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Results 1-10 of 12 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2016Use of 33P to trace in situ the fate of canola below-ground phosphorus, including wheat uptake in two contrasting soilsFoyjunnessa,; McNeill, A.; Doolette, A.; Mason, S.; McLaughlin, M.
2016Moisture effects on diffuse reflection infrared spectra of contrasting minerals and soils: a mechanistic interpretationJanik, L.; Soriano-Disla, J.; Forrester, S.; McLaughlin, M.
2016Availability of fertiliser sulphate and elemental sulphur to canola in two consecutive cropsDegryse, F.; Ajiboye, B.; Baird, R.; da Silva, R.; McLaughlin, M.
2016Oxidation of elemental sulfur in granular fertilizers depends on the soil-exposed surface areaDegryse, F.; Ajiboye, B.; Baird, R.; Da Silva, R.; McLaughlin, M.
2016Quantifying total phosphorus accumulation below-ground by canola and lupin plants using ³³P-labellingFoyjunnessa,; McNeill, A.; Doolette, A.; Mason, S.; McLaughlin, M.
2016Gold nanomaterial uptake from soil is not increased by arbuscular mycorrhizal colonization of solanum lycopersicum (Tomato)Judy, J.; Kirby, J.; McLaughlin, M.; Cavagnaro, T.; Bertsch, P.
2016Derivation of ecological standards for risk assessment of molybdate in soilOorts, K.; Smolders, E.; McGrath, S.; Van Gestel, C.; McLaughlin, M.; Carey, S.
2016Effect of cogranulation on oxidation of elemental sulfur: theoretical model and experimental validationDegryse, F.; Da Silva, R.; Baird, R.; McLaughlin, M.
2016Quantifying the sensitivity of soil microbial communities to silver sulfide nanoparticles using metagenome sequencingDoolette, C.; Gupta, V.; Lu, Y.; Payne, J.; Batstone, D.; Kirby, J.; Navarro, D.; McLaughlin, M.; Mukherjee, A.
2016Low effective surface area explains slow oxidation of co-granulated elemental sulfurZhao, C.; Degryse, F.; Gupta, V.; McLaughlin, M.