International Journal of Phytoremediation · 2010 · 41 citations · 33 references
EngineeringMine WaterMetal ContaminationMineral ProcessingAm FungiChemical EngineeringEnvironmental ChemistryCorrosionSoil PollutionBioremediationBiogeochemistryField StudyTrace MetalSoil ContaminationWaste ManagementPb/zn Mine TailingsEnvironmental EngineeringCrop ProtectionSoil ChemistryEnvironmental RemediationPhytoremediationMetal ToxicityVetiver Grass Slips
A field study of Pb/Zn mine tailings was conducted to assess the influence of AM fungi and refuse compost on phytoremediation using vetiver grass slips. Our investigation revealed that vetiver could thrive on Pb/Zn mine tailings. The addition of refuse compost resulted in biomass that was more than 3-times higher when compared with the control, and were mainly attributed to an improvement of soil properties, as well as better nutrient supply than untreated control. AMF inoculation also significantly increased the dry matter of vetiver by a rate of 8.1-13.8%. It was observed that concentrations of N and P in the shoots were significantly higher in mycorrhizal treatments than those without AMF inoculation. However, AMF inoculation significantly decreased the metal concentrations in root, but not in shoot. Based on the results, it seems clear that AMF can play an essential role in the phytostabilization of metal contaminated soils.
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