出版時間:2002-8 出版社:化學(xué)工業(yè)出版社 作者:J.D.Seader 頁數(shù):886
內(nèi)容概要
隨著中國社會主義現(xiàn)代化建設(shè)進入新的階段,以高質(zhì)量的高等教育培養(yǎng)千百萬專門人才,迎接新世紀(jì)的挑戰(zhàn),是實現(xiàn)“科教興國”戰(zhàn)略的基礎(chǔ)工程,也是完成“十五”計劃各項奮斗目標(biāo)的重要保證。為切實加強高等學(xué)校本科教學(xué)并提高教學(xué)質(zhì)量,教育部于2001年專門下發(fā)文件提出12條意見,對高等學(xué)校教學(xué)工作從認識、管理、教師隊伍到教學(xué)方法和教學(xué)手段等給予指導(dǎo)。文件強調(diào),按照“教育要面向現(xiàn)代化、面向世界、面向未來”的要求,為適應(yīng)經(jīng)濟全球化和科技國際化的挑戰(zhàn),本科教育要創(chuàng)造條件使用英語等外語進行公共課和專業(yè)課教學(xué)?! ≡谖募裰笇?dǎo)下,全國普通高等學(xué)校尤其是重點高校中興起了使用國外教材開展教學(xué)活動的潮流。如生物技術(shù)與工程、環(huán)境科學(xué)與工程、材料科學(xué)與工程及作為其學(xué)科基礎(chǔ)理論重要組成部分的化學(xué)技術(shù)和化學(xué)工程技術(shù)又是這股潮流中最為活躍的領(lǐng)域之一。在教育部“化工類專業(yè)人才培養(yǎng)方案及教學(xué)內(nèi)容體系改革的研究與實踐”項目組及“化工類專業(yè)創(chuàng)新人才培養(yǎng)模式、教學(xué)內(nèi)容、教學(xué)方法和教學(xué)技術(shù)改革的研究與實踐”項目組和“全國本科化學(xué)工程與工藝專業(yè)教學(xué)指導(dǎo)委員會”的指導(dǎo)和支持下,化學(xué)工業(yè)出版社及時啟動了引進國外名校名著的教材工程。
書籍目錄
Chapter 1 Separation Processes1.1 Industrial Chemical Processes1.2 Mechanism of Separation1.3 Separation by Phase Addition or Creation1.4 Separation by Barrier1.5 Separation by Solid Agent1.6 Separation by External Field of Gradient1.7 Component Recoveries and PRODUCT purities1.8 Separation Power1.9 Selection of Feasible Separation ProcessesChapter 2 Thermodynamics of Separation Operations2.1 Energy,Entropy,and Availability Balances2.2 Phase Equilibria2.3 Ideal Gas,Ideal Liquid Solution Model2.4 Graphical Correlations of Thermodynamic Properties2.5 Nonideal Thermodynamic Property Models2.6 Activity Coefficient Models for the Liquid PhaseChapter 3 Mass Transfer and Diffusion3.1 Steady-State Ordinary Molecular Diffusion3.2 Diffusion Coefficients3.3 One-Dimensional Steady-State and Unsteady-State Molecular Diffusion3.4 Molecular Diffusion in Laminar Flow3.5 Mass Transfer in Turbulent Flow3.6 Models for Mass Transfer at a Fluid-Fluid Interface3.7 Two-Film Theory and Overall Mass Transfer CoefficientsChapter 4 Single Equilibrium Stages and Flash Calculations4.1 The Gibbs Phase Rule and Degrees of Freedom4.2 Binary Vapor-Liquid Systems4.3 Azeotropic Systems4.4 Multicomponent Flash,Bubble-Point,and Dew-Point Calculations4.5 Ternary Liquid-Liquid Systems4.6 Multicomponent Liquid-Liquid Systems4.7 Solid-Liquid Systems4.8 Gas-Liquid Systems4.9 Gas-Solid Systems4.10 Multiphase SystemsChapter 5 Cascades5.1 Cascade Configurations5.2 Solid-Liquid Cascades5.3 Single-Section Liquid-Liquid Extraction Cascades5.4 Multicomponent Vapor-Liquid Group Methods5.5 Degrees of Freedom and Specifications for Countercurrent CascadesChapter 6 Absorption and Stripping of Dilute Mixtures6.1 Equipment6.2 General Design Considerations6.3 Graphical Equilibrium-Stage Method for Trayed Towers6.4 Algebraic Method for Determining the Number of Equilibrium Stages6.5 Stage Efficiency6.6 Tray Capacity,Pressure Drop,and Mass Transfer6.7 Rate-Based Method for Packed Columns6.8 Packed Column Efficiency,Capacity, and Pressure Drop6.9 Concentrated Solutions in Packed ColumnsChapter 7 Distillation of Binary Mixtures7.1 Equipment and Design Considerations7.2 McCabe-Thiele Graphical Equilibrium-Stage Method for Trayed Towers7.3 Estimation of Stage Efficiency7.4 Capacity of Trayed Towers and Reflux Drums7.5 Rate-Based Method for Packed Columns7.6 Ponchon-Savarit Graphical Equilibrium-Stage Method for Trayed TowersChapter 8 Liquid-Liquid Extraction with Ternary SystemsChapter 9 Approximate Methods for Multicomponent,Multistage SepartionsChapter 10 Equilibrium-Based Methods for Multicomponent Absorption,Stripping,Distillation,and ExtractionChapter 11 Enhanced Distillation and Supercritical ExtractionChapter 12 Rate-Based Models for DistillationChapter 13 Batch DistillationChapter 14 Membrane SeparationsChapter 15 Adsorption,Ion Exchange,and ChromatographyIndex
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