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Results 1-10 of 17 (Search time: 0.004 seconds).
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PreviewIssue DateTitleAuthor(s)
2010Comprehensive analysis of winery wastewaters using SPME-GC-MSMosse, K.; Verheyen, T.; Cruickshank, A.; Cavagnaro, T.; Christen, E.; Patti, A.; 61st American Society for Enology and Viticulture National Conference (23 Jun 2010 - 24 Jun 2010 : Seattle, Washington)
2017Hybrid brown coal-urea fertiliser reduces nitrogen loss compared to urea aloneSaha, B.; Rose, M.; Wong, V.; Cavagnaro, T.; Patti, A.
2019A slow release brown coal-urea fertiliser reduced gaseous N loss from soil and increased silver beet yield and N uptakeSaha, B.; Rose, M.; Wong, V.; Cavagnaro, T.; Patti, A.
2014Do lignite-derived organic amendments improve early-stage pasture growth and key soil biological and physicochemical properties?Little, K.; Rose, M.; Jackson, W.; Cavagnaro, T.; Patti, A.
2015Do organic inputs alter resistance and resilience of soil microbial community to drying?Ng, E.; Patti, A.; Rose, M.; Schefe, C.; Smernik, R.; Cavagnaro, T.
2015Lignite amendment has limited impacts on soil microbial communities and mineral nitrogen availabilityKim Thi Tran, C.; Rose, M.; Cavagnaro, T.; Patti, A.
2010Winery wastewater inhibits seed germination and vegetative growth of common crop speciesMosse, K.; Patti, A.; Christen, E.; Cavagnaro, T.
2011Review: winery wastewater quality and treatment options in AustraliaMosse, K.; Patti, A.; Christen, E.; Cavagnaro, T.
2015Biochar application during reforestation alters species present and soil chemistryDrake, J.; Carrucan, A.; Jackson, W.; Cavagnaro, T.; Patti, A.
2014Does the chemical nature of soil carbon drive the structure and functioning of soil microbial communities?Ng, E.; Patti, A.; Rose, M.; Schefe, C.; Wilkinson, K.; Smernik, R.; Cavagnaro, T.