About the authors |
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ix | |
Preface |
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xi | |
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Chapter 1 Thermodynamic fundamentals |
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1 | (64) |
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1 Predictive molecular thermodynamic models |
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1 | (15) |
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2 | (2) |
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4 | (11) |
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15 | (1) |
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2 Vapor-liquid phase equilibrium |
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16 | (21) |
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2.1 The equilibrium ratio |
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17 | (10) |
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2.2 Liquid-phase activity coefficient in binary and multicomponent mixtures |
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27 | (10) |
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3 Vapor-liquid-liquid phase equilibrium |
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37 | (1) |
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38 | (6) |
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5 Nonequilibrium thermodynamic analysis |
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44 | (5) |
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6 Multicomponent mass transfer |
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49 | (16) |
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59 | (6) |
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Chapter 2 Extractive distillation |
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65 | (90) |
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66 | (3) |
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2 Process of extractive distillation |
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69 | (13) |
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69 | (6) |
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2.2 Combination with other separation processes |
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75 | (1) |
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76 | (3) |
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79 | (3) |
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3 Solvent of extractive distillation |
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82 | (19) |
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3.1 Extractive distillation with solid salt |
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82 | (4) |
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3.2 Extractive distillation with liquid solvent |
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86 | (8) |
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3.3 Extractive distillation with the combination of liquid solvent and solid salt |
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94 | (2) |
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3.4 Extractive distillation with ionic liquid |
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96 | (5) |
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4 Experiment techniques of extractive distillation |
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101 | (8) |
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102 | (3) |
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4.2 Gas-liquid chromatography method |
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105 | (1) |
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106 | (1) |
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4.4 Inert gas stripping and gas chromatography method |
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107 | (2) |
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5 CAMD of extractive distillation |
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109 | (18) |
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5.1 CAMD for screening solvents |
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110 | (14) |
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5.2 Other methods for screening solvents |
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124 | (3) |
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6 Theory of extractive distillation |
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127 | (10) |
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6.1 Prausnitz and Anderson theory |
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128 | (4) |
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6.2 Scaled particle theory |
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132 | (4) |
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136 | (1) |
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7 Mathematic models of extractive distillation |
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137 | (18) |
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137 | (8) |
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145 | (5) |
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150 | (5) |
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Chapter 3 Azeotropic distillation |
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155 | (36) |
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155 | (4) |
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159 | (6) |
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165 | (20) |
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165 | (10) |
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3.2 EQ and NEQ stage models |
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175 | (7) |
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3.3 Multiple steady-state analysis |
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182 | (3) |
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4 Industrial applications |
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185 | (6) |
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4.1 Treatment of wastewater |
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185 | (1) |
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4.2 1-Propanol dehydration |
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186 | (1) |
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4.3 Separation of propylene glycol methyl ether/water |
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187 | (1) |
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188 | (3) |
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Chapter 4 Catalytic distillation |
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191 | (50) |
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1 Fixed-bed catalytic distillation |
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191 | (12) |
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191 | (5) |
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196 | (6) |
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202 | (1) |
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2 Suspension catalytic distillation |
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203 | (32) |
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2.1 Tray efficiency and hydrodynamics of SCD |
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203 | (10) |
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2.2 Alkylation of benzene and propylene |
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213 | (12) |
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2.3 Alkylation of benzene and 1-dodecene |
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225 | (10) |
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3 Reactive dividing wall column |
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235 | (6) |
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237 | (4) |
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Chapter 5 Adsorption distillation |
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241 | (20) |
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1 Fixed-bed adsorption distillation |
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241 | (8) |
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241 | (1) |
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1.2 Thermodynamic interpretation |
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242 | (1) |
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1.3 Comparison of FAD and extractive distillation |
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243 | (6) |
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2 Suspension adsorption distillation |
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249 | (8) |
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249 | (1) |
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2.2 Thermodynamic interpretation |
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250 | (7) |
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3 New development on adsorption distillation |
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257 | (4) |
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259 | (2) |
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Chapter 6 Membrane distillation |
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261 | (84) |
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261 | (1) |
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262 | (10) |
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262 | (2) |
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2.2 Definition of MD process |
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264 | (1) |
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2.3 Membrane characteristics |
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264 | (2) |
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266 | (1) |
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267 | (1) |
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268 | (4) |
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272 | (9) |
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272 | (2) |
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274 | (2) |
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3.3 Mechanism of gas transport in porous medium |
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276 | (2) |
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3.4 Characteristics of porous membrane |
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278 | (3) |
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281 | (28) |
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4.1 Mathematical model of DCMD |
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281 | (3) |
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4.2 Performance analysis of DCMD |
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284 | (12) |
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4.3 Mathematical model of VMD |
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296 | (3) |
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4.4 Performance analysis of VMD |
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299 | (4) |
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4.5 Mathematical model of AGMD |
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303 | (2) |
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305 | (4) |
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309 | (25) |
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5.1 Performance of flat sheet membrane module |
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309 | (11) |
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5.2 Performance of hollow fiber membrane module |
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320 | (14) |
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6 Industrial applications |
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334 | (11) |
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334 | (4) |
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6.2 Concentration of aqueous solution |
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338 | (2) |
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6.3 Separation of volatile components |
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340 | (2) |
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342 | (3) |
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Chapter 7 Pressure-swing distillation |
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345 | (10) |
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345 | (3) |
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345 | (2) |
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347 | (1) |
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348 | (3) |
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348 | (1) |
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348 | (3) |
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3 Comparison among different special distillation processes |
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351 | (4) |
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353 | (2) |
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Chapter 8 Other distillation techniques |
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355 | (22) |
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1 High viscosity material distillation |
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355 | (6) |
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355 | (1) |
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1.2 Design of high-efficiency flow-guided sieve tray |
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356 | (3) |
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1.3 Industrial application of high-efficiency flow-guided sieve tray |
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359 | (2) |
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2 Thermally coupled distillation |
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361 | (13) |
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361 | (4) |
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2.2 Design and synthesis of TCD |
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365 | (6) |
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2.3 Application of TCD in special distillation processes |
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371 | (3) |
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3 Heat pump and multi-effect distillations |
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374 | (1) |
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375 | (2) |
References |
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377 | (4) |
Index |
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381 | |