Biomass Chars: Elaboration, Characterization and Applications ?
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ArticlePublication details: MDPI - Multidisciplinary Digital Publishing Institute 2019Description: 1 electronic resource (342 p.)Content type: - text
- computer
- online resource
- 9783039216628
- 9783039216635
- Mathematics and Science
- Biology, life sciences
- AAEMs
- Boudouard reaction in gasification
- CH4 adsorption
- CO2 adsorption
- Chinese reed
- ELECTRE III
- FT-IR
- MTDATA
- NOx
- NaCl
- NaCl template
- Texaco pilot plant
- activated carbon
- active site
- adsorption isotherms
- amino acid
- anaerobic digestion
- ash from biomass
- ash fusion temperature (AFT)
- ash layer
- biochar
- biochar engineering
- biocrude
- biogas purification
- biomass
- biomass production
- biomass valorization
- breakthrough curves
- calorific value
- char oxidation
- characteristic time analysis
- characterization
- chemical speciation
- chemisorption
- coconut shells
- combustion
- combustion parameters
- desalination
- effective diffusion coefficient
- energy recovery efficiency
- fertilisation
- fixed bed combustor
- food waste
- food waste compost
- food-waste biochar
- gaseous emissions
- gasification
- giant miscanthus
- grape marc
- high heating value (HHV)
- hydrothermal carbonization
- hydrothermal carbonization (HTC)
- interactions
- interferences
- internal diffusion resistance
- kinetic model
- kinetic models
- kinetic parameters
- kinetics
- low-rank coal char
- melting phenomenon
- m
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Biomass can be converted to energy, biofuels, and bioproducts via thermochemical conversion processes, such as combustion, pyrolysis, and gasification. Combustion technology is most widely applied on an industrial scale. However, biomass gasification and pyrolysis processes are still in the research and development stage. The major products from these processes are syngas, bio-oil, and char (called also biochar for agronomic application). Among these products, biomass chars have received increasing attention for different applications, such as gasification, co-combustion, catalysts or adsorbents precursors, soil amendment, carbon fuel cells, and supercapacitors. This Special Issue provides an overview of biomass char production methods (pyrolysis, hydrothermal carbonization, etc.), characterization techniques (e.g., scanning electronic microscopy, X-ray fluorescence, nitrogen adsorption, Raman spectroscopy, nuclear magnetic resonance spectroscopy, X-ray photoelectron spectroscopy, and temperature programmed desorption and mass spectrometry), their properties, and their suitable recovery processes.
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