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Biodegradation : properties, analysis and performance / Jaime Alvarez, editor.

Contributor(s): Material type: TextTextSeries: Air, water and soil pollution science and technology seriesPublisher: New York : Nova Publishers, [2016]Description: 1 online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781634857628
  • 1634857623
Uniform titles:
  • Biodegradation (Alvarez)
Subject(s): Genre/Form: Additional physical formats: Print version:: No titleDDC classification:
  • 628.5 23
LOC classification:
  • TD192.5
Online resources:
Contents:
Preface; Chapter 1; Rhodococcus UKMP-5M: A Versatile Bioremediation Microorganism; Abstract; Introduction; Rhodococcus UKMP-5M; Biodetoxification of Cyanide by Rhodococcus UKMP-5M; Introduction; The Use of Biological Method in Cyanide Biodetoxification; Application of Rhodococcus UKMP-5m in Biodetoxification of Cyanide; Utilization of Acetonitrile-Induced Cells of Rhodococcus UKMP-5M for Cyanide Biodegradation; Biotransformation of Cyanide by Whole Cells of Rhodococcus UKMP-5M; Improvised Immobilization System for Efficient Cyanide Biodetoxification
Application of Immobilized Cells of Rhodococcus UKMP-5M for Bioremediation of Cyanide-Containing WastewaterBiotransformation of Nitrile-Containing Wastewater by Rhodococcus UKMP-5M; Introduction; The Use of Biological Method in Nitrile Biotransformation; Application of Rhodococcus UKMP-5M in Biotransformation of Nitrile-Containing Wastewater; Industrial Wastewater Content; Growth and Production of Nitrile-Hydrolysing Enzymes Using Industrial Wastewater as an Inducer; Biotransformation of Industrial Wastewater Sample by Rhodococcus UKMP-5M; Biodegradation of Phenol by Rhodococcus UKMP-5M
IntroductionThe Use of Biological Method in Phenol Biodegradation; Application of Rhodococcus UKMP-5M in Biodegradation of Phenol; Biodegradation of Halogenated Compounds by Rhodococcus UKMP-5M; Introduction; The Use of Biological Method in Halogenated Compounds Biodegradation; Microbial Degradation of Halogenated Compounds; Bacterial Dehalogenation Reactions; Role of Rhodococcus in Degradation of Halogenated Compounds; Application of Rhodococcus UKMP-5M in Biodegradation of Halogenated Compounds; Dehalogenation of 1-Chlorobutane (1-CB) and Other Halogenated Compounds by Rhodococcus UKMP-5M
Elucidation of Metabolic PathwayEnzyme Identification Using Proteomics Approach; Biotransformation of Waste Cooking Oil to Biodiesel by Rhodococcus UKMP-5M; Introduction; The Use of Biological Method in the Production of Biodiesel; Application of Rhodococcus UKMP-5M in the Production of Biodiesel from Waste Cooking Oil; Screening Test on Tween 80 Plate Assay; Production of Lipase from Rhodococcus UKMP-5M Grown in Olive Oil-Containing Medium; Biotransformation of Waste Cooking Oil by Immobilized Lipase Enzyme from Rhodococcus UKMP-5M; Conclusion; References; Chapter 2
Sulfate Reduction Applied to Environmental Biotechnology Using Marine and Freshwater Sediments as Inoculum: A ReviewAbstract; 1. Introduction; Advances in Environmental Biotechnology; 2. Sulfate Reduction in Effluents That Contain Heavy Metals Using Marine Sediment; 2.1. Direct Precipitation; 2.2. Indirect Precipitation; 2.3. Microbial Community; 3. Sulfate Reduction in Effluents That Contain Recalcitrant Compounds Using Sediments as Inoculum; 3.1. Microbial Community; 4. Sulfate Reduction in Microbial Fuel Cells Using Sediments as Inoculum; 4.1. Microbial Fuel Cell (MFC)
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"Nova Science Publishers, Inc."--Title page verso.

Includes bibliographical references and index.

Description based on print version record and CIP data provided by publisher.

Preface; Chapter 1; Rhodococcus UKMP-5M: A Versatile Bioremediation Microorganism; Abstract; Introduction; Rhodococcus UKMP-5M; Biodetoxification of Cyanide by Rhodococcus UKMP-5M; Introduction; The Use of Biological Method in Cyanide Biodetoxification; Application of Rhodococcus UKMP-5m in Biodetoxification of Cyanide; Utilization of Acetonitrile-Induced Cells of Rhodococcus UKMP-5M for Cyanide Biodegradation; Biotransformation of Cyanide by Whole Cells of Rhodococcus UKMP-5M; Improvised Immobilization System for Efficient Cyanide Biodetoxification

Application of Immobilized Cells of Rhodococcus UKMP-5M for Bioremediation of Cyanide-Containing WastewaterBiotransformation of Nitrile-Containing Wastewater by Rhodococcus UKMP-5M; Introduction; The Use of Biological Method in Nitrile Biotransformation; Application of Rhodococcus UKMP-5M in Biotransformation of Nitrile-Containing Wastewater; Industrial Wastewater Content; Growth and Production of Nitrile-Hydrolysing Enzymes Using Industrial Wastewater as an Inducer; Biotransformation of Industrial Wastewater Sample by Rhodococcus UKMP-5M; Biodegradation of Phenol by Rhodococcus UKMP-5M

IntroductionThe Use of Biological Method in Phenol Biodegradation; Application of Rhodococcus UKMP-5M in Biodegradation of Phenol; Biodegradation of Halogenated Compounds by Rhodococcus UKMP-5M; Introduction; The Use of Biological Method in Halogenated Compounds Biodegradation; Microbial Degradation of Halogenated Compounds; Bacterial Dehalogenation Reactions; Role of Rhodococcus in Degradation of Halogenated Compounds; Application of Rhodococcus UKMP-5M in Biodegradation of Halogenated Compounds; Dehalogenation of 1-Chlorobutane (1-CB) and Other Halogenated Compounds by Rhodococcus UKMP-5M

Elucidation of Metabolic PathwayEnzyme Identification Using Proteomics Approach; Biotransformation of Waste Cooking Oil to Biodiesel by Rhodococcus UKMP-5M; Introduction; The Use of Biological Method in the Production of Biodiesel; Application of Rhodococcus UKMP-5M in the Production of Biodiesel from Waste Cooking Oil; Screening Test on Tween 80 Plate Assay; Production of Lipase from Rhodococcus UKMP-5M Grown in Olive Oil-Containing Medium; Biotransformation of Waste Cooking Oil by Immobilized Lipase Enzyme from Rhodococcus UKMP-5M; Conclusion; References; Chapter 2

Sulfate Reduction Applied to Environmental Biotechnology Using Marine and Freshwater Sediments as Inoculum: A ReviewAbstract; 1. Introduction; Advances in Environmental Biotechnology; 2. Sulfate Reduction in Effluents That Contain Heavy Metals Using Marine Sediment; 2.1. Direct Precipitation; 2.2. Indirect Precipitation; 2.3. Microbial Community; 3. Sulfate Reduction in Effluents That Contain Recalcitrant Compounds Using Sediments as Inoculum; 3.1. Microbial Community; 4. Sulfate Reduction in Microbial Fuel Cells Using Sediments as Inoculum; 4.1. Microbial Fuel Cell (MFC)

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