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Biogas from waste and renewable resources : an introduction

Author: Dieter Deublein; Angelika Steinhauser
Publisher: Weinheim : Wiley-VCH, ©2011.
Edition/Format:   Print book : English : 2nd, rev. and expanded edView all editions and formats
Summary:
Designed as a practical introduction to biogas plant design and operation, the author covers both the biological and technical aspects of biogas generation. The full range of biogas substrates and processing modes is explained, from agricultural and industrial waste to marine algae and sediment. On-site use of biogas for conversion into electricity, fuel and heat is also discussed, as are safety and regulatory  Read more...
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Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Dieter Deublein; Angelika Steinhauser
ISBN: 9783527327980 3527327983
OCLC Number: 697390920
Description: xxviii, 550 pages : illustrations (some color) ; 25 cm
Contents: pt. 1. Potential and history. 1. Energy supply-today and in the future --
2. Energy supply in the future-scenarios --
3. Potential for transforming biomass into end-point energy sources --
4. History and status to date in Europe --
5. History and status to date worldwide --
6. General aspects of the recovery of biomass in the future --
pt. 2. Substrates and biogas. 7. Substrate --
8. Biogas --
pt. 3. Formation of biogas. 9. Biochemistry --
10. Bioreactions --
11. Process parameters --
pt. 4. Microorganisms in methanogenic ecosystems. 12. Methanogenic ecosystems --
13. Microorganisms in methanation --
pt. 5. Dangers with biogas plants and laboratory equipment. 14. Guidelines and regulations --
15. The biogas laboratory --
pt. 6. Equipment of a biogas plant. 16. Tanks and bioreactors --
17. Equipment for tempering the substrate --
18. Thermal insulation --
19. Agitators --
20. Mixing of biomass and water --
21. Machines to separate the liquid from the biomass --
22. Pipes --
23. Pumps --
24. Measurement, control, and automation technology --
25. Exhaust air cleaning --
pt. 7. Upstream and downstream processing. 26. Transportation and storage of the biomass --
27. Process technology for upstream processing --
28. Feeding --
29. Digested residue --
30. Wastewater --
pt. 8. Fermentation --
Agricultural plant. 31. Batchwise and continuous processes without separators --
32. Existing installations from different suppliers --
33. Operation of a plant without separation equipment --
34. Benefits of a biogas plant --
35. Typical design calculation for an agricultural biogas plant --
36. Economics calculations for biogas plants --
37. Efficiency --
pt. 9. Fermentation --
Industrial plants. 38. Installation with substrate dilution and subsequent water separation --
39. Installation with biomass accumulation --
40. Plants with separation of non-hydrolyzable biomass --
41. Percolation process --
42. Special plant installations --
pt. 10. Biogas storage and preparation. 43. Biogasholder --
44. Gas preparation --
45. Quantities of gas and measurement of gas quality --
46. Liquefaction or compression of the biogas --
pt. 11. Biogas utilization. 47. Utilization of gas exclusively to generate heat --
48. Utilization of gas to generate current and heat --
49. Biogas for feeding into the natural gas network --
50. Biogas as fuel for vehicles.
Responsibility: Dieter Deublein and Angelika Steinhauser.
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Abstract:

The leading book on the market just got better: With its unique approach covering all aspects of setting up and running a biogas plant, this new edition has been expanded to include recent advances  Read more...

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The leading book on the market just got better. With its unique approach covering all aspects of setting up and running a biogas plant, this new edition has been explained to include recent advances Read more...

 
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Potential and history. 1. Energy supply-today and in the future -- 2. Energy supply in the future-scenarios -- 3. Potential for transforming biomass into end-point energy sources -- 4. History and status to date in Europe -- 5. History and status to date worldwide -- 6. General aspects of the recovery of biomass in the future -- pt. 2. Substrates and biogas. 7. Substrate -- 8. Biogas -- pt. 3. Formation of biogas. 9. Biochemistry -- 10. Bioreactions -- 11. Process parameters -- pt. 4. Microorganisms in methanogenic ecosystems. 12. Methanogenic ecosystems -- 13. Microorganisms in methanation -- pt. 5. Dangers with biogas plants and laboratory equipment. 14. Guidelines and regulations -- 15. The biogas laboratory -- pt. 6. Equipment of a biogas plant. 16. Tanks and bioreactors -- 17. Equipment for tempering the substrate -- 18. Thermal insulation -- 19. Agitators -- 20. Mixing of biomass and water -- 21. Machines to separate the liquid from the biomass -- 22. Pipes -- 23. Pumps -- 24. Measurement, control, and automation technology -- 25. Exhaust air cleaning -- pt. 7. Upstream and downstream processing. 26. Transportation and storage of the biomass -- 27. Process technology for upstream processing -- 28. Feeding -- 29. Digested residue -- 30. Wastewater -- pt. 8. Fermentation -- Agricultural plant. 31. Batchwise and continuous processes without separators -- 32. Existing installations from different suppliers -- 33. Operation of a plant without separation equipment -- 34. Benefits of a biogas plant -- 35. Typical design calculation for an agricultural biogas plant -- 36. Economics calculations for biogas plants -- 37. Efficiency -- pt. 9. Fermentation -- Industrial plants. 38. Installation with substrate dilution and subsequent water separation -- 39. Installation with biomass accumulation -- 40. Plants with separation of non-hydrolyzable biomass -- 41. Percolation process -- 42. Special plant installations -- pt. 10. Biogas storage and preparation. 43. Biogasholder -- 44. Gas preparation -- 45. Quantities of gas and measurement of gas quality -- 46. Liquefaction or compression of the biogas -- pt. 11. Biogas utilization. 47. Utilization of gas exclusively to generate heat -- 48. Utilization of gas to generate current and heat -- 49. Biogas for feeding into the natural gas network -- 50. Biogas as fuel for vehicles.<\/span>\"@en<\/a> ;\u00A0\u00A0\u00A0\nschema:description<\/a> \"Designed as a practical introduction to biogas plant design and operation, the author covers both the biological and technical aspects of biogas generation. The full range of biogas substrates and processing modes is explained, from agricultural and industrial waste to marine algae and sediment. On-site use of biogas for conversion into electricity, fuel and heat is also discussed, as are safety and regulatory issues. Dozens of real-life examples of European biogas plants already in operation illustrate the contents, as do numerous schemes, diagrams and summary tables. 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