Pakistan Journal of Biological Sciences · 2013 · 10 citations · 3 references
EcotoxicityEngineeringMetal ContaminationSoil ManagementHazard QuotientSphenostylis StenocarpaEnvironmental ChemistrySoil PollutionBioremediationWaste Engine OilToxicologyPublic HealthSoil ScienceEnvironmental PollutionNatural AttenuationEcotoxicologyEnvironmental EngineeringEnvironmental RemediationDifferent IntervalsEnvironmental Toxicology
The present study comparatively investigated the phytotoxic effects of waste engine oil (WEO)-polluted soil exposed to monitored natural attenuation up to 5 and 14 months respectively. Soil was previously polluted with WEO at 0, 1, 2.5, 5 and 10% w/w oil in soil. Although, there was significant reduction in heavy metal concentration of soil as well as total hydrocarbon contents, performance of Sphenostylis stenocarpa was greatly retarded when sown at 5 months after pollution (MAP), with death of all seedlings except in the control. However, growth and yield performances were significantly (p > 0.05) enhanced at 14 MAP. Computation of hazard quotient showed that ecological risk factor initially posed by the presence of heavy metals in the soil at 5 MAP was significantly (p > 0.05) reduced to safe levels at 14 MAP.
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