Series Preface |
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xi | |
Preface |
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xiii | |
Authors |
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xvii | |
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1 | (20) |
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1 | (2) |
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3 | (1) |
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4 | (1) |
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1.4 Chemical Industry in the Lower Mississippi River Corridor |
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5 | (4) |
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1.5 Criteria for the Optimal Configuration of Plants |
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9 | (1) |
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1.6 Optimization of Chemical Complex |
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10 | (3) |
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1.7 Contributions of This Methodology |
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13 | (1) |
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1.8 Organization of Chapters |
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14 | (4) |
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18 | (3) |
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21 | (46) |
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21 | (4) |
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25 | (2) |
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2.2.1 Calvin--Benson Cycle |
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26 | (1) |
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26 | (1) |
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26 | (1) |
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2.3 Biomass Classification and Composition |
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27 | (5) |
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2.3.1 Saccharides and Polysaccharides |
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27 | (1) |
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28 | (1) |
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2.3.3 Lignocellulosic Biomass |
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29 | (2) |
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2.3.4 Lipids, Fats, and Oils |
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31 | (1) |
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31 | (1) |
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2.4 Biomass Conversion Technologies |
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32 | (14) |
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2.4.1 Biomass Pretreatment |
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33 | (2) |
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35 | (1) |
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2.4.3 Anaerobic Digestion |
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36 | (3) |
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2.4.4 Transesterification |
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39 | (5) |
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2.4.5 Gasification/Pyrolysis |
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44 | (2) |
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2.5 Biomass Feedstock Availability |
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46 | (19) |
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48 | (1) |
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48 | (1) |
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2.5.1.2 Types of Forest Resource |
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48 | (3) |
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2.5.1.3 Limiting Factors for Forest Resource Utilization |
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51 | (1) |
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2.5.1.4 Summary for Forest Resources |
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51 | (1) |
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2.5.2 Agricultural Resources |
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52 | (1) |
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2.5.2.1 Agricultural Land Base |
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52 | (1) |
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2.5.2.2 Types of Agricultural Resource |
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53 | (3) |
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2.5.2.3 Limiting Factors for Agricultural Resource Utilization |
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56 | (2) |
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2.5.2.4 Summary for Agricultural Resources |
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58 | (1) |
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58 | (2) |
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2.5.3.1 Recent Trends in Algae Research |
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60 | (3) |
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63 | (2) |
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65 | (2) |
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67 | (44) |
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67 | (1) |
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3.2 Chemicals from Nonrenewable Resources |
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68 | (2) |
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3.3 Chemicals from Biomass as Feedstock |
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70 | (3) |
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3.4 Biomass Conversion Products (Chemicals) |
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73 | (30) |
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3.4.1 Single-Carbon Compounds |
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73 | (1) |
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73 | (1) |
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74 | (2) |
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3.4.2 Two-Carbon Compounds |
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76 | (1) |
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76 | (11) |
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87 | (1) |
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88 | (3) |
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3.4.3 Three-Carbon Compounds |
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91 | (1) |
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91 | (2) |
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93 | (1) |
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93 | (1) |
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94 | (1) |
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95 | (1) |
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3.4.4 Four-Carbon Compounds |
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95 | (1) |
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95 | (1) |
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96 | (2) |
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98 | (1) |
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3.4.5 Five-Carbon Compounds |
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98 | (1) |
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98 | (2) |
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3.4.5.2 Xylitol/Arabinitol |
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100 | (1) |
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100 | (2) |
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3.4.6 Six-Carbon Compounds |
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102 | (1) |
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102 | (1) |
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3.4.6.2 2,5-Furandicarboxylic Acid |
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102 | (1) |
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3.5 Biopolymers and Biomaterials |
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103 | (2) |
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3.6 Natural-Oil-Based Polymers and Chemicals |
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105 | (3) |
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108 | (3) |
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4 Simulation for Bioprocesses |
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111 | (60) |
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111 | (4) |
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4.2 Ethanol Production from Corn Stover Fermentation |
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115 | (13) |
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4.2.1 Process Description for Ethanol Production from Corn Stover Fermentation |
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116 | (3) |
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4.2.1.1 Pretreatment Section |
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119 | (2) |
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4.2.1.2 Fermentation Section |
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121 | (1) |
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4.2.1.3 Purification Section |
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122 | (3) |
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4.2.2 Process Cost Estimation for Ethanol Production from Corn Stover Fermentation |
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125 | (3) |
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4.2.3 Summary of Ethanol Production from Corn Stover Fermentation |
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128 | (1) |
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4.3 Ethylene Production from Dehydration of Ethanol |
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128 | (6) |
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4.3.1 Process Description for Ethylene Production from Dehydration of Ethanol |
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129 | (2) |
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4.3.2 Process Cost Estimation for Ethylene Production from Dehydration of Ethanol |
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131 | (2) |
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4.3.3 Summary of Ethylene Production from Dehydration of Ethanol |
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133 | (1) |
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4.4 Fatty Acid Methyl Ester and Glycerol from Transesterification of Soybean Oil |
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134 | (13) |
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4.4.1 Process Description for Fatty Acid Methyl Ester and Glycerol from Transesterification of Soybean Oil |
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137 | (3) |
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4.4.1.1 Transesterification Section |
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140 | (1) |
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4.4.1.2 Methyl Ester Purification Section |
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141 | (1) |
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4.4.1.3 Glycerol Recovery and Purification |
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141 | (3) |
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4.4.2 Process Cost Estimation for Fatty Acid Methyl Ester and Glycerol from Transesterification of Soybean Oil |
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144 | (2) |
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4.4.3 Summary of Fatty Acid Methyl Ester and Glycerol from Transesterification of Soybean Oil |
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146 | (1) |
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4.5 Propylene Glycol Production from Hydrogenolysis of Glycerol |
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147 | (5) |
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4.5.1 Process Description for Propylene Glycol Production from Hydrogenolysis of Glycerol |
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147 | (3) |
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4.5.2 Process Cost Estimation for Propylene Glycol Production from Hydrogenolysis of Glycerol |
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150 | (2) |
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4.5.3 Summary of Propylene Glycol Production from Hydrogenolysis of Glycerol |
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152 | (1) |
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4.6 Acetic Acid Production from Corn Stover Anaerobic Digestion |
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152 | (13) |
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4.6.1 Process Description for Acetic Acid Production from Corn Stover Anaerobic Digestion |
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154 | (1) |
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4.6.1.1 Pretreatment Section |
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154 | (4) |
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4.6.1.2 Anaerobic Digestion Section |
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158 | (2) |
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4.6.1.3 Purification and Recovery Section |
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160 | (3) |
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4.6.2 Process Cost Estimation for Acetic Acid Production from Corn Stover Anaerobic Digestion |
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163 | (2) |
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4.6.3 Summary of Acetic Acid Production from Corn Stover Anaerobic Digestion |
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165 | (1) |
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4.7 Ethanol Production from Corn Dry-Grind Fermentation |
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165 | (5) |
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170 | (1) |
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5 Bioprocesses Plant Model Formulation |
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171 | (76) |
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171 | (3) |
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5.2 Ethanol Production from Corn Stover Fermentation |
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174 | (22) |
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5.2.1 Pretreatment (Corn Stover) |
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175 | (5) |
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5.2.2 Fermentation (Corn Stover) |
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180 | (1) |
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5.2.3 Purification Section (Corn Stover EtOH) |
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181 | (15) |
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5.3 Ethanol Production from Corn Dry-Grind Fermentation |
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196 | (13) |
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5.3.1 Pretreatment (Corn) |
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197 | (4) |
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5.3.2 Fermentation (Corn) |
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201 | (1) |
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5.3.3 Purification (Corn EtOH) |
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201 | (8) |
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5.4 Ethylene Production from Dehydration of Ethanol |
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209 | (3) |
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5.5 Acetic Acid Production from Corn Stover Anaerobic Digestion |
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212 | (13) |
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5.5.1 Pretreatment (Corn Stover) Anaerobic Digestion |
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216 | (1) |
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5.5.2 Anaerobic Digestion |
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217 | (2) |
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5.5.3 Purification (Acetic Acid) |
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219 | (6) |
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5.6 Fatty Acid Methyl Ester and Glycerol from Transesterification of Natural Oil |
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225 | (7) |
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5.7 Propylene Glycol Production from Hydrogenolysis of Glycerol |
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232 | (3) |
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235 | (4) |
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5.9 Gasification of Corn Stover |
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239 | (3) |
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5.10 Summary of Bioprocess Model Formulation |
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242 | (2) |
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5.11 Interconnections for Bioprocesses |
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244 | (2) |
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246 | (1) |
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6 Formulation and Optimization of the Superstructure |
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247 | (38) |
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247 | (1) |
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6.2 Integrated Biochemical and Chemical Production Complex Optimization |
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247 | (8) |
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6.3 Binary Variables and Logical Constraints for MINLP |
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255 | (2) |
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6.4 Constraints for Capacity and Demand |
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257 | (2) |
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6.5 Optimization Economic Model---Triple Bottom Line |
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259 | (6) |
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265 | (9) |
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6.7 Multiobjective Optimization of the Integrated Biochemical Production Complex |
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274 | (2) |
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6.8 Sensitivity of the Integrated Biochemical Production Complex |
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276 | (4) |
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6.9 Comparison with Other Results |
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280 | (3) |
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283 | (2) |
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7 Case Studies Using Superstructure |
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285 | (46) |
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285 | (1) |
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7.2 Case Study I---Superstructure without Carbon Dioxide Use |
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286 | (6) |
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7.3 Case Study II---Parametric Study of Sustainable Costs and Credits |
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292 | (17) |
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7.3.1 Carbon Dioxide Costs and Credits |
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293 | (4) |
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7.3.2 Developing the Case for Sustainability Analysis |
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297 | (1) |
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7.3.3 Effect of Sustainable Costs and Credits on the Triple Bottom Line |
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298 | (10) |
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7.3.4 Cross-Price Elasticity of Demand for Ammonia |
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308 | (1) |
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7.4 Case Study III---Parametric Study of Algae Oil Production Costs |
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309 | (8) |
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7.5 Case Study IV---Multicriteria Optimization Using 30%-Oil-Content Algae and Sustainable Costs/Credits |
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317 | (4) |
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7.6 Case Study V---Parametric Study for Biomass Feedstock Costs and Number of Corn Ethanol Plants |
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321 | (6) |
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7.6.1 Options Used in the Parametric Study |
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322 | (1) |
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7.6.2 Results of Parametric Study |
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323 | (4) |
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327 | (4) |
Appendix A TCA Methodology and Sustainability Analysis |
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331 | (34) |
Appendix B Optimization Theory |
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365 | (10) |
Appendix C Prices of Raw Materials and Products in the Complex |
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375 | (18) |
Appendix D Supply, Demand, and Price Elasticity |
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393 | (14) |
Appendix E Chemical Complex Analysis System |
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407 | (8) |
Appendix F Detailed Mass and Energy Streams from Simulation Results |
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415 | (18) |
Appendix G Equipment Mapping and Costs from ICARUS |
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433 | (8) |
Appendix H Molecular Weights |
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441 | (4) |
Appendix I Postscript |
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445 | (16) |
Index |
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461 | |