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作 者:Raghu Kc Indu Babu Sara Alatalo Jarno Fohr Tapio Ranta Ismo Tiihonen
机构地区:[1]Laboratory of Bioenergy,Lappeenranta University of Technology,Mikkeli,Finland [2]Laboratory of Green Chemistry,Lappeenranta,University of Technology,Mikkeli,Finland [3]Riihikatu 3,11100,Riihimaki,Finland [4]Tiihonen Ismo Olavi Saahkarintie 176 77700 Rautalampi,Finland
出 处:《Journal of Sustainable Bioenergy Systems》2017年第3期138-148,共11页可持续生物质能源系统(英文)
基 金:Auramo Foundation for funding this project
摘 要:Thermal treatment of biomass has been attracting attention for a decade or so, especially torrefaction. However, for the past few years, wet pyrolysis, also known as hydrothermal carbonization (HTC), has been getting some attention. Hydrothermal carbonization is a thermal treatment of biomass in the presence of water in a temperature range of 180°C - 260°C. This method of treating biomass has some benefits which others do not, such as it can handle extremely wet biomass. However, treating biomass may not be enough for practical use. It may need to be transported and stored. Thus, this study explored the idea of pelletizing the HTC biomass. The mechanical strength of the HTC pellets was found to be 93%, whereas, higher heating value (HHV) (dry basis) was found to be 4% higher than the corresponding white pellets. The initial results with some limited parameters indicated that it would be possible to pelletize without binder. However, extensive research on energy balance and economic assessment would be necessary to achieve economic feasibility.Thermal treatment of biomass has been attracting attention for a decade or so, especially torrefaction. However, for the past few years, wet pyrolysis, also known as hydrothermal carbonization (HTC), has been getting some attention. Hydrothermal carbonization is a thermal treatment of biomass in the presence of water in a temperature range of 180°C - 260°C. This method of treating biomass has some benefits which others do not, such as it can handle extremely wet biomass. However, treating biomass may not be enough for practical use. It may need to be transported and stored. Thus, this study explored the idea of pelletizing the HTC biomass. The mechanical strength of the HTC pellets was found to be 93%, whereas, higher heating value (HHV) (dry basis) was found to be 4% higher than the corresponding white pellets. The initial results with some limited parameters indicated that it would be possible to pelletize without binder. However, extensive research on energy balance and economic assessment would be necessary to achieve economic feasibility.
关 键 词:SUSTAINABLE BIOENERGY Hydrothermal Carbonization Hydrochar PELLETIZATION
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