By Romeela Mohee, Ackmez Mudhoo
Bioremediation and Sustainability is an up to date and finished remedy of study and functions for probably the most very important inexpensive, "green," rising applied sciences in chemical and environmental engineering.
Chapter 1 parts of Sustainability and Bioremediation (pages 1–41): Ackmez Mudhoo and Romeela Mohee
Chapter 2 ordinary Attenuation (pages 43–102): R. Ryan Dupont
Chapter three Anaerobic Digestion strategies (pages 103–136): Steven I. Safferman, Dana M. Kirk, Louis L. Faivor and Wei Wu Haan
Chapter four Biosurfactants: Synthesis, homes and purposes in Environmental Bioremediation (pages 137–211): Ramkrishna Sen, Ackmez Mudhoo and D. Gunaseelan
Chapter five Phytoremediation: an effective method for Bioremediation of natural and metal Ions toxins (pages 213–240): Divya Gupta, Lalit Kumar Singh, Ashish Deep Gupta and Vikash Babu
Chapter 6 Bioleaching (pages 241–260): Leo G. Leduc and Garry D. Ferroni
Chapter 7 Biosorption of Heavy Metals – New views (pages 261–283): Teresa Tavares and Hugo Figueiredo
Chapter eight Biofiltration: necessities, learn and purposes (pages 285–315): Smita Raghuvanshi, Subhajit Majumder and Suresh Gupta
Chapter nine Modeling and Implementation of Sustainable Remediation in accordance with Bioventing (pages 317–366): Hillel Rubin, Eran Rubin and Holger Schuttrumpf
Chapter 10 Bioremediation of Xenobiotics (pages 367–398): Komal Saxena, Gajendra Kumar Aseri, Ashish Deep Gupta and Vikash Babu
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Additional info for Bioremediation and Sustainability: Research and Applications
Activated sludge treatment remains a workhorse technology for controlling pollution of aquatic environment. Similarly, aerobic stabilization of solid organic waste through composting has a long history of use. Both these technologies have undergone considerable improvement . The application of microbial metabolic potential (bioremediation) is accepted as an environmentally benign and economical measure for decontamination of polluted environments. Bioremediation methods are generally categorized into ex situ and in situ bioremediation.
Juncea to be especially adapted in accumulating lead. 5% dry weight in the shoots suggesting that a crop of such plants could extract 630 k g / h a of Pb in above ground biomass with a single harvest, more if some root material was harvested as well . It is important to note however, that these experiments were done hydroponically. In soil, the property of Pb to bind to clay soil particles and organic matter, and its inclusion in insoluble precipitates significantly reduces the bioavailability of Pb to the plant .
In the lag phase there is a delay in the microbial population growth until the microbes have become acclimatized to the substrate(s) , which in many instances are the contaminants/pollutants under remediation, and surrounding conditions. The microbes cannot consume the food source until they have developed the required enzymes and metabolites necessary to 28 BlOREMEDIATION AND SUSTAINABILITY break down the contaminant . After the necessary enzymes and metabolites have been produced, the microbes enter the exponential phase of growth .
Bioremediation and Sustainability: Research and Applications by Romeela Mohee, Ackmez Mudhoo