Is rhizosphere remediation sufficient for sustainable revegetation of mine tailings?
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Microbial Functional Capacity Is Preserved Within Engineered Soil Formulations Used In Mine Site Restoration.Abundance and Activity of 16S rRNA, AmoA and NifH Bacterial Genes During Assisted Phytostabilization of Mine Tailings.From lithotroph- to organotroph-dominant: directional shift of microbial community in sulphidic tailings during phytostabilizationExtremely High Phosphate Sorption Capacity in Cu-Pb-Zn Mine TailingsCharacterization of hard- and softwood biochars pyrolyzed at high temperature.Plant root research: the past, the present and the future.Growth and photosynthetic responses of ectomycorrhizal pine seedlings exposed to elevated Cu in soils.Coupled pot and lysimeter experiments assessing plant performance in microbially assisted phytoremediation.Dominate the Soil Under Trees That Have Naturally Colonized a Red Gypsum Landfill
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P2860
Is rhizosphere remediation sufficient for sustainable revegetation of mine tailings?
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Is rhizosphere remediation sufficient for sustainable revegetation of mine tailings?
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Is rhizosphere remediation sufficient for sustainable revegetation of mine tailings?
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Is rhizosphere remediation sufficient for sustainable revegetation of mine tailings?
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P2093
P2860
P356
P1433
P1476
Is rhizosphere remediation sufficient for sustainable revegetation of mine tailings?
@en
P2093
David Mulligan
Longbin Huang
Thomas Baumgartl
P2860
P304
P356
10.1093/AOB/MCS115
P407
P577
2012-05-30T00:00:00Z