{"id":171156,"date":"2024-04-17T17:03:41","date_gmt":"2024-04-17T11:33:41","guid":{"rendered":"https:\/\/www.aplustopper.com\/?p=171156"},"modified":"2024-04-17T17:06:09","modified_gmt":"2024-04-17T11:36:09","slug":"el3491-mass-transfer-syllabus","status":"publish","type":"post","link":"https:\/\/www.aplustopper.com\/el3491-mass-transfer-syllabus\/","title":{"rendered":"EL3491 \u2013 Mass Transfer Syllabus Regulation 2021 Anna University"},"content":{"rendered":"

Welcome to our website. We are glad to provide the Semester IV subject Mass Transfer of B. Tech. Chemical And Electrochemical Engineering, Anna University Syllabus. In this article, we included the required information regarding the syllabus. Let\u2019s see more\u2026<\/p>\n

We aim to give the semester IV EL3491 \u2013 Mass Transfer Syllabus<\/a> to avoid confusion about the unit-wise syllabus. You can take notes from it. And Prepare strategies on how to read, from where to read, etc\u2026 It will become easy to learn about several topics. We included the required references and textbooks. Hope this information is useful. If you have any doubts regarding the syllabus please comment below. Never forget to share with your classmates.<\/p>\n

If you want to know more about the B. Tech. Chemical And Electrochemical Engineering Syllabus connected to an affiliated institution\u2019s four-year undergraduate degree program. We provide you with a detailed Year-wise, semester-wise, and Subject-wise syllabus in the following link\u00a0B. Tech. Chemical And Electrochemical Engineering\u00a0Syllabus Regulation 2021 Anna University<\/a>.<\/p>\n

EL3491 \u2013 Mass Transfer Syllabus<\/strong><\/p>\n

Unit – I:<\/strong> Molecular Diffusion<\/p>\n

Introduction to mass transfer operations; Molecular diffusion in gases, liquids and solids; diffusivity measurement and prediction; multi-component diffusion.<\/p>\n

Unit \u2013 II:<\/strong> Convective Transfer And Interphase Mass Transfer<\/p>\n

Eddy diffusion, concept of mass transfer coefficients, theories of mass transfer, different transport analogies, application of correlations for mass transfer coefficients, inter-phase mass transfer, relationship between individual and overall mass transfer coefficients.<\/p>\n

\"EL3491<\/p>\n

Unit \u2013 III:<\/strong> Absorption<\/p>\n

Gas Absorption and Stripping \u2013 Equilibrium; material balance; limiting gas-liquid ratio; tray tower absorber – calculation of number of theoretical stages, tray efficiency, tower diameter; determination of height of packing using HTU and NTU calculations.<\/p>\n

Unit \u2013 IV:<\/strong> Distillation<\/p>\n

Vapour liquid equilibria – Raoult\u2019s law, Principle of distillation – flash distillation, differential distillation, steam distillation, multistage continuous rectification, Number of ideal stages by Mc.Cabe – Thiele method, Total reflux, minimum reflux ratio, optimum reflux ratio.<\/p>\n

Unit \u2013 V:<\/strong> Leaching & Extraction<\/p>\n

Liquid-liquid extraction – solvent characteristics-equilibrium stage-wise contact calculations for single-stage extraction, multi-stage cross-current extraction, multi-stage counter-current operation. Solid liquid equilibria- equilibrium diagram for leaching, single-stage leaching, multi-stage continuous cross current and counter-current leaching, stage calculations, stage efficiency.<\/p>\n

Text Books:<\/strong><\/p>\n

    \n
  1. Robert E. Treybal, \u201cMass Transfer Operations\u201d McGraw Hill Education India.<\/li>\n
  2. Christie John Geankoplis Transport Processes and Separation Process Principles 4th Edition PHI.<\/li>\n
  3. K Asokan, Mass Transfer concepts, University Press.<\/li>\n<\/ol>\n

    References:<\/strong><\/p>\n

      \n
    1. Warren Mc Cabe, Julian Smith, Peter Harriott, Unit Operations of Chemical Engineering 7th Edition, Mc Graw Hil.<\/li>\n
    2. J.M.Coulson and J.F. Richardson with J.R.Backhurst and J.H.Harker, \u201cCoulson and Richardson\u2019s Chemical Engineering\u201d, Vol.1, \u201cFluid Flow,<\/li>\n
    3. Heat Transfer and Mass Transfer\u201d, Butterworth Heinmann, 6th Edition, 2000.<\/li>\n<\/ol>\n

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