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Biogas technology in Southeast Asia
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Aggarangsi, Pruk.
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Biogas technology in Southeast Asia
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Biogas technology in Southeast Asia/ by Pruk Aggarangsi ... [et al.].
其他作者:
Aggarangsi, Pruk.
出版者:
Singapore :Springer Nature Singapore : : 2023.,
面頁冊數:
xxvi, 176 p. :ill. (chiefly col.), digital ;24 cm.
內容註:
Introduction to Biogas -- Anaerobic Digestion and Biogas Production -- Reactor Designs -- Pretreatment of biogas input -- Control of Biogas yields -- Processing Biogas Plant Effluent -- Biogas Utilization -- Case study: design a biogas plant.
Contained By:
Springer Nature eBook
標題:
Biogas - Southeast Asia. -
電子資源:
https://doi.org/10.1007/978-981-19-8887-5
ISBN:
9789811988875
Biogas technology in Southeast Asia
Biogas technology in Southeast Asia
[electronic resource] /by Pruk Aggarangsi ... [et al.]. - Singapore :Springer Nature Singapore :2023. - xxvi, 176 p. :ill. (chiefly col.), digital ;24 cm. - Green energy and technology,1865-3537. - Green energy and technology..
Introduction to Biogas -- Anaerobic Digestion and Biogas Production -- Reactor Designs -- Pretreatment of biogas input -- Control of Biogas yields -- Processing Biogas Plant Effluent -- Biogas Utilization -- Case study: design a biogas plant.
This book on biogas is about the production and use of biogas with an emphasis on the raw materials and processes suitable for use in Southeast Asia. It is a gas formed when organic matter decomposes in an anaerobic digestion process. It can be made from any organic substance but the most economic are organic products from waste such as agricultural or general household waste, sewage, manure, municipal waste or food waste. As this raw material can be renewed indefinitely, biogas produced from it, is considered a renewable energy source. Worldwide interest in renewable energy sources is gathering momentum especially as concern for climate change mounts. Biogas generation helps reduce reliance on the use of fossil fuels. Producing biogas through biodigestion is non-polluting as there is no combustion or energy addition especially in the warmer climes of Southeast Asia. In this region, poorly managed landfills allow toxic liquids to drain into underground water sources. If instead, these wastes were used in a biogas plant, water pollution would be reduced. The same argument could be made for the local air quality. Therefore, biogas generation, in addition to producing renewable energy, also improves local water and air quality. The solid end-waste product of the biogas generation process is enriched natural organic matter (digestate), which can be substituted for chemical fertilizers, providing another environmental benefit to biogas. This book is primarily concerned with the production of biogas. From the raw material pre-treatment to the reactor design and operation to the post-treatment system, this book covers all aspects of production. There are many types of biogas reactors, each with their own advantages. Which reactor to select depends on the type and quantity of raw material, land area available and climate, among other factors. This book provides information on selecting and operating a suitable biogas system for interested parties be they governmental, NGO's, private companies or individuals. Biogas contains primarily methane (CH4) and carbon dioxide (CO2) It may also contain small quantities of carbon monoxide (CO), hydrogen sulfide (H2S), moisture and siloxanes. Extracting the methane from all other gases is called biogas upgrading and the output is then referred to as biomethane. These upgrading processes are not the subject of this book as they are already the subject of a previously published book.
ISBN: 9789811988875
Standard No.: 10.1007/978-981-19-8887-5doiSubjects--Topical Terms:
3631447
Biogas
--Southeast Asia.
LC Class. No.: TP359.B48
Dewey Class. No.: 665.7760959
Biogas technology in Southeast Asia
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This book on biogas is about the production and use of biogas with an emphasis on the raw materials and processes suitable for use in Southeast Asia. It is a gas formed when organic matter decomposes in an anaerobic digestion process. It can be made from any organic substance but the most economic are organic products from waste such as agricultural or general household waste, sewage, manure, municipal waste or food waste. As this raw material can be renewed indefinitely, biogas produced from it, is considered a renewable energy source. Worldwide interest in renewable energy sources is gathering momentum especially as concern for climate change mounts. Biogas generation helps reduce reliance on the use of fossil fuels. Producing biogas through biodigestion is non-polluting as there is no combustion or energy addition especially in the warmer climes of Southeast Asia. In this region, poorly managed landfills allow toxic liquids to drain into underground water sources. If instead, these wastes were used in a biogas plant, water pollution would be reduced. The same argument could be made for the local air quality. Therefore, biogas generation, in addition to producing renewable energy, also improves local water and air quality. The solid end-waste product of the biogas generation process is enriched natural organic matter (digestate), which can be substituted for chemical fertilizers, providing another environmental benefit to biogas. This book is primarily concerned with the production of biogas. From the raw material pre-treatment to the reactor design and operation to the post-treatment system, this book covers all aspects of production. There are many types of biogas reactors, each with their own advantages. Which reactor to select depends on the type and quantity of raw material, land area available and climate, among other factors. This book provides information on selecting and operating a suitable biogas system for interested parties be they governmental, NGO's, private companies or individuals. Biogas contains primarily methane (CH4) and carbon dioxide (CO2) It may also contain small quantities of carbon monoxide (CO), hydrogen sulfide (H2S), moisture and siloxanes. Extracting the methane from all other gases is called biogas upgrading and the output is then referred to as biomethane. These upgrading processes are not the subject of this book as they are already the subject of a previously published book.
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