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Microbial Biodegradation of Xenobiotic Compounds [Kõva köide]

  • Formaat: Hardback, 248 pages, kõrgus x laius: 234x156 mm, kaal: 554 g, 21 Tables, black and white; 6 Illustrations, color; 31 Illustrations, black and white
  • Ilmumisaeg: 30-Jan-2019
  • Kirjastus: CRC Press
  • ISBN-10: 1138743925
  • ISBN-13: 9781138743922
  • Formaat: Hardback, 248 pages, kõrgus x laius: 234x156 mm, kaal: 554 g, 21 Tables, black and white; 6 Illustrations, color; 31 Illustrations, black and white
  • Ilmumisaeg: 30-Jan-2019
  • Kirjastus: CRC Press
  • ISBN-10: 1138743925
  • ISBN-13: 9781138743922
Microbial Biodegradation of Xenobiotic Compounds examines and collects the recent information on the bioremediation technologies around the world. This book focuses on methods to decrease pollutants created by anthropogenic activities, industrial activities, and agricultural activities. This book answers some of the questions about how to reduce contaminants? And whether there is a possibility of converting these pollutants in to useful energy by advanced biotechnological methods?

The book combines present obtainable data with the expert knowledge of researchers from all over the world covering different aspects of environmental biotechnology and microbiology. It covers basic concepts of bioremediation and various methods involved in the bioremediation process, and provides specific chapters on the role of different genes and enzymes involved in microbial bioremediation process. It also gives special attention to heavy metal bioremediation by microalgae and the mechanisms involved during the degradation process. Recent innovative technologies about converting toxic pollutants in to useful energy like bioplastics and electricity are also discussed by specialist authors. Various chapters address the bioremediation of pesticides in soil using microbial metabolites, and molecular aspects of biodegradation which cover topics including identification of novel genes through the metagenomic approach and bioremediation using fungal laccase enzymes.
Preface iii
1 Degradation of Aromatic Compounds and their Conversion into Useful Energy by Bacteria
1(23)
M. Venkateswar Reddy
Rui Onodera
Young-Cheol Chang
2 Bioaugmentation and Biostimulation Remediation Technologies for Heavy Metal Lead Contaminant
24(13)
K. Jayaprakash
M. Govarthanan
R. Mythili
T. Selvankumar
Young-Cheol Chang
3 Water Bioremediation using Aquatic Plants
37(20)
Maisa'a Wasif Shammout
4 Heavy Metal Bioremediation by Microalgae: Mechanisms and Applications
57(19)
Aniefon A. Ibuot
Sanjay Kumar Gupta
Preeti Ansolia
Amit K. Bajhaiya
5 Contaminant Removal and Energy Recovery in Microbial Fuel Cells
76(19)
Soumya Pandit
Kuppam Chandrasekhar
Dipak Ashok Jadhav
Makarand Madhao Ghangrekar
Debabrata Das
6 Microbial Removal of Dye Stuffs
95(16)
T. Selvankumar
C. Sudhakar
M. Govarthanan
7 Bioremediation of Organic Xenobiotics from Wastewater: A Review
111(24)
Mayuri Chabukdhara
Sanjay Kumar Gupta
Faiz Ahmad Ansari
Amit K. Bajhaiya
Manish Kumar
8 Fungal Laccase Mediated Bioremediation of Xenobiotic Compounds
135(23)
Palanivel Sathishkumar
Feng Long Gu
Fuad Ameen
Thayumanavan Palvannan
9 Genes Involved in Microbial Bioremediation
158(17)
K.N. ArulJothi
10 Bioremediation of Heavy Hydrocarbons and Polycyclic Aromatic Hydrocarbons: Environmental Implications and Technical Constraints
175(29)
Edmo M. Rodrigues
Marcos R. Totola
11 Identification of a Novel Gene Through the Metagenomic Approach to Degrade the Targeted Pollutant
204(24)
Suriya Jayaraman
Suganya Thangaiyan
Kannan Mani
Kayalvizhi Nagarajan
Krishnan Muthukalingan
12 Interactions Between Nonpolar Compounds and Soil Organic Carbon Under Low Redox Potentials: Implications for Bioavailability
228(13)
Jessica E. Sharpe
Andrew Ogram
Index 241
Young-Cheol Chang was born in South Korea; he received a Ph.D. from Gifu University in Japan. Currently, he is working as a professor in the Department of Applied Sciences at Muroran Institute of Technology, Japan. He successfully completed a Research Fellowship at the University of Central Florida, USA. His research has included biodegradation of xenobiotic compounds and biopolymers (bioplastics) production. Based on his research and fellowship training, he has received several awards and honors.