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LIBRIS Formathandbok  (Information om MARC21)
FältnamnIndikatorerMetadata
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020 a 9783319035543
020 z 9783319035536 (Print)
024a 10.1007/978-3-319-03554-32 doi
040 e i
041 a eng
050 4a TK1001-1841
072 7a SCI0240002 bisacsh
0820 4a 621.0422 23
084 a P.082 kssb/8 (machine generated)
100a Kiss, Anton Alexandru.4 aut
2451 0a Process Intensification Technologies for Biodiesel Productionh [Elektronisk resurs]b Reactive Separation Processes /c by Anton Alexandru Kiss.
264 1a Cham :b Springer International Publishing :b Imprint: Springer,c 2014
300 a XV, 103 p. 38 illus.b online resource.
336 a textb txt2 rdacontent
337 a computerb c2 rdamedia
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490a SpringerBriefs in Applied Sciences and Technology,x 2191-530X
505a 1. Process intensification technologies.- 2. Biodiesel and fatty esters -- 3. Reactive separation processes -- 4. Property models and process simulation -- 5. Reactive distillation technology -- 6. Reactive absorption technology -- 7. Reactive extraction technology -- 8. Membrane reactors -- 9. Centrifugal contact separators -- 10. Concluding remarks.
520 a This book is among the first to address the novel process intensification technologies for biodiesel production, in particular the integrated reactive separations. It provides a comprehensive overview illustrated with many industrially relevant examples of novel reactive separation processes used in the production of biodiesel (e.g. fatty acid alkyl esters): reactive distillation, reactive absorption, reactive extraction, membrane reactors, and centrifugal contact separators. Readers will also learn about the working principles, design and control of integrated processes, while also getting a relevant and modern overview of the process intensification opportunities for biodiesel synthesis.   Biodiesel is a biodegradable and renewable fuel that currently enjoys much attention. In spite of the recent advances, the existing biodiesel processes still suffer from problems associated with the use of homogeneous catalysts (e.g. salt waste streams) and the key limitations imposed by the chemical reaction equilibrium, thus leading to severe economic and environmental penalties. The integration of reaction and separation into one operating unit overcomes equilibrium limitations and provides key benefits such as low capital investment and operating costs. Many of these processes can be further enhanced by heat-integration and powered by heterogeneous catalysts, to eliminate all conventional catalyst related operations, using the raw materials efficiently and the reaction volume, while offering high conversion and selectivity, and significant energy savings.   The targeted audience of this book includes both academia (students and researchers) and industry (project leaders, technology managers, researchers, biodiesel producers, and equipment suppliers).
650 0a Chemical engineering.
650 0a Industrial engineering.
6501 4a Energy.
6502 4a Energy Harvesting.
6502 4a Industrial and Production Engineering.
6502 4a Industrial Chemistry/Chemical Engineering.
710a SpringerLink (Online service)
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830 0a SpringerBriefs in Applied Sciences and Technology,x 2191-530X
8564 2u http://dx.doi.org/10.1007/978-3-319-03554-3x 856otherz Table of Contents / Abstracts
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