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Introduction to Chemical Engineering

Autor van ′t Land
en Limba Engleză Hardback – 5 sep 2023
An accessible introduction to chemical engineering for specialists in adjacent fields Chemical engineering plays a vital role in numerous industries, including chemical manufacturing, oil and gas refining and processing, food processing, biofuels, pharmaceutical manufacturing, plastics production and use, and new energy recovery and generation technologies. Many people working in these fields, however, are nonspecialists: management, other kinds of engineers (mechanical, civil, electrical, software, computer, safety, etc.), and scientists of all varieties. Introduction to Chemical Engineering is an ideal resource for those looking to fill the gaps in their education so that they can fully engage with matters relating to chemical engineering. Based on an introductory course designed to assist chemists becoming familiar with aspects of chemical plants, this book examines the fundamentals of chemical processing. The book specifically focuses on transport phenomena, mixing and stirring, chemical reactors, and separation processes. Readers will also find: * A hands-on approach to the material with many practical examples * Calculus is the only type of advanced mathematics used * A wide range of unit operations including distillation, liquid extraction, absorption of gases, membrane separation, crystallization, liquid/solid separation, drying, and gas/solid separation Introduction to Chemical Engineering is a great help for chemists, biologists, physicists, and non-chemical engineers looking to round out their education for the workplace.
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Specificații

ISBN-13: 9781119634089
ISBN-10: 1119634083
Pagini: 576
Dimensiuni: 178 x 254 x 34 mm
Greutate: 1.21 kg
Editura: Wiley
Locul publicării:Hoboken, United States

Cuprins

Part 1 TRANSPORT PHENOMENA Prologue 1 Mass balances 2 Energy balances 3 Viscosity 4 Laminar flow 5 Turbulent flow 6 Flow meters 7 Case studies flow 8 Heat conduction 9 Convective heat transfer 10 Heat transfer by radiation 11 Case studies heat transfer 12 Steady-state diffusion 13 Convective mass transfer 14 Case studies mass transfer Notation of Part 1 Part 2 MIXING AND STIRRING 15 Introduction to mixing and stirrer types 16 Mixing time 17 Power consumption 18 Suspensions 19 Dispersions 20 Gas distribution 21 Physical gas absorption 22 Heat transfer in stirred vessels 23 Scale-up of mixing 24 Case studies mixing and stirring Notation of Part 2 Part 3 CHEMICAL REACTORS 25 Chemical reaction engineering - an introduction 26 A few typical chemical reactors 27 The order of a reaction 28 The rate of a chemical reaction as a function of temperature 29 Chemical reaction engineering - a quantitative approach 30 A plant modification - from batchwise to continuous manufacture 31 Intrinsic continuous process safeguarding 32 Reactor choice and scale-up 33 Case studies chemical reaction engineering Notation of Part 3 Part 4 DISTILLATION 34 Continuous distillation 35 Design of continuous distillation columns 36 Various types of distillation 37 Case studies distillation Notation of Part 4 Part 5 LIQUID EXTRACTION 38 Liquid extraction - Part 1 39 Liquid extraction - Part 2 40 Flooding 41 Partial miscibility 42 Case studies liquid extraction Notation of Part 5 Part 6 ABSORPTION OF GASES 43 Absorption of gases Notation of Part 6 Part 7 MEMBRANES 44 Membranes - an introduction 45 Microfiltration 46 Ultrafiltration 47 Reverse osmosis 48 Electrodialysis 49 Gas separation 50 Case studies membranes Notation of Part 7 Part 8 CRYSTALLIZATION, LIQUID-SOLID SEPARATION, AND DRYING 51 Crystallization 52 Liquid-solid separation 53 Convective drying 54 Design of a flash dryer 55 Contact drying 56 Case studies crystallization, liquid-solid separation, and drying Notation of Part 8 Part 9 GAS-SOLID SEPARATION 57 Introduction 58 Cyclones 59 Fabric filters 60 Scrubbers 61 Electrostatic precipitators Notation of Part 9 Backmatter Index