Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/105362
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Type: Journal article
Title: Organic materials retain high proportion of protons, iron and aluminium from acid sulphate soil drainage water with little subsequent release
Author: Dang, T.
Mosley, L.
Fitzpatrick, R.
Marschner, P.
Citation: Environmental Science and Pollution Research, 2016; 23(23):23582-23592
Publisher: Springer
Issue Date: 2016
ISSN: 0944-1344
1614-7499
Statement of
Responsibility: 
Tan Dang, Luke M. Mosley, Rob Fitzpatrick, Petra Marschner
Abstract: When previously oxidised acid sulphate soils are leached, they can release large amounts of protons and metals, which threaten the surrounding environment. To minimise the impact of the acidic leachate, protons and metals have to be retained before the drainage water reaches surrounding waterways. One possible amelioration strategy is to pass drainage water through permeable reactive barriers. The suitability of organic materials for such barriers was tested. Eight organic materials including two plant residues, compost and five biochars differing in feedstock and production temperature were finely ground and filled into PVC cores at 3.5 g dry wt/core. Field-collected acidic drainage water (pH 3, Al 22 mg L⁻¹ and Fe 48 mg L⁻¹) was applied in six leaching events followed by six leaching events with reverse osmosis (RO) water (45 mL/event). Compost and biochars increased the leachate pH by up to 4.5 units and had a high retention capacity for metals. The metal and proton release during subsequent leaching with RO water was very small, cumulatively only 0.05-0.8 % of retained metals and protons. Retention was lower in the two plant residues, particularly wheat straw, which raised leachate pH by 2 units only in the first leaching event with drainage water, but had little effect on leachate pH in the following leaching events. It can be concluded that organic materials and particularly biochars and compost have the potential to be used in acid drainage treatment to remove and retain protons and metals.
Keywords: Acid sulphate soils; aluminium; biochar; drainage water; iron; organic materials; pH
Rights: © Springer-Verlag Berlin Heidelberg 2016
DOI: 10.1007/s11356-016-7597-x
Published version: http://dx.doi.org/10.1007/s11356-016-7597-x
Appears in Collections:Aurora harvest 3
Ecology, Evolution and Landscape Science publications

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