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Biomass, Biopolymer-Based Materials and Bioenergy: Construction, Biomedical and Other Industrial Applications covers a broad range of material types, including natural fiber reinforced polymer composites, particulate composites, fiberboard, wood fiber composites, and plywood composite that utilize natural, renewable and biodegradable agricultural biomass. In terms of bioenergy, the authors explore not only the well-known processing methods of biofuels, but also the kinetics of biofuels production pathways, a techno-economic analysis on biomass gasification, and biomass gasification with further upgrading into diesel additives and hybrid renewable energy systems for power generation. Further chapters discuss advanced techniques for the development of biomass-based composites, biopolymer-based composites, biomass gasification, thermal kinetic design and techno-economic analysis of biomass gasification. By introducing these topics, the book highlights a totally new research theme in biopolymer-based composite materials and bioenergy.
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Pretreating biomass samples results in slurry, a mixture of liquid and solid material. For analytical purposes the liquid and solid material must be separated. The analytical results on each fraction are mathematically combined at the conclusion of the analyses to obtain mass balance. The following procedure covers two methods of separating these fractions. The centrifugation method is useful for severely pretreated samples, while the filtration method can be used for mildly pretreated "chunky" material.
Biomass --- Biomass conversion --- Biomass --- Research.
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Biomass --- Biomass --- Biomass conversion --- Research.
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Plant biomass. --- Biomass --- Plants
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"Explores the processes, technology, end-use and economics involved in torrefaction at industrial scale for heat and power generation. Its authors combine their industry experience with their academic expertise to provide a thorough overview of the topic. Starting at feedstock pretreatment, followed by torrefaction processes, the book includes plant design and operation, safety aspects and case studies focusing on the needs and challenges of industrial scale. Commercially available technologies are examined and compared, and their economical evaluation and life cycle assessments are covered as well. Attention is also given to non-woody feedstock, alternative applications, derived fuels, recent advances and expected future developments"--
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Biomass conversion --- Biomass --- Hydrolysis.
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