Showing posts with label Biochemical Engineering. Show all posts
Showing posts with label Biochemical Engineering. Show all posts

Monday, June 8, 2020

Solution Manual for Separation process principles, Second Edition byJ D Seader, Ernest J Henley






Solution Manual for: Separation process principles, 2 nd Edition ByJ D Seader, Ernest J Henley


-- ch. 1. Separation process

-- ch. 2. Thermodynamics of separation operations

-- ch. 3. Mass transfer and diffusion

-- ch. 4. Single equilibrium stages and flash calculation s

-- ch. 5. cascades and hybrid systems

-- ch. 6. Absorption and stripping of dilute mixtures

-- ch. 7. Distillation of binary mixtures

 -- ch. 8. Liquid-liquid extraction with ternary systems

-- ch. 9. Approximate methods for multicomponent, multistage separations

-- ch. 10. Equilibrium-based methods for multicomponent absorption, stripping, distillation, and extraction

-- ch. 11. Enhanced distillation and supercritical extraction

-- ch. 12. Rate-based models for distillation

-- ch. 13. Batch distillation

-- ch. 14. Membrane separation s

-- ch. 15. Adsorption, ion exchange, and chromatography

-- ch. 16. Leaching and washing

-- ch. 17. Crystallization, desublimation, and evaporation

-- ch. 18. Drying of solids

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Saturday, January 30, 2016

Bioprocess Engineering: Basic Concepts, By Michael L. Shuler, Fikret Kargi


Michael L. Shuler, Fikret Kargi , "Bioprocess Engineering: Basic Concepts"
2001 | 2 edition | ISBN-10: 0130819085, 0131228579 | 576 pages | PDF | 20 MB

 
For Senior-level and graduate courses in Biochemical Engineering, and for programs in Agricultural and Biological Engineering or Bioengineering.
This concise yet comprehensive text introduces the essential concepts of bioprocessing―internal structure and functions of different types of microorganisms, major metabolic pathways, enzymes, microbial genetics, kinetics and stoichiometry of growth and product information―to traditional chemical engineers and those in related disciplines. It explores the engineering principles necessary for bioprocess synthesis and design, and illustrates the application of these principles to modern biotechnology for production of pharmaceuticals and biologics, solution of environmental problems, production of commodities, and medical applications.
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