Modeling Tools for Planning Sustainable Biomass and Waste Conversion into Energy and Chemicals: Optimization of Technical, Economic, Environmental and Social Key Aspects provides practical knowledge on the technical, economic and environmental aspects of bioenergy, biorefining, and waste-to-energy systems through modeling. The book covers key-technologies and cutting-edge advances for biomass assessment using statistics and GIS systems, logistics optimization using Vehicle Routing Problem solvers, Neural Networks and Optimization models based on MILP and NLP, and energy demand assessment. Finally, the book illustrates the application of the methodologies covered through a number of case studies, quizzes and exercises.
In addition, sections cover feasibility plans for biorefineries and combined heat and power systems, and the fundamentals and challenges of modeling biomass and waste conversion processes, such as anaerobic digestion, pyrolysis, gasification, combustion, transesterification, fermentation and hydroprocessing. The authors also examine economic and market factors influencing feedstock availability and price and provide tools for environmental and social impact analysis.
Die Inhaltsangabe kann sich auf eine andere Ausgabe dieses Titels beziehen.
Pietro Bartocci graduated in Agricultural Science and Technology at the University of Perugia (Italy) and also has a PhD in
Energetics at the Biomass Research Centre, University of Perugia. He has more than 15 years’ experience on biomass and
bioenergy sector. He is in the scientific committee of the European Biomass Conference and Exhibition and the International
Conference on Biomass. He is visiting professor at HUST University, Wuhan China and assistant professor at the University of
Perugia, Italy. He participated to several European projects on biomass and collaborated with SME in product carbon footprinting
and LCA analysis.
Francesco Fantozzi, MS in Mechanical Engineering at the University of Perugia, PhD in Energy and Aerospace Propulsion at the University of Pisa, is associate professor at the Department of Engineering of the University of Perugia. He is also a member and past chair of the Coal, Biomass and Alternative Fuels Committee of the ASME and senior research expert for the European Union and the Italian government. His research interests focus on micro-scale energy conversion from biomass and waste with pyrolysis, gasification and anaerobic digestion processes, syngas and oils use in gas turbines and engines, monitoring and diagnostics of power plants, and energy and environmental footprinting. He is co-founder of the spin-off company, Biomass and New Technologies (Bionet).
Qing Yang’s field of study is focused on energy policy analysis, based on systems accounting for environmental impacts from renewable energies and carbon capture and sequestration (CCS) technologies. She has been involved in the life cycle assessment of nonrenewable energy consumption, pollutant emissions, greenhouse gas emissions from renewable energy derived processes and CCS technologies at global, national, city, plant scales, by using and modifying a range of systems methods-energy analysis, exergy analysis,eMergy analysis, life cycle assessment and ecological footprint.
Haiping Yang is a professor in State Key Laboratory of Coal Combustion (SKLCC) at Huazhong University of Science and Technology, China. Her research interests are focused on Biomass pyrolysis/gasification for H2 enriched gas fuel, liquid bio oil and carbon contained materials and chemicals. She also working on the fundamental mechanism exploration of biomass thermochemical conversion process. So far she has published over 100 SCI papers, and 5 were cited in ESI, and the highest SCI cite for 1 paper is over 2000. Now she owns Newton Advanced Fellowships (UK, 2018) and the Chinese Most Cited Researchers (Elsevier, 2014-2018). She gained the National Science Fund for Excellent Young Scholars program in 2016 (China).
Ondrej Mašek is a Lecturer in Engineering Assessment of Biochar at the University of Edinburgh. He established and has lead
biomass pyrolysis and biochar production research at the UK Biochar Research Centre (UKBRC) at UEdin since its establishment
in 2009. Over the past five years his team developed, built and commissioned a unique set of laboratory and pilot-scale facilities
for biomass pyrolysis and gasification, representing a total investment of over £500k by the University and private sponsors. Dr. Mašek‘s team has considerable expertise related to modification of char properties by selection of feedstock and production conditions, as well as by using feedstock pre-treatment and char post-treatment. His interests are focused on development of thermochemical conversion processes for biomass valorisation by co-production of solid carbon products and chemicals derived from pyrolysis liquids. To date Dr. Mašek published over 30 journal papers in peer-reviewed journals, and supervised 6 PhD and 17 MSc students. He was awarded his PhD in Materials Science and Engineering from the Hokkaido University (Sapporo, Japan) in 2007. Following his PhD, Dr. Mašek worked for two years as a research officer at the Energy Technology Centre at Cranfield University (UK). During this period he worked on combustion and gasification of biomass, underground coal gasification and CO2 capture technologies. Dr. Mašek commenced his permanent full-time appointment as a Lecturer in Engineering Assessment of Biochar at the School of GeoSciences in April 2009.
Sustainable Biomass and Waste Conversion: Modeling Tools for Planning and Optimization provides practical knowledge on the technical, economic and environmental aspects of bioenergy, biorefining and waste-to-energy systems through modeling. It covers the key-technologies and cutting-edge advances for biomass assessment using statistics and GIS systems, logistics optimization using Vehicle Routing Problem solvers, Neural Networks and Optimization models based on MILP and NLP, as well as energy demand assessment. The book discusses feasibility plans for biorefineries and combined heat and power systems. It explores the fundamentals and challenges to modeling biomass and waste conversion processes, such as anaerobic digestion, pyrolysis, gasification, combustion, transesterification, fermentation and hydroprocessing. The authors also examine economic and market factors influencing feedstock availability and price, and provide tools for environmental and social impact analysis. Finally, they illustrate the application of the methodologies covered through a number of case studies from around the globe, quizzes and exercises.
Sustainable Biomass and Waste Conversion: Modeling Tools for Planning and Optimization brings together fundamental and compared knowledge of modeling tools applied to biomass and waste conversion systems, enabling researchers, graduate students and industry practitioners to make better decisions and to apply the techniques of their choosing successfully.
„Über diesen Titel“ kann sich auf eine andere Ausgabe dieses Titels beziehen.
Anbieter: CitiRetail, Stevenage, Vereinigtes Königreich
Paperback. Zustand: new. Paperback. Modeling Tools for Planning Sustainable Biomass and Waste Conversion into Energy and Chemicals: Optimization of Technical, Economic, Environmental and Social Key Aspects provides practical knowledge on the technical, economic and environmental aspects of bioenergy, biorefining, and waste-to-energy systems through modeling. The book covers key-technologies and cutting-edge advances for biomass assessment using statistics and GIS systems, logistics optimization using Vehicle Routing Problem solvers, Neural Networks and Optimization models based on MILP and NLP, and energy demand assessment. Finally, the book illustrates the application of the methodologies covered through a number of case studies, quizzes and exercises. In addition, sections cover feasibility plans for biorefineries and combined heat and power systems, and the fundamentals and challenges of modeling biomass and waste conversion processes, such as anaerobic digestion, pyrolysis, gasification, combustion, transesterification, fermentation and hydroprocessing. The authors also examine economic and market factors influencing feedstock availability and price and provide tools for environmental and social impact analysis. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Bestandsnummer des Verkäufers 9780128214435
Anzahl: 1 verfügbar