Biomass Fractionation Technologies for a Lignocellulosic Feedstock-based Biorefinery reviews the extensive research and tremendous scientific and technological developments that have occurred in the area of biorefinering, including industrial processes and product development using ‘green technologies’, often referred as white biotechnology.
As there is a huge need for new design concepts for modern biorefineries as an alternative and amendment to industrial crude oil and gas refineries, this book presents the most important topics related to biomass fractionation, including advances, challenges, and perspectives, all with references to current literature for further study.
Presented in 26 chapters by international field specialists, each chapter consists of review text that comprises the most recent advances, challenges, and perspectives for each fractionation technique. The book is an indispensable reference for all professionals, students, and workers involved in biomass biorefinery, assisting them in establishing efficient and economically viable process technologies for biomass fractionation.
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During the last decade, there have been tremendous scientific and technological developments in the area of biorefinering including industrial processes and product development using ‘green technologies’, often referred as white biotechnology. There is a huge need for concepts to be designed for modern biorefineries, as an alternative and as an amendment to industrial crude oil and gas refineries.
Biomass Fractionation Technologies for a Lignocellulosic Feedstock Based Biorefinery presents the most important topics related to biomass fractionation, including advances, challenges and perspectives with references to current literature for further in-depth study.
Presented in 26 chapters by international field specialists, each consists of a review text comprising the most recent advances, challenges and perspectives for each fractionation technique. The book is indispensable reference for all professionals, students and workers, involved in biomass biorefinery and assists them in establishing efficient and economically viable process technologies for biomass fractionation.
Dr. Solange I. Mussatto is Invited Assistant Professor at the Department of Biotechnology at Delft University of Technology (TU Delft) in The Netherlands. She has a background in Chemical Industrial Engineer, and MSc and PhD degrees in Industrial Biotechnology (Area: Biomass Conversion) from University of São Paulo (Brazil). Dr. Mussatto has over 17 years of experience in the areas of Biomass Pretreatment and Fermentation Technology with focus on the development of biorefinery strategies for total conversion and valorization of biomass. During her entire research career (started in 1998), she has been actively involved in activities related to the conversion of biomass (lignocellulosic materials, macroalgae and plants) into valuable biobased products. Her research interests include the use of chemical, biochemical, biological and thermal processes for biomass pretreatment, and conversion of such materials by chemical or fermentation routes into valuable compounds such as ethanol, xylitol, organic acids, fructooligosaccharides, bioactive compounds, alcoholic beverages, and enzymes, among others. Due to the wide experience on biomass and biorefinery areas, Dr. Mussatto is frequently invited for oral presentations in scientific conferences, and has already established a great network with researchers from different countries including Europe, South America and Asia. One of the studies coordinated by Dr. Mussatto was recently recognized by the Time magazine (US) as one of the best inventions of the year 2013. Dr. Mussatto has participated in numerous research projects and has published more than 115 full papers in peer-reviewed journals, 13 book chapters, 3 patents and more than 230 papers in scientific conferences. The impact of her published works is reflected in more than 3000 citations and h-index: 28 (Scopus). She is Associate Editor of the Brazilian Journal of Microbiology, Editorial Board Member of the Biofuel Research Journal, and has been on the advisory board of several leading international scientific journals and international funding agencies.
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