Showing posts with label Download PDF Book natural gas. Show all posts
Showing posts with label Download PDF Book natural gas. Show all posts

Increasing access to homestead biogas in Tentulia, Bangladesh

Increasing access to homestead biogas in Tentulia, Bangladesh

  oil & gas biogas, sustainable development, green energy, renewable energy bangladesh
snvworld.org – 
The purpose of this Institute for Sustainable Development (ISD) pilot project is to encourage the use of homestead biogas technology in Tentulia district, Bangladesh. The ISD provided the possibility to acquire a homestead biogas plant without any cash down-payment and to use cow dung and bioslurry as a reimbursement mechanism. The study also sheds new light on the broader motivations for acquiring biogas plants; in particular regarding the barriers to acquiring biogas plants and indicators to better determine potential biogas plant owners.

Biogas Plant Training Material PDF Books

Biogas Plant Training Material PDF Books

Reference icon
FAO (Editor) (1996): Biogas Technology - A Training Manual for Extension. Consolidated Management Services Nepal (P) Ltd. and Food and Agriculture Organization of the United Nations (FAO). URL [Accessed: 19.04.2010]
This manual contains a complete set of training materials on various topics around the large-scale dissemination of domestic (agricultural) biogas systems, including a system approach to biogas technology, biogas programmes, reuse of slurry, subsidy and institutional financing, quality standards and monitoring and evaluation issues.

Reference icon
LARDINOIS, I.; KLUNDERT v.d., A. (1993): Organic Waste. Options for small-scale resource recovery. Gouda: WASTE Consultants.
This book is the first in a series on Urban Solid Waste Recovery, and represents an attempt to document the experiences of recycling activities in cities around the world. It covers the whole waste chain from municipal or agricultural generation of organic waste to different treatment methods, such as composting, co-composting, anaerobic digestion with production of biogas, and briquetting.

Reference icon
MES, T.Z.D. de; STAMS, A.J.M. ; ZEEMAN, G. (2003): Chapter 4. Methane production by anaerobic digestion of wastewater and solid wastes. In: REITH, J.H. (Editor); WIJFFELS, R.H. (Editor); BARTEN, H. (Editor) (2003): Biomethane and Biohydrogen. Status and perspectives of biological methane and hydrogen production. , 58-94.
This chapter is part of a publication, commissioned by the Netherlands Agency for Energy and the Environment (Novem) on the status and perspectives of research and development in the field of high-tech biological production of methane and hydrogen. Chapter 4 gives a short but precise introduction the technological aspects of waste treatment by anaerobic digestion and the reuse of the produced biogas.

Reference icon
OSTREM, K. (2004): Greening Waste: Anaerobic Digestion for treating the organic Fraction of Municipal Solid Wastes. Colombia: The Fu Foundation of School of Engineering and Applied Science, Columbia University.
This paper outlines the processes of anaerobic digestion, reviews the current technology available for the anaerobic digestion of municipal organic wastes and proposes the adoption of the technology in the United States, beginning with commercial waste in New York City. The greatest concerns for New York are space and transportation, indicating that the most appropriate system is one using solid waste near the site of waste generation. A demonstration plant was constructed to show the improvement of local environmental conditions, job creation, and electricity generation in order to achieve support at policy level.

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ISAT (Editor); GTZ (Editor) (1999): Biogas Basics. Information and Advisory Services on Appropriate Technology (ISAT) and German Agency for Technical Cooperation GmbH (GTZ) . URL [Accessed: 19.04.2010]
The information service on biogas technology has been developed and produced on the behalf of the GTZ project Information and Advisory Service on Appropriate Technology (ISAT). Volume I tells you all you need to get an overview on biogas sanitation systems, from history over process and operation parameters to social, political and cultural issues.

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ISAT/GTZ (Editor) (1999): Biogas - Costs and Benefits and Biogas – Programme Implementation. Information and Advisory Services on Appropriate Technology (ISAT) and German Agency for Technical Cooperation GmbH (GmbH) . URL [Accessed: 19.04.2010]
This information service on biogas technology has been developed and produced on the order of the GTZ project Information and Advisory Service on Appropriate Technology (ISAT). Volume III discusses the micro- and macro-economic viability of biogas sanitation systems.

Reference icon
ISAT (Editor); GTZ (Editor) (1999): Biogas - Country Reports. Information and Advisory Services on Appropriate Technology (ISAT) and German Agency for Technical Cooperation GmbH (GTZ). URL [Accessed: 19.04.2010]
The information service on biogas technology has been developed and produced on the behalf of the GTZ project Information and Advisory Service on Appropriate Technology (ISAT). Volume IV summarises over 20 case studies from biogas sanitation as an appropriate technology in developing countries.

BIOGAS TECHNOLOGY: A TRAINING MANUAL PDF Download

BIOGAS TECHNOLOGY: A TRAINING MANUAL FOR EXTENSION

source: http://www.fao.org/docrep/008/ae897e/ae897e00.htm


TABLE OF CONTENTS
PREFACE
TABLE OF TABLES
TABLE OF FIGURES
TABLE OF CHARTS
TABLE OF ANNEXES
ACRONYMS AND ABBREVIATIONS
RELEVANT UNITS AND CONVERSION FACTORS
INTRODUCTION TO MANUAL
SESSION ONE : SYSTEM APPROACH TO BIOGAS TECHNOLOGY
1.1 Introduction
1.2 Components of a Biogas System
1.2.1 Biogas
1 2.2 Methanogenic Bacteria or methanogens
1.2.3 Biodigester
1.2.4. Inputs and their Characteristics
1.2.5 Digestion
1.2.6 Slurry
1.2.7 Use of Biogas
1.3 Implications of Biogas System
1.4 Session Plan
1.5 Review Questions
1.6 References
1.7 Further Reading Materials
SESSION TWO : RELEVANCE OF BIOGAS TECHNOLOGY TO NEPAL
2.1 Introduction
2.2 Energy Situation in Nepal
2.2.1 Tradition Sources of Energy
2.2.2 Commercial Sources of Energy
2.2.3 Sources of Alternative Energy
2.3 Biogas in Other Countries
2.4 Biogas Potential in Nepal
2.5 Uses of Biogas
2.5.1 Cooking
2.5.2 Lighting
2.5.3 Refrigeration
2.5.4 Biogas-fueled Engines
2.5.5 Electricity Generation
2.6 Biogas and Agriculture
2.7 Biogas and Forests
2.8 Biogas and Women
2.9 Health and Sanitation
2.10 Municipal Waste
2.11 Economy and the Employment
2.12 Session Plan
2.13 Review Questions
2.14 References
2.15 Further Reading Materials

SESSION THREE : BIOGAS PROGRAMMES
3.1 Introduction
3.2 Biogas Programmes in China
3.2.1 Use of Gas and Slurry
3.2.2 Training
3.2.3 Organization
3.3 Biogas programme in India
3.4 Biogas in Nepal
3.4.1 Brief History of Biogas Development in Nepal
3.4.2 Programmes of GGC and its Linkage
3.4.3 Support for the Development of a National Biogas Programme (FAO/TCP/NEP/4451-T)
3.4.4 Biogas Support Programme
3.4.5 Basic Features of BSP Third Phase
3.4.6 Biogas Companies
3.4.7 Need for Research and Development
3.5 Session Plan
3.6 Review Questions
3.7 References
3.8 Further Reading Materials
SESSION FOUR : UTILIZATION OF SLURRY AS FEED AND FERTILIZER
4.1 Introduction
4.2 Inter-Relationship of Biogas Technology and Agriculture
4.3 Limitations of Chemical Fertilizer Use
4.4 Organic Fertilizer
4.5 Importance of Slurry for Crop Production
4.6 Characteristics of Digested Slurry
4.7 Utilization of Digested Slurry...
4.7.1 Application of Slurry in Liquid Form
4.7.2 Application of Slurry in Dried Form
4.7.3 Utilization of Slurry for Compost Making
4.8 Size of Compost Pit
4.9 Quality Assessment of Compost and Digested Slurry
4.10 Influence of Slurry on the Yield of Crops and Vegetables
4.11 Field Experiment
4.12 Effluent as a Supplement in Ration of Animal and Fish

4.12.1 Digested Slurry as a Feed to Animal
4.12.2 Digested Slurry as a Feed to Fish
4.12.3 Improving the Quality of Feed
4.13 Other Uses
4.14 Session Plan
4.15 Review Questions
4.16 References
4.17 Other Reading Materials
SESSION FIVE : INSTALLATION COST AND FINANCIAL VIABILITY
5.1 Introduction
5.2 Financial Analysis
5.2.1 Project Life
5.2.2 Benefits and Costs
5.2.3 Cash Flow Analysis
5.2.4 Time Value of Money and Discount Rate (Factor)
5.2.5 Net Present Value
5.2.6 Internal Rate of Return (IRR)
5.2.7 Benefit Cost Ratio
5.3 Discussion on Result of Financial Analysis
5.4 Financial Viability Assessment as Practiced by ADB/N
5.5 Indicators of Financial Viability of Biogas Plants
5.6 Economic Analysis

5.6.1 Economic Valuation of Firewood
5.6.2 Economic Valuation of Kerocene
5.6.3 Economic Valuation of Labour
5.6.4 Value of Slurry
5.6.5 Investment Cost
5.7 Session Plan
5.8 Review Questions
5.9 References
SESSION SIX : SUBSIDY AND INSTITUTIONAL FINANCING
6.1 Introduction
6.2 Definition of Subsidy
6.3 Rationale of Subsidy for Biogas Plant Installation
6.4 Subsidy and External Financing
6.5 Review of Subsidy on Biogas Programmes in Nepal
6.6 Institutional Financing

6.7 Flow of Funds

6.8 Procedure for Obtaining Loan and Subsidy with Technical Assistance
6.9 Session Plan

6.10 Review Questions
6.11 Reference

SESSION SEVEN : FIELD VISIT PROGRAMME
7.1 Introduction
7.2 Methodology

7.3 Themes for Observation
7.4 Information on Plants Visited in each of the Five Training
7.5 General Opinions and Impression about Field Visits
7.6 Review Questions
SESSION EIGHT : EXTENSION SUPPORT SERVICES FOR BIOGAS
8.1 Introduction
8.2 From a Single Plant to National Objectives and Strategy

8.2.1 Building Government Commitment
8.2.2 Energy Related Objective of Eighth Five Year Plan
8.2.3 Objectives and Strategies of Perspective Energy Plan
8.3 Institutions for Extension of Biogas Technology
8.3.1 Establishment of Biogas Companies and Biogas Related NGOs
8.3.2 Formation of Biogas Steering Committee
8.3.3 Proposed Alternate Energy Promotion Centre
8.4 Factors Affecting Biogas Extension
8.4.1 Government Commitment
8.4.2 Subsidy
8.4.3 Institutional Arrangements
8.4.4 Energy Pricing
8.4.5 Education and Access to Technology
8.4.6 Performance of Existing Plants
8.5 Extension Approaches
8.6 Extension Methods
8.6.1 Door-to-door Visits
8.6.2 Use of Local Leaders
8.6.3 Exhibitions and Demonstration
8.6.4 Use of Mass Media
8.6.5 Occasional Publications
8.6.6 Audio-Visuals
8.6.7 Seminars and Workshops
8.6.8 Training
8.7 Session Plan
8.8 Relevant Questions
8.9 References
SESSION NINE : QUALITY STANDARDS
9.1 Introduction
9.2 The Need for Quality Control
9.3 Development of a System for Quality Control
9.3.1 Enforcement of Quality Control Measures
9.4 Important Parameters for Quality Control

9.4.1 Design
9.4.2 Deciding on the Size or Capacity of a Plant
9.4.3 Site Selection
9.4.4 Construction Materials and Trained Mason
9.4.5 Critical Stage of Construction
9.5 Appliances and Accessories
9.6 Commissioning
9.7 After-Sale-Services
9.8 Mobile Team for Supervision, Follow up and Monitoring
9.9 Common Problems in Plant Operation
9.10 Session Plan
9.11 Review Questions
9.12 References
9.13 Further Reading Materials
SESSION TEN : MONITORING AND EVALUATION
10.1 Introduction
10.2 Definitions
10.3 Indicators and Data Base
10.4 M&E as Integral Part of Programme Implementation Process
10.5 M&E At Different Levels
10.5.1 User Level
10.5.2 Biogas Company Level
10.5.3 Programme Level
10.5.4 National Level
10.6 The Logical Framework
10.7 Session Plan
10.8 Review Questions
10.9 References

APPENDICES
Appendix - 1 Registration Form
Appendix - 2 Training Schedule (including field visit)
Appendix - 3 Evaluation Form (to be filled in by the participants)
Appendix - 4 Model of Certificate
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