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PreviewIssue DateTitleAuthor(s)
2017Linking organic matter composition in acid sulfate soils to pH recovery after re-submergingKölbl, A.; Marschner, P.; Fitzpatrick, R.; Mosley, L.; Kögel-Knabner, I.
2018Alteration of organic matter during remediation of acid sulfate soilsKölbl, A.; Marschner, P.; Mosley, L.; Fitzpatrick, R.; Kögel-Knabner, I.
2016Organic matter addition can prevent acidification during oxidation of sandy hypersulfidic and hyposulfidic material: effect of application form, rate and C/N ratioYuan, C.; Mosley, L.; Fitzpatrick, R.; Marschner, P.
2015Sulfate reduction in sulfuric material after re-flooding: effectiveness of organic carbon addition and pH increase depends on soil propertiesYuan, C.; Fitzpatrick, R.; Mosley, L.; Marschner, P.
2015Organic materials differ in ability to remove protons, iron and aluminium from acid sulfate soil drainage waterDang, T.; Mosley, L.; Fitzpatrick, R.; Marschner, P.
2016Addition of organic material to sulfuric soil can reduce leaching of protons, iron and aluminiumDang, T.; Mosley, L.; Fitzpatrick, R.; Marschner, P.
2015Amount of organic matter required to induce sulfate reduction in sulfuric material after re-flooding is affected by soil nitrate concentrationYuan, C.; Mosley, L.; Fitzpatrick, R.; Marschner, P.
2016Addition of clayey soils with high net negative acidity to sulfuric sandy soil can minimise pH changes during wet and dry periodsJayalath, N.; Mosley, L.; Fitzpatrick, R.; Marschner, P.
2017Prolonged recovery of acid sulfate soils with sulfuric materials following severe drought: causes and implicationsMosley, L.; Biswas, T.; Cook, F.; Marschner, P.; Palmer, D.; Shand, P.; Yuan, C.; Fitzpatrick, R.