Methane Generation from Human, Animal, and Agricultural Wastes. Report of an Ad Hoc Panel

Methane Generation from Human, Animal, and Agricultural Wastes. Report of an Ad Hoc Panel
Title Methane Generation from Human, Animal, and Agricultural Wastes. Report of an Ad Hoc Panel PDF eBook
Author
Publisher
Pages 0
Release 1977
Genre
ISBN

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Anaerobic Digestion Model No.1 (ADM1)

Anaerobic Digestion Model No.1 (ADM1)
Title Anaerobic Digestion Model No.1 (ADM1) PDF eBook
Author IWA Task Group for Mathematical Modelling of Anaerobic Digestion Processes
Publisher IWA Publishing
Pages 61
Release 2002-02-01
Genre Science
ISBN 1900222787

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The IWA Task Group for Mathematical Modelling of Anaerobic Digestion Processes was created with the aim to produce a generic model and common platform for dynamic simulations of a variety of anaerobic processes. This book presents the outcome of this undertaking and is the result of four years collaborative work by a number of international experts from various fields of anaerobic process technology. The purpose of this approach is to provide a unified basis for anaerobic digestion modelling. It is hoped this will promote increased application of modelling and simulation as a tool for research, design, operation and optimisation of anaerobic processes worldwide. This model was developed on the basis of the extensive but often disparate work in modelling and simulation of anaerobic digestion systems over the last twenty years. In developing ADM1, the Task Group have tried to establish common nomenclature, units and model structure, consistent with existing anaerobic modelling literature and the popular activated sludge models (See Activated Sludge Models ASM1, ASM2, ASM2d and ASM3, IWA Publishing, 2000, ISBN: 1900222248). As such, it is intended to promote widespread application of simulation from domestic (wastewater and sludge) treatment systems to specialised industrial applications. Outputs from the model include common process variables such gas flow and composition, pH, separate organic acids, and ammonium. The structure has been devised to encourage specific extensions or modifications where required, but still maintain a common platform. During development the model has been successfully tested on a range of systems from full-scale waste sludge digestion to laboratory-scale thermophilic high-rate UASB reactors. The model structure is presented in a readily applicable matrix format for implementation in many available differential equation solvers. It is expected that the model will be available as part of commercial wastewater simulation packages. ADM1 will be a valuable information source for practising engineers working in water treatment (both domestic and industrial) as well as academic researchers and students in Environmental Engineering and Science, Civil and Sanitary Engineering, Biotechnology, and Chemical and Process Engineering departments. Contents Introduction Nomenclature, State Variables and Expressions Biochemical Processes Physicochemical Processes Model Implementation in a Single Stage CSTR Suggested Biochemical Parameter Values, Sensitivity and Estimation Conclusions References Appendix A: Review of Parameters Appendix B: Supplementary Matrix Information Appendix C: Integration with the ASM Appendix D: Estimating Stoichiometric Coefficients for Fermentation Scientific & Technical Report No.13

Methane Generation from Human, Animal, and Agricultural Wastes

Methane Generation from Human, Animal, and Agricultural Wastes
Title Methane Generation from Human, Animal, and Agricultural Wastes PDF eBook
Author National Academy Of Sciences
Publisher
Pages 0
Release 2013-06-03
Genre Science
ISBN 9781304100139

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This report is devoted to the development of an alternative energy re-source suitable for individual or village use in a rural environment. An ideal resource is one that is local in origin and can produce energy useful for this purpose depending only on local materials and labor. Unlike present rural energy generation (primarily heat from burning), an ideal system should involve a fuel that can be utilized for different kinds of work. The ideal fuel resource should be easily accumulated and stored to provide energy for heating, lighting, small-scale electric power generation, and power for engines as needed. Moreover, where possible, it should also provide more energy than is now obtained from the same materials. Rural areas usually have large supplies of material-crop residues and animal wastes- theoretically suitable for conversion into a usable source of energy. The process that appears to hold the greatest immediate potential for utilization of these materials as sources of fuel is anaerobic fermentation.

Methane Generation from Human, Animal, and Agricultural Wastes

Methane Generation from Human, Animal, and Agricultural Wastes
Title Methane Generation from Human, Animal, and Agricultural Wastes PDF eBook
Author National Research Council (U.S.). Panel on Methane Generation
Publisher
Pages 150
Release 1977
Genre Gas manufacture and works
ISBN

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Biogas Una Bibliografia Mundial

Biogas Una Bibliografia Mundial
Title Biogas Una Bibliografia Mundial PDF eBook
Author Centro interamericano de documentación e información agrícola (San José, Costa Rica).
Publisher IICA Biblioteca Venezuela
Pages 232
Release
Genre
ISBN

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EPA-600/2

EPA-600/2
Title EPA-600/2 PDF eBook
Author
Publisher
Pages 700
Release 1979
Genre Environmental engineering
ISBN

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Refining Biomass Residues for Sustainable Energy and Bioproducts

Refining Biomass Residues for Sustainable Energy and Bioproducts
Title Refining Biomass Residues for Sustainable Energy and Bioproducts PDF eBook
Author R. Praveen Kumar
Publisher Academic Press
Pages 643
Release 2019-11-08
Genre Science
ISBN 0128189975

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The utilization of various types of biomass residue to produce products such as biofuels and biochemicals means biorefinery technology using biomass residues may become a one-stop solution to the increasing need for sustainable, non-fossil sources of energy and chemicals.Refining Biomass Residues for Sustainable Energy and Bioproducts: Technology, Advances, Life Cycle Assessment and Economics focuses on the various biorefineries currently available and discusses their uses, challenges, and future developments. This book introduces the concept of integrated biorefinery systems, as well as their operation and feedstock sourcing. It explores the specificities, current developments, and potential end products of various types of residue, from industrial and municipal to agricultural and marine, as well as residue from food industries. Sustainability issues are discussed at length, including life cycle assessment, economics, and cost analysis of different biorefinery models. In addition, a number of global case studies examine successful experiences in different regions.This book is an ideal resource for researchers and practitioners in the field of bioenergy and waste management who are looking to learn about technologies involved in residue biorefinery systems, how to reduce their environmental impacts, and how to ensure their commercial viability. - Explores a range of different biorefinery categories, such as industrial, agricultural, and marine biomass residues - Includes a Life Cycle Assessment of biorefinery models, in addition to costs and market analysis. - Features case studies from around the world and is written by an international team of authors