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Biodiesel : a realistic fuel alternative for diesel engines
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Biodiesel : a realistic fuel alternative for diesel engines

著者: Ayhan Demirbas
出版商: London : Springer, ©2008.
版本/格式:   图书 : 英语查看所有的版本和格式
提要:

Describes the production and characterization of biodiesel. This book presents experimental research work in the field, including techniques to reduce biodiesel's high viscosity. It is suitable for  再读一些...

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所有的著者/提供者: Ayhan Demirbas
ISBN: 9781846289941 1846289947 1846289955 9781846289958
OCLC号码: 165411206
描述: x, 208 p. : ill. ; 25 cm.
内容: Cover --
TOC$Contents --
CH$1 Introduction --
1.1 Introduction to Energy Sources --
1.2 Global Energy Sources and the Present Energy Situation --
1.3 Renewable Energy Sources --
1.3.1 Biomass Energy and Biomass Conversion Technologies --
1.3.2 Hydropower --
1.3.3 Geothermal Energy --
1.3.4 Wind Energy --
1.3.5 Solar Energy --
1.3.6 Biohydrogen --
1.3.7 Other Renewable Energy Sources --
References --
CH$2 Biofuels --
2.1 Introduction to Biofuels --
2.2 Bioethanol --
2.3 Biomethanol --
2.4 Biohydrogen from Biomass by Steam Reforming --
2.4.1 Steam-reforming Process --
2.4.2 Fuels from Bio-syngas via Fischer-Tropsch Synthesis --
2.5 Biodiesel --
2.6 Bio-oil --
2.7 Global Biofuel Scenarios --
References --
CH$3 Vegetable Oils and Animal Fats --
3.1 Use of Vegetable Oils and Animal Fats in Fuel Engines --
3.2 Vegetable Oil Resources --
3.2.1 Inedible Oil Resources --
3.3 Vegetable Oil Processing --
3.3.1 Recovery of Vegetable Oils from Plants --
3.3.2 Vegetable Oil Refining --
3.4 The Use of Vegetable Oils as Diesel Fuel --
3.4.1 Physical and Chemical Properties of Vegetable Oils --
3.4.2 Direct Use of Vegetable Oils in Diesel Engines --
3.5 New Engine Fuels from Vegetable Oils --
3.5.1 Pyrolysis of Vegetable Oils and Fats --
3.5.2 Cracking of Vegetable Oils --
3.5.3 Pyrolysis Mechanisms of Vegetable Oils --
3.6 Gasoline-rich Liquid from Sunflower Oil by Alumina Catalytic Pyrolysis --
3.7 Diesel-like Fuel from Tallow (Beef) by Pyrolysis and Steam Reforming --
3.8 Converting Triglyceride-derived Synthetic Gas to Fuels via Fischer-Tropsch Synthesis --
3.9 Triglyceride Analyses --
3.9.1 Viscosity --
3.9.2 Density --
3.9.3 Cetane Number --
3.9.4 Cloud and Pour Points --
3.9.5 Distillation Range --
3.9.6 Heat of Combustion --
3.9.7 Water Content --
3.9.8 Discussion of Fuel Properties of Triglycerides --
CH$4 Biodiesel --
4.1 Introduction to Biodiesel Concept --
4.2 History --
4.3 Definitions --
4.4 Biodiesel as an Alternative to Diesel Engine Fuel --
4.5 Sources of Biodiesel --
References --
CH$5 Biodiesel from Triglycerides via Transesterification --
5.1 Biodiesel from Triglycerides via Transesterification --
5.1.1 Catalytic Transesterification Methods --
5.1.2 Supercritical Alcohol Transesterification --
5.1.3 Biocatalytic Transesterification Methods --
5.1.4 Recovery of Glycerine --
5.1.5 General Reaction Mechanism of Transesterification --
5.1.6 Esterification of Fatty Acids with Diazomethane --
5.1.7 Non-catalytic Supercritical Alcohol Transesterification --
5.1.8 Enzyme-catalyzed Processes --
References --
CH$6 Fuel Properties of Biodiesels --
6.1 Viscosity, Density, and Flash Point --
6.2 Cetane Number, Cloud Point, and Pour Point --
6.3 Characteristics of Distillation Curves --
6.4 Higher Combustion Efficiency of Biodiesel --
6.5 Water Content --
6.6 Comparison of Fuel Properties and Combustion Characteristics of Methyl and Ethyl Alcohols and Their Esters
责任: Ayhan Demirbas.

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