Seller: Rarewaves.com USA, London, LONDO, United Kingdom
Paperback. Condition: New. In order to increase sustainability of chemical processes, a raw material change from conventional to renewable feedstocks is the key. This opens up numerous novel process concepts. A detailed conceptual design of all of these different pathways is expensive and time-consuming, since the mandatory simulations depend on pre-specified design decisions and commercial simulation software lack robustness. Hence, screening methodologies are required for an initial assessment of the processes. Existing screening methods are restricted to reaction or process design data known in literature, such that the integration of novel pathways requires simulation studies. This is impeded by limited data availability and the lack of profound property models.Process Network Flux Analysis is introduced as an optimization-based screening methodology to accelerate process development and improvement for existing and novel processes. The method systematically integrates reaction data with the selection of separation processes, the feasibility and efficiency of which are evaluated using thermodynamically-sound separation models. Based on mass and energy balances, the pathways are analyzed according to their economic efficiency and sustainability. Furthermore, the method allows for an initial heat integration potential analysis, considers the influence of the biomass supply chain and identifies suitable product portfolios based on a pragmatic market model. Thus, the method is applicable for single or multiple products as well as for mixtures.The accuracy of the results is analyzed by a comparison with literature data, Reaction Network Flux Analysis and a conceptual design study. For a complex case study of fuel production from biomass, the applicability of the method is demonstrated. The production of ethanol is most promising, followed by iso-butanol. A profitable production is not achieved, in particular, when the biomass supply chain is included. Profitability is only obtained by a co-production of chemicals. Finally, key improvement factors for future biorefineries are derived. For this purpose, the actual and theoretical potential of selective biotechnological conversion are discussed.".
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Seller: California Books, Miami, FL, U.S.A.
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Seller: Rarewaves.com USA, London, LONDO, United Kingdom
Paperback. Condition: New. 2nd, revised edition. Process intensification aims for increasing efficiency and sustainability of (bio-)chemical production processes. The second book of our two-book series focusses entirely on process intensifi cation by centrifugally enhanced (reactive) separations. The book provides an overview of the main applications of rotating packed beds (RPBs) in liquid-liquid, gas-liquid and vapor-liquid contacting, within academic research and industrial applications. The book addresses current design rules and modeling frameworks, including the tailored design of functional packings by means of additive manufacturing. Rotating packed beds are widely applicable and fl exible mass transfer machines for process intensifi cation. Applications, design rules and advanced modeling for rotating packed beds are presented in an interconnected way.
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Seller: Ria Christie Collections, Uxbridge, United Kingdom
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Seller: Ria Christie Collections, Uxbridge, United Kingdom
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Seller: Chiron Media, Wallingford, United Kingdom
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Seller: GreatBookPricesUK, Woodford Green, United Kingdom
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Seller: Rarewaves.com UK, London, United Kingdom
Paperback. Condition: New. In order to increase sustainability of chemical processes, a raw material change from conventional to renewable feedstocks is the key. This opens up numerous novel process concepts. A detailed conceptual design of all of these different pathways is expensive and time-consuming, since the mandatory simulations depend on pre-specified design decisions and commercial simulation software lack robustness. Hence, screening methodologies are required for an initial assessment of the processes. Existing screening methods are restricted to reaction or process design data known in literature, such that the integration of novel pathways requires simulation studies. This is impeded by limited data availability and the lack of profound property models.Process Network Flux Analysis is introduced as an optimization-based screening methodology to accelerate process development and improvement for existing and novel processes. The method systematically integrates reaction data with the selection of separation processes, the feasibility and efficiency of which are evaluated using thermodynamically-sound separation models. Based on mass and energy balances, the pathways are analyzed according to their economic efficiency and sustainability. Furthermore, the method allows for an initial heat integration potential analysis, considers the influence of the biomass supply chain and identifies suitable product portfolios based on a pragmatic market model. Thus, the method is applicable for single or multiple products as well as for mixtures.The accuracy of the results is analyzed by a comparison with literature data, Reaction Network Flux Analysis and a conceptual design study. For a complex case study of fuel production from biomass, the applicability of the method is demonstrated. The production of ethanol is most promising, followed by iso-butanol. A profitable production is not achieved, in particular, when the biomass supply chain is included. Profitability is only obtained by a co-production of chemicals. Finally, key improvement factors for future biorefineries are derived. For this purpose, the actual and theoretical potential of selective biotechnological conversion are discussed.".
Seller: Rarewaves USA United, OSWEGO, IL, U.S.A.
Paperback. Condition: New. 2nd, revised edition. Process intensification aims for increasing efficiency and sustainability of (bio-)chemical production processes. The second book of our two-book series focusses entirely on process intensifi cation by centrifugally enhanced (reactive) separations. The book provides an overview of the main applications of rotating packed beds (RPBs) in liquid-liquid, gas-liquid and vapor-liquid contacting, within academic research and industrial applications. The book addresses current design rules and modeling frameworks, including the tailored design of functional packings by means of additive manufacturing. Rotating packed beds are widely applicable and fl exible mass transfer machines for process intensifi cation. Applications, design rules and advanced modeling for rotating packed beds are presented in an interconnected way.
Seller: Rarewaves USA United, OSWEGO, IL, U.S.A.
Paperback. Condition: New. 2nd, Revised Edition. Process intensifi cation aims for increasing effi ciency and sustainability of (bio-)chemical production processes. This book presents strategies for the intensifi cation of fluid separation processes such as reactive distillation, reactive absorption and membrane assisted separations. The authors discuss theoretical fundamentals, model development, methods for synthesis and the design as well as scale-up and industrial process applications.
Kartoniert / Broschiert. Condition: New. Prof. Mirko Skiborowski PhD is Process Systems Engineering from RWTH Aachen and habilitation in Fluid Separations at TU Dortmund. Sine 2020 appointed as professor for Process Systems Engineering at TU Hamburg.
Kartoniert / Broschiert. Condition: New. Prof. Mirko Skiborowski PhD in Process Systems Engineering from RWTH Aachen and habilitation in Fluid Separations at TU Dortmund. Since 2020 appointed as professor for Process Systems Engineering at Hamburg University of Technolo.
Taschenbuch. Condition: Neu. Neuware - Process intensification aims for increasing efficiency and sustainability of (bio-)chemical production processes. The second book of our two-book series focusses entirely on process intensifi cation by centrifugally enhanced (reactive) separations. The book provides an overview of the main applications of rotating packed beds (RPBs) in liquid-liquid, gas-liquid and vapor-liquid contacting, within academic research and industrial applications. The book addresses current design rules and modeling frameworks, including the tailored design of functional packings by means of additive manufacturing. Rotating packed beds are widely applicable and fl exible mass transfer machines for process intensifi cation. Applications, design rules and advanced modeling for rotating packed beds are presented in an interconnected way.
Seller: Rarewaves.com UK, London, United Kingdom
Paperback. Condition: New. 2nd, revised edition. Process intensification aims for increasing efficiency and sustainability of (bio-)chemical production processes. The second book of our two-book series focusses entirely on process intensifi cation by centrifugally enhanced (reactive) separations. The book provides an overview of the main applications of rotating packed beds (RPBs) in liquid-liquid, gas-liquid and vapor-liquid contacting, within academic research and industrial applications. The book addresses current design rules and modeling frameworks, including the tailored design of functional packings by means of additive manufacturing. Rotating packed beds are widely applicable and fl exible mass transfer machines for process intensifi cation. Applications, design rules and advanced modeling for rotating packed beds are presented in an interconnected way.
Seller: preigu, Osnabrück, Germany
Taschenbuch. Condition: Neu. Process Intensification | by Rotating Packed Beds, De Gruyter STEM | Mirko Skiborowski | Taschenbuch | IX | Englisch | 2022 | De Gruyter GmbH | EAN 9783110724905 | Verantwortliche Person für die EU: Walter de Gruyter GmbH, De Gruyter GmbH, Genthiner Str. 13, 10785 Berlin, productsafety[at]degruyterbrill[dot]com | Anbieter: preigu.
Language: English
Published by Gruyter, Walter de GmbH, 2022
ISBN 10: 3110720450 ISBN 13: 9783110720457
Seller: Buchpark, Trebbin, Germany
Condition: Sehr gut. Zustand: Sehr gut | Seiten: 575 | Sprache: Englisch | Produktart: Bücher | Keine Beschreibung verfügbar.
Taschenbuch. Condition: Neu. Process Intensification | by Reactive and Membrane-assisted Separations, De Gruyter STEM | Mirko Skiborowski | Taschenbuch | IX | Englisch | 2022 | De Gruyter GmbH | EAN 9783110720457 | Verantwortliche Person für die EU: Walter de Gruyter GmbH, De Gruyter GmbH, Genthiner Str. 13, 10785 Berlin, productsafety[at]degruyterbrill[dot]com | Anbieter: preigu.