Process Intensification and Integration for Sustainable Design

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Presents comprehensive coverage of process intensification and integration for sustainable design, along with fundamental techniques and experiences from the industry  Drawing from fundamental techniques and recent industrial experiences, this book discusses the many developments in process intensification and integration and focuses on increasing sustainability via several overarching topics such as Sustainable Manufacturing, Energy Saving Technologies, and Resource Conservation and Pollution Prevention Techniques. 
Process Intensification and Integration for Sustainable Design
 
Covers the many advances and changes in process intensification and integration Provides side-by-side discussions of fundamental techniques and recent industrial experiences to guide practitioners in their own processes Presents comprehensive coverage of topics relevant, among others, to the process industry, biorefineries, and plant energy management Offers insightful analysis and integration of reactor and heat exchanger network Looks at optimization of integrated water and multi-regenerator membrane systems involving multi-contaminants 
 is an ideal book for process engineers, chemical engineers, engineering scientists, engineering consultants, and chemists.

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10 Chapter 10Figure 10.1 (a) GCC. (b) Comparison of different heat sources/sinks on a GCC...Figure 10.2 Flowchart of Strategy 1 for solving a large‐scale IPHI problem....Figure 10.3 (a) Extraction of waste heat source/sink. (b) Extraction of nimi...Figure 10.4 Complete flow diagram of NLQSA.Figure 10.5 Criteria to determine unassisted heat source/sink plant (UAPC) [...Figure 10.6 Flowchart for Strategy 2 considering connection pattern for solv...Figure 10.7 (a) Shifted composite curves. (b) ISCC [11]. (c) Interplant comp...Figure 10.8 Flowchart to determine the indirect IPHI with a parallel connect...Figure 10.9 Graphical illustration on IPCD for the determination of indirect...Figure 10.10 The final HEN configuration for IPHI scheme 1 involving Plants ...Figure 10.11 The final HEN configuration for IPHI scheme 2 involving Plants ...Figure 10.12 Determination of parallel connection pattern on IPCD for Exampl...

11 Chapter 11Figure 11.1 A mass exchanger and regeneration column.Figure 11.2 The stages involved in life cycle assessment..Figure 11.3 General proposed approach of the combined networks.Figure 11.4 A schematic of combined heat, mass, and regeneration networks in...Figure 11.5 A schematic representation of H 2S removal process.Figure 11.6 The MEN configuration of H 2S removal process (values above strea...Figure 11.7 The MEN and REN configuration (values above streams are composit...Figure 11.8 The CHAMEN configuration for H 2S removal process (values above s...Figure 11.9 Variation of S 3absorption temperatures and the resulting TAC.Figure 11.10 Variation of S 3stripping temperatures and the resulting TAC.Figure 11.11 Variation of S 2absorption temperatures and the resulting TAC....Figure 11.12 Variation of S 2stripping temperatures and the resulting TAC.Figure 11.13 The optimized CHAMEN configuration (values above streams are co...Figure 11.14 Detailed TAC for CHAMENs with solar panels.Figure 11.15 Detailed TAC for CHAMENs without solar panels.Figure 11.16 Pareto optimal of the combined networks with NMP as S 3solvent....Figure 11.17 The combined networks with a moderate level of both TAC and EI ...Figure 11.18 Detailed TAC for CHAMENs with NMP.

12 Chapter 12Figure 12.1 Superstructure representation of water network with multiple mem...Figure 12.2 Schematic representations of a water source.Figure 12.3 Optimum water network configuration for Scenario 1.Figure 12.4 Optimum design configurations of the blackbox model.Figure 12.5 Optimum design configurations for detailed model.Figure 12.A.1 Schematic of a single stage ED plant.Figure 12.A.2 Schematic of a reverse osmosis unit.

13 Chapter 13Figure 13.1 Process integration and its classification.Figure 13.2 Process intensification classification.Figure 13.3 Process intensification classification.Figure 13.4 Proposed integration approach for a housing complex.Figure 13.5 Distribution of process units for scenario with the lowest dissa...

14 Chapter 14Figure 14.1 Implementing GREENSCOPE for sustainability performance assessmen...Figure 14.2 GREENSCOPE capturing the multi‐dimensional aspect of the process...Figure 14.3 Simplified block flow diagram for the syngas conversion for high...Figure 14.4 GREENSCOPE environmental indicators.Figure 14.5 GREENSCOPE energy indicators.Figure 14.6 Energy analysis based on the dry biomass lower heating value (LH...Figure 14.7 GREENSCOPE material efficiency indicators.Figure 14.8 GREENSCOPE economic indicators.

Guide

1 Cover Page

2 Title Page

3 Copyright Copyright Editors Dominic C. Y. Foo University of Nottingham Malaysia Department of Chemical and Environmental Engineering Broga Road 43500 Semenyih, Selangor Malaysia Mahmoud M. El‐Halwagi Texas A&M University Department of Chemical Engineering 3122 TAMU Room 200 TX United States All books published by Wiley‐VCH are carefully produced. Nevertheless, authors, editors, and publisher do not warrant the information contained in these books, including this book, to be free of errors. Readers are advised to keep in mind that statements, data, illustrations, procedural details or other items may inadvertently be inaccurate. Library of Congress Card No.: applied for British Library Cataloguing‐in‐Publication Data A catalogue record for this book is available from the British Library. Bibliographic information published by the Deutsche Nationalbibliothek The Deutsche Nationalbibliothek lists this publication in the Deutsche Nationalbibliografie; detailed bibliographic data are available on the Internet at < http://dnb.d-nb.de >. © 2021 WILEY‐VCH GmbH, Boschstr. 12, 69469 Weinheim, Germany All rights reserved (including those of translation into other languages). No part of this book may be reproduced in any form – by photoprinting, microfilm, or any other means – nor transmitted or translated into a machine language without written permission from the publishers. Registered names, trademarks, etc. used in this book, even when not specifically marked as such, are not to be considered unprotected by law. Print ISBN: 978‐3‐527‐34547‐2 ePDF ISBN: 978‐3‐527‐81870‐9 ePub ISBN: 978‐3‐527‐81872‐3 oBook ISBN: 978‐3‐527‐81873‐0 Cover Design Adam-Design, Weinheim, Germany

4 Dedication

5 Table of Contents

6 Begin Reading

7 Index

8 WILEY END USER LICENSE AGREEMENT

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