フォロー
Talitha Santini
Talitha Santini
Associate Professor, School of Agriculture and Environment, The University of Western Australia
確認したメール アドレス: uwa.edu.au
タイトル
引用先
引用先
Microbially-driven strategies for bioremediation of bauxite residue
TC Santini, JL Kerr, LA Warren
Journal of Hazardous Materials 293, 131-157, 2015
1492015
Spontaneous vegetation encroachment upon bauxite residue (red mud) as an indicator and facilitator of in situ remediation processes
TC Santini, MV Fey
Environmental Science & Technology 47 (21), 12089-12096, 2013
932013
Understanding the impacts of mining on ecosystem services through a systematic review
R Boldy, T Santini, M Annandale, PD Erskine, LJ Sonter
The Extractive Industries and Society 8 (1), 457-466, 2021
922021
Alkaline tailings as novel soil forming substrates: reframing perspectives on mining and refining wastes
TC Santini, NC Banning
Hydrometallurgy 164, 38-47, 2016
872016
pH and organic carbon dose rates control microbially driven bioremediation efficacy in alkaline bauxite residue
TC Santini, LI Malcolm, GW Tyson, LA Warren
Environmental Science & Technology 50 (20), 11164-11173, 2016
612016
Assessment of Technosol formation and in situ remediation in capped alkaline tailings
TC Santini, MV Fey
Catena 136, 17-29, 2016
552016
Predicting the impact of logging activities on soil erosion and water quality in steep, forested tropical islands
AS Wenger, S Atkinson, T Santini, K Falinski, N Hutley, S Albert, ...
Environmental Research Letters 13 (4), 044035, 2018
522018
Application of the Rietveld refinement method for quantification of mineral concentrations in bauxite residues (alumina refining tailings)
TC Santini
International Journal of Mineral Processing 139, 1-10, 2015
502015
Microbial diversity in engineered haloalkaline environments shaped by shared geochemical drivers observed in natural analogues
TC Santini, LA Warren, KE Kendra
Applied and Environmental Microbiology 81, 5026-5036, 2015
482015
From tailings to soil: long-term effects of amendments on progress and trajectory of soil formation and in situ remediation in bauxite residue
TC Santini, MV Fey
Journal of Soils and Sediments 18, 1935-1949, 2018
422018
Microbial fermentation of organic carbon substrates drives rapid pH neutralization and element removal in bauxite residue leachate
TC Santini, YG Peng
Environmental science & technology 51 (21), 12592-12601, 2017
342017
Simulation study for the formation of alkaline efflorescence on bauxite residue disposal areas following the phosphogypsum addition
Y Wu, M Li, D Fu, TC Santini, J Jiang, W Hartley, S Xue
Journal of Cleaner Production 262, 121266, 2020
332020
In situ neutralisation of uncarbonated bauxite residue mud by cross layer leaching with carbonated bauxite residue mud
TC Santini, C Hinz, AW Rate, CM Carter, RJ Gilkes
Journal of hazardous materials 194, 119-127, 2011
302011
Fly ash as a permeable cap for tailings management: pedogenesis in bauxite residue tailings
TC Santini, MV Fey
Journal of Soils and Sediments 15, 552-564, 2015
292015
Simple organic carbon sources and high diversity inocula enhance microbial bioneutralization of alkaline bauxite residues
TC Santini, JC Wang, KL Warren, G Pickering, MJ Raudsepp
Environmental science & technology 55 (6), 3929-3939, 2021
272021
Evaluation of soil analytical methods for the characterization of alkaline Technosols: I. Moisture content, pH, and electrical conductivity
TC Santini, MV Fey, MN Smirk
Journal of soils and sediments 13, 1141-1149, 2013
272013
Late-Holocene cliff-top blowout activation and evolution in the Cooloola Sand Mass, south-east Queensland, Australia
D Ellerton, T Rittenour, G Miot da Silva, A Gontz, J Shulmeister, P Hesp, ...
The Holocene 28 (11), 1697-1711, 2018
232018
Experimental simulation of long term weathering in alkaline bauxite residue tailings
TC Santini, MV Fey, RJ Gilkes
Metals 5, 1241-1261, 2015
212015
The anion effect on sodium aluminosilicates formed under Bayer process digestion conditions
J Vogrin, T Santini, H Peng, J Vaughan
Hydrometallurgy 192, 105236, 2020
202020
Microbial community structure is most strongly associated with geographical distance and pH in salt lake sediments
TC Santini, L Gramenz, G Southam, C Zammit
Frontiers in Microbiology 13, 920056, 2022
162022
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