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008 100803t2010 fluab f b 001 0 eng d
020 _a9781439815977 (hardcover : alk. paper)
020 _a1439815976 (hardcover : alk. paper)
039 9 _a201107140007
_bVLOAD
_c201101041013
_dfauzi
_c201012301701
_dfauzi
_y201008031526
_zsafura
040 _aUMP
090 _aTP339 .C37 2010
100 1 _aCardona, C. A.
245 1 0 _aProcess synthesis for fuel ethanol production /
_cC.A. Cardona, Ó.J. Sánchez, L.F. Gutiérrez
260 _aBoca Raton, FL :
_bCRC Press,
_cc2010
505 0 _aBiofuels -- Process design and role of process synthesis -- Feedstocks for fuel ethanol production -- Feedstock conditioning and pretreatment -- Hydrolysis of carbohydrate polymers -- Microorganisms for ethanol production -- Ethanolic fermentation technologies -- Analysis of ethanol recovery and dehydration -- Integrated processes for fuel ethanol production -- Environmental aspects of fuel ethanol production -- Technological configurations for fuel ethanol production in the industry -- Food security versus fuel ethanol production -- Perspectives and challenges in fuel ethanol production
520 _a"Process engineering can potentially provide the means to develop economically viable and environmentally friendly technologies for the production of fuel ethanol. Focusing on a key tool of process engineering, Process Synthesis for Fuel Ethanol Production is a comprehensive guide to the design and analysis of the most advanced technologies for fuel ethanol production from feedstocks. It describes how process systems engineering can be applied to fuel ethanol production to achieve new levels of efficiency according to technical, economic, and environmental criteria. Drawing on the authors’ more than 15 years of process engineering and ethanol research, the book first focuses on liquid biofuels, before examining the role of process synthesis in the rapid and high-tech analysis and design of complex biotechnological processes. It then describes various types of feedstocks, including sugars, starchy crops, lignocellulosic biomass, and microorganisms, as well as hydrolysis technologies, such as saccharification. The authors cover the fuel ethanol production technologies for different feedstocks, the new technological innovations based on process integration to reduce energy consumption, and the environmental issues of bioethanol production. They also discuss the technological configurations for fuel ethanol production in the industry and the possible factors affecting food security with fuel ethanol production and consumption. Supported by case studies that include calculations and discussions of results, this book uses a process engineering approach to explore the analysis and development of fuel ethanol production from different feedstocks. It shows how accurate analysis and precise design, along with responsible government policies, can lead to fair and sustainable development of energy crops worldwide."--Publisher’s description
650 0 _aEthanol as fuel
650 0 _aCorn
_xBiotechnology
650 0 _aSugarcane
_xBiotechnology
650 0 _aBiomass energy
700 1 _aSanchez, O. J.
700 1 _aGutierrez, L. F.
830 0 _aBiotechnology and bioprocessing series ;
_v32
999 _aVIRTUA40
_c58692
_d58698
999 _aVTLSSORT0080*0200*0201*0400*0900*1000*2450*2600*5050*5200*6500*6501*6502*6503*7000*7001*8300*9991
942 0 0 _01