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Titlebook: Environmental Bioremediation Technologies; Shree N. Singh (Deputy Director and Head),Rudra D. Book 2007 Springer-Verlag Berlin Heidelberg

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Metal Resistance in Plants with Particular Reference to Aluminium,
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The Role of Macrophytes in Nutrient Removal using Constructed Wetlands,
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Diversity, Biodegradation and Bioremediation of Polycyclic Aromatic Hydrocarbons,
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Bioremediation of Organic and Metal Co-contaminated Environments: Effects of Metal Toxicity, Speciae solution phase metal data; however, new methods of defining and determining bioavailable metal are rapidly being developed. Despite the enormous variance among reported inhibitory concentrations of metals, it remains clear that metals have the potential to inhibit organic biodegradation in both ae
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New Bioremediation Technologies to Remove Heavy Metals and Radionuclides using Fe(III)-, Sulfate- anhance our understanding of the factors controlling the rate and extent of biotechnological processes. The development of new techniques, such as genomic and proteomic approaches, and the availability of environmentally relevant bacteria annotated genome sequence, promises us undoubtedly significant
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