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1.
Bioresour Technol ; 217: 104-12, 2016 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-26976062

RESUMO

The aim of this research was to establish whether hydrothermal conditioning and subsequent thermochemical processing via batch torrefaction or slow pyrolysis may improve the fuel quality of grass residues. A comparison in terms of fuel quality was made of the direct thermochemical processing of the feedstock versus hydrothermal conditioning as a pretreatment prior to thermochemical processing. Hydrothermal conditioning reduced ash content, and particularly nitrogen, potassium and chlorine contents in the biomass. The removal of volatile organic matter associated with thermochemical processes can increase the HHV to levels of volatile bituminous coal. However, slow pyrolysis only increased the HHV of biomass provided a low ash content (<6%) feedstock was used. In conclusion, hydrothermal conditioning can have a highly positive influence on the efficiency of thermochemical processes for upgrading low-value (high-ash) biomass to a higher quality fuel.


Assuntos
Biomassa , Biotecnologia/métodos , Temperatura , Carvão Vegetal/química , Carvão Mineral/análise , Água
2.
Bioresour Technol ; 102(22): 10441-50, 2011 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-21963902

RESUMO

Green cut material is a potential source of renewable energy which is not fully exploited through conventional energy recovery systems. A new energy conversion process, the integrated generation of solid fuel and biogas from biomass (IFBB), which includes mechanical separation after hydro-thermal conditioning, was investigated. Ash softening temperature and lower heating value of the solid fuel were increased through the IFFB process in comparison to the untreated raw material. The net energy yield of IFBB at 40 °C conditioning temperature ranged between 1.96 and 2.85 kWh kg(-1) dry matter (DM) and for the direct combustion between 1.75 and 2.65 kWh kg(-1) DM. Conversion efficiencies for the IFBB system were 0.42-0.68 and for direct combustion 0.42-0.63. The IFBB system produces storable energy from material which is nowadays not used for energy conversion.


Assuntos
Biocombustíveis/análise , Conservação de Recursos Energéticos/métodos , Características da Família , Energia Renovável , Anaerobiose , Análise de Variância , Biomassa , Metano/análise , Reologia , Termodinâmica
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