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Environmental Biotechnology Principles and Applications - Translation(Chinese Edition)


ISBN 10: 730230257X / ISBN 13: 9787302302575
New Condition: New Soft cover
From liu xing (JiangSu, JS, China)

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Ship out in 2 business day, And Fast shipping, Free Tracking number will be provided after the shipment.Paperback. Pub Date :2012-11-01 Pages: 647 Publisher: Tsinghua University Press. basic information about the title: Environmental Biotechnology Principles and Applications - translated version of the original price: 68 yuan: (U.S.) Rittmann (U.S.) wheat Cutty forward. Wen Xiang Hua translated Publisher: Tsinghua University Press Publication Date :2012-11-1ISBN: 9787302302575 Words: 885.000 yds: 647 Edition: 1 Binding: Paperback: 16 product size and weight: Editor's Choice Executive Summary Environmental Biotechnology Principles and Applications - translated version of the basic principles and the practical application of microbial processes for protecting and improving the environment. The book is not only involved in the traditional application of environmental biotechnology. such as activated sludge process and anaerobic digestion. also describes emerging applications such as the detoxification of harmful compounds. bioremediation. biological drinking water filtration. The book provides a lot of diagram. table. after each chapter there are exercises to help readers understand and master the basic concepts and principles. but also gives abundant examples in order to facilitate the reader the correct analysis. design. and solve practical environmental problems. Environmental Biotechnology Principles and Applications - translated version of fit as institutions of higher learning environment class professional materials. environmental. biological. and other areas of scientific and technical personnel are also available for reference. Contents Chapter 1 Microbiology Basic 1.1 cells the 1.2 taxonomy and phylogeny 1.3 prokaryotes 1.3.1 bacteria 1.3.2 archaea 1.4 eukaryotic 1.4.1 fungal 1.4.2 algae 1.4.3 protozoa 1.4.4 multicellular microbial 1.5 virus 1.6 infectious 1.7 1.8.1 enzyme biochemistry 1.8 enzyme activity of the adjustment of the reactive 1.8.2 1.9 energy capture 1.9.1 electronic and energy carrier .1.9.2 input energy and electron 1.10 metabolism 1.10.1 catabolism 1.10.2 an anabolic 1.10.3 metabolism and nutrition population 1.11 genetics and information flow 1.12 DNA (dna) 1.12.1 chromosome replication 1.12.2 plasmid 1.12.3dna of 1.13 ribonucleic acid (rna) 1.13.1 transcription 1.13.2 messenger rna (mrna) 1.13.3 transporter rna (trna) 1.13.4 Translation ribosomal rna (rrna) 1.13.5 Translation 1.13.6 adjust the basis of 1.15 1.14 phylogenetic 1.14.1 phylogenetic classification microbial ecology 1.15.1 select 1.15.2 substance exchange 1.15.3 1.16.2 molecular biology tools to meet the 1.16 microbial ecology research tools 1.16.1 traditional enrichment tools 1.16.3 multispecies model References Exercises Chapter 2 stoichiometry and bacterial Energetics of 2.1 the stoichiometric equation example 2.2 microbial cells Empirical Formula the 2.3 matrix distribution and cell yield 2.4 energy reaction 2.5 overall reaction of biological growth 2.5.1 fermentation reaction 2.6 Energetics and bacterial growth 2.6.1 energy reaction free energy the 2.7 yield coefficient and 2.8 oxidized nitrogen source References Exercises Chapter 3 microbial reaction energetics parameter valuation Dynamics 3.1 Basic Rate expression 3.2 3.3 basic mass balance 3.4 3.5 soluble microbial products inert bacteria and volatile solids mass balance 3.6 nutrients and electron acceptor 3.7 3.8 particles and polymer hydrolysis of the active biomass input 3.9 inhibition 3.10 rate of other forms of expression reference literature Exercises Chapter 4 biofilm dynamics aggregation of microbial 4.1 4.2 4.3 idealized Why use biofilm biofilm 4.3.1 matrix phenomenon 4.3.2 biofilm 4.4 steady-state biofilm parameters of the solution 4.6 4.5 steady-state biofilm valuation 4.7 biofilm average srt4.8 completely mixed biofilm reactor 4.9 soluble microbial products (smp 4.13.2 zero-order kinetics of the the biofilm model solution) with inert organisms of 4.10cm process characteri. Bookseller Inventory # FV072744

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