemical regulation of alpine headwater streams during a storm event (Bogong High Plains, Victoria, Australia)
Karis Terry,
Silvester Ewen, Rees Gavin
Journal of Hydrology. 2016 542 p.317