Gasification of waste materials: technologies for generating energy, gas, and chemicals from municipal solid waste, biomass, nonrecycled plastics, sludges, and wet solid wastes
Gasification of Waste Materials: Technologies for Generating Energy, Gas and Chemicals from MSW, Biomass, Non-recycled Plastics, Sludges and Wet Solid Wastes explores the most recent gasification technologies developing worldwide to convert waste solids to energy and synthesis gas and chemical produ...
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Hauptverfasser: | , , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
London
Academic Press
[2018]
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Schlagworte: | |
Online-Zugang: | FAW01 URL des Erstveröffentlichers URL des Erstveröffentlichers |
Zusammenfassung: | Gasification of Waste Materials: Technologies for Generating Energy, Gas and Chemicals from MSW, Biomass, Non-recycled Plastics, Sludges and Wet Solid Wastes explores the most recent gasification technologies developing worldwide to convert waste solids to energy and synthesis gas and chemical products. The authors examine the thermodynamic aspects, accepted reaction mechanisms and kinetic constraints of using municipal solid waste (MSW), biomass, non-recycled plastics (NRP), sludges and wet solid wastes as feedstock. They identify the distinctions between pyrolysis, gasification, plasma, hydrothermal gasification, and supercritical systems. A comprehensive summary of laboratory and demonstration activities is presented, as well as field scale systems that have been in operation using solid waste streams as input, highlighting their areas of disconnect and alignment. The book also provides a summary of information on emissions from the stack, comparing them with other thermal conversion systems using similar feedstock. It then goes on to assess the areas that must be improved to ensure gasification systems become as successful as combustion systems operating on waste streams, ranging from feedstock processing to gasifier output gas clean-up, downstream system requirements and corrosion. The economics and future projections for waste gasification systems are also discussed. For its consolidation of the current technical knowledge, this text is recommended for engineering researchers, graduate students, industry professionals, municipal engineers and decision makers when planning, designing and deploying waste to energy projects, especially those using MSW as feedstock |
Beschreibung: | 1 online resource |
ISBN: | 9780128127179 0128127171 |
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520 | |a Gasification of Waste Materials: Technologies for Generating Energy, Gas and Chemicals from MSW, Biomass, Non-recycled Plastics, Sludges and Wet Solid Wastes explores the most recent gasification technologies developing worldwide to convert waste solids to energy and synthesis gas and chemical products. The authors examine the thermodynamic aspects, accepted reaction mechanisms and kinetic constraints of using municipal solid waste (MSW), biomass, non-recycled plastics (NRP), sludges and wet solid wastes as feedstock. They identify the distinctions between pyrolysis, gasification, plasma, hydrothermal gasification, and supercritical systems. A comprehensive summary of laboratory and demonstration activities is presented, as well as field scale systems that have been in operation using solid waste streams as input, highlighting their areas of disconnect and alignment. The book also provides a summary of information on emissions from the stack, comparing them with other thermal conversion systems using similar feedstock. It then goes on to assess the areas that must be improved to ensure gasification systems become as successful as combustion systems operating on waste streams, ranging from feedstock processing to gasifier output gas clean-up, downstream system requirements and corrosion. The economics and future projections for waste gasification systems are also discussed. For its consolidation of the current technical knowledge, this text is recommended for engineering researchers, graduate students, industry professionals, municipal engineers and decision makers when planning, designing and deploying waste to energy projects, especially those using MSW as feedstock | ||
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Datensatz im Suchindex
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author | Ciuta, Simona Tsiamis, Demetra Castaldi, Marco J. 1970- |
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dewey-full | 665.7/76 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 665 - Industrial oils, fats, waxes & gases |
dewey-raw | 665.7/76 |
dewey-search | 665.7/76 |
dewey-sort | 3665.7 276 |
dewey-tens | 660 - Chemical engineering |
discipline | Chemie / Pharmazie |
format | Electronic eBook |
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id | DE-604.BV045382654 |
illustrated | Not Illustrated |
indexdate | 2024-07-10T08:16:38Z |
institution | BVB |
isbn | 9780128127179 0128127171 |
language | English |
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publishDate | 2018 |
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publisher | Academic Press |
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spelling | Ciuta, Simona Verfasser aut Gasification of waste materials technologies for generating energy, gas, and chemicals from municipal solid waste, biomass, nonrecycled plastics, sludges, and wet solid wastes Simona Cuita, Demetra Tsiamis, Marco J. Castaldi London Academic Press [2018] © 2018 1 online resource txt rdacontent c rdamedia cr rdacarrier Gasification of Waste Materials: Technologies for Generating Energy, Gas and Chemicals from MSW, Biomass, Non-recycled Plastics, Sludges and Wet Solid Wastes explores the most recent gasification technologies developing worldwide to convert waste solids to energy and synthesis gas and chemical products. The authors examine the thermodynamic aspects, accepted reaction mechanisms and kinetic constraints of using municipal solid waste (MSW), biomass, non-recycled plastics (NRP), sludges and wet solid wastes as feedstock. They identify the distinctions between pyrolysis, gasification, plasma, hydrothermal gasification, and supercritical systems. A comprehensive summary of laboratory and demonstration activities is presented, as well as field scale systems that have been in operation using solid waste streams as input, highlighting their areas of disconnect and alignment. The book also provides a summary of information on emissions from the stack, comparing them with other thermal conversion systems using similar feedstock. It then goes on to assess the areas that must be improved to ensure gasification systems become as successful as combustion systems operating on waste streams, ranging from feedstock processing to gasifier output gas clean-up, downstream system requirements and corrosion. The economics and future projections for waste gasification systems are also discussed. For its consolidation of the current technical knowledge, this text is recommended for engineering researchers, graduate students, industry professionals, municipal engineers and decision makers when planning, designing and deploying waste to energy projects, especially those using MSW as feedstock TECHNOLOGY & ENGINEERING / Power Resources / General bisacsh Biomass gasification fast Biomass gasification Tsiamis, Demetra aut Castaldi, Marco J. 1970- aut Erscheint auch als Druck-Ausgabe 9780128127162 https://www.sciencedirect.com/science/book/9780128127162 Verlag URL des Erstveröffentlichers Volltext http://www.sciencedirect.com/science/book/9780128127162 Verlag URL des Erstveröffentlichers Volltext |
spellingShingle | Ciuta, Simona Tsiamis, Demetra Castaldi, Marco J. 1970- Gasification of waste materials technologies for generating energy, gas, and chemicals from municipal solid waste, biomass, nonrecycled plastics, sludges, and wet solid wastes TECHNOLOGY & ENGINEERING / Power Resources / General bisacsh Biomass gasification fast Biomass gasification |
title | Gasification of waste materials technologies for generating energy, gas, and chemicals from municipal solid waste, biomass, nonrecycled plastics, sludges, and wet solid wastes |
title_auth | Gasification of waste materials technologies for generating energy, gas, and chemicals from municipal solid waste, biomass, nonrecycled plastics, sludges, and wet solid wastes |
title_exact_search | Gasification of waste materials technologies for generating energy, gas, and chemicals from municipal solid waste, biomass, nonrecycled plastics, sludges, and wet solid wastes |
title_full | Gasification of waste materials technologies for generating energy, gas, and chemicals from municipal solid waste, biomass, nonrecycled plastics, sludges, and wet solid wastes Simona Cuita, Demetra Tsiamis, Marco J. Castaldi |
title_fullStr | Gasification of waste materials technologies for generating energy, gas, and chemicals from municipal solid waste, biomass, nonrecycled plastics, sludges, and wet solid wastes Simona Cuita, Demetra Tsiamis, Marco J. Castaldi |
title_full_unstemmed | Gasification of waste materials technologies for generating energy, gas, and chemicals from municipal solid waste, biomass, nonrecycled plastics, sludges, and wet solid wastes Simona Cuita, Demetra Tsiamis, Marco J. Castaldi |
title_short | Gasification of waste materials |
title_sort | gasification of waste materials technologies for generating energy gas and chemicals from municipal solid waste biomass nonrecycled plastics sludges and wet solid wastes |
title_sub | technologies for generating energy, gas, and chemicals from municipal solid waste, biomass, nonrecycled plastics, sludges, and wet solid wastes |
topic | TECHNOLOGY & ENGINEERING / Power Resources / General bisacsh Biomass gasification fast Biomass gasification |
topic_facet | TECHNOLOGY & ENGINEERING / Power Resources / General Biomass gasification |
url | https://www.sciencedirect.com/science/book/9780128127162 http://www.sciencedirect.com/science/book/9780128127162 |
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