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Cellulose-reinforced Nanofibre Composites Production, Properties and Applications PDF

563 Pages·2017·24.829 MB·English
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Cellulose-Reinforced Nanofibre Composites This page intentionally left blank Woodhead Publishing Series in Composites Science and Engineering Cellulose-Reinforced Nanofibre Composites Production, Properties and Applications Edited by Mohammad Jawaid Universiti Putra Malaysia, Selangor, Malaysia Sami Boufi University of Sfax, Sfax, Tunisia Abdul Khalil H.P.S. University of Science, Malaysia, Penang, Malaysia Woodhead Publishing is an imprint of Elsevier The Officers’ Mess Business Centre, Royston Road, Duxford, CB22 4QH, United Kingdom 50 Hampshire Street, 5th Floor, Cambridge, MA 02139, United States The Boulevard, Langford Lane, Kidlington, OX5 1GB, United Kingdom Copyright © 2017 Elsevier Ltd. All rights reserved. No part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopying, recording, or any information storage and retrieval system, without permission in writing from the publisher. Details on how to seek permission, further information about the Publisher’s permissions policies and our arrangements with organizations such as the Copyright Clearance Center and the Copyright Licensing Agency, can be found at our website: www.elsevier.com/permissions. This book and the individual contributions contained in it are protected under copyright by the Publisher (other than as may be noted herein). Notices Knowledge and best practice in this field are constantly changing. As new research and experience broaden our understanding, changes in research methods, professional practices, or medical treatment may become necessary. Practitioners and researchers must always rely on their own experience and knowledge in evaluating and using any information, methods, compounds, or experiments described herein. In using such information or methods they should be mindful of their own safety and the safety of others, including parties for whom they have a professional responsibility. To the fullest extent of the law, neither the Publisher nor the authors, contributors, or editors, assume any liability for any injury and/or damage to persons or property as a matter of products liability, negligence or otherwise, or from any use or operation of any methods, products, instructions, or ideas contained in the material herein. British Library Cataloguing-in-Publication Data A catalogue record for this book is available from the British Library Library of Congress Cataloging-in-Publication Data A catalog record for this book is available from the Library of Congress ISBN: 978-0-08-100957-4 (print) ISBN: 978-0-08-100965-9 (online) For information on all Woodhead Publishing publications visit our website at https://www.elsevier.com/books-and-journals Publisher: Mathew Deans Acquisition Editor: Gwen Jones Editorial Project Manager: Edward Payne Production Project Manager: Debasish Ghosh Cover Designer: Greg Harris Typeset by MPS Limited, Chennai, India Dedication Dr. Mohammad Jawaid, Editor, is honored to dedicate this book to his father Mr. Ziaur Rahman. He supported me to pursue PhD degree to fulfill my dreams; otherwise I would not been in this position without his support, inspiration, and motivation. This page intentionally left blank Contents List of Contributors xiii Preface xvii 1 Nanofibrillated cellulose reinforcement in thermoset polymer composites 1 Abdul Khalil H.P.S., Chaturbhuj K. Saurabh, Mustapha Asniza, Ying Y. Tye, Mohammad R. Nurul Fazita, Muhammad I. Syakir, Hashim M. Fizree, Abdul Fatah I. Yusra, Mohamad Kassim M. Haafiz, Mohd A. Kassim and Noorul Linda M. Suraya 1.1 Introduction 1 1.2 Cellulose fibers 1 1.3 Structure of cellulose 3 1.4 Nanofibrillated cellulose 3 1.5 Isolation and characterization of nanofibrillated cellulose 4 1.6 Chemical pretreatment process 4 1.7 Mechanical treatment 5 1.8 Nanofibrillated reinforced thermoset composites 7 1.9 Chronological events of nanofibrillated composites 8 1.10 Thermoset composites 9 1.11 Preparation and properties of nanofibrillated composites 13 1.12 Applications of nanocomposites 15 1.13 Conclusion 17 Acknowledgment 18 References 18 2 Hybrid montmorillonite/cellulose nanowhiskers reinforced polylactic acid nanocomposites: A comparative study based on formulation design 25 Reza Arjmandi, Azman Hassan, M.K. Mohamad Haafiz and Zainoha Zakaria 2.1 Introduction 25 2.2 Materials and methods 26 2.3 Testing and characterization 28 2.4 Results and discussion 29 2.5 Conclusion 41 Acknowledgements 41 References 41 viii Contents 3 Bionanomaterial from agricultural waste and its application 45 Rudi Dungani, Abdul Khalil H.P.S., Nurjaman A. Sri Aprilia, Ihak Sumardi, Pingkan Aditiawati, Atmawi Darwis, Tati Karliati, Aminudin Sulaeman, Enih Rosamah and Medyan Riza 3.1 Introduction 45 3.2 Overview of waste as green potential from biomass 47 3.3 Fundamental properties of various agriculture waste 48 3.4 Bionanomaterial from agricultural waste 59 3.5 Various applications of bionanomaterial 69 3.6 Conclusion 73 References 74 4 Recent advances in nanocellulose-based polymer nanocomposites 89 Naheed Saba and Mohammad Jawaid 4.1 Introduction 89 4.2 Nanotechnology and nanocomposites 89 4.3 Nanocellulose 91 4.4 Extraction and properties of cellulose nanocrystals 94 4.5 Extraction and properties of cellulose nanofibers 95 4.6 Modifications of nanocellulose 99 4.7 Nanocellulose-based polymer nanocomposites 101 4.8 Applications of nanocellulose and its polymer nanocomposites 104 4.9 Conclusion and future directions 106 Acknowledgments 107 References 107 5 Challenges in design of nanocellulose and its composites for different applications 113 Faris M. AL-Oqla and Mahmoud Rababah 5.1 Introduction 113 5.2 Proper cellulosic material selections 114 5.3 Natural fibers 114 5.4 Nanocomposites 118 5.5 Nanoclay hybrid composites 119 5.6 Design considerations of polymeric-based nanocomposites for various applications 119 5.7 Design of green biocomposites 120 5.8 Factors influencing the composite performance 122 References 125 6 Agricultural crop residue as a source for the production of cellulose nanofibrils 129 Sami Boufi 6.1 Introduction 129 6.2 Chemical composition of fibers 129 6.3 From cellulose to nanocellulose 131 6.4 CNF from agricultural residue 134 Contents ix 6.5 Factors affecting the fibrillation behavior of fibers from agricultural crops 144 References 149 Further reading 152 7 Nanofibrillated cellulose as an additive in papermaking process 153 Sami Boufi, Israel González, Marc Delgado-Aguilar, Quim Tarrès and Pere Mutjé 7.1 Introduction 153 7.2 Application of cellulose nanofibers in papermaking 153 7.3 Cellulose nanofiber as bulk additive in papermaking suspensions 157 7.4 Cellulose nanofiber for surface application 168 7.5 Conclusions 169 References 169 8 Nanocellulose in functional packaging 175 Julien Bras and Seema Saini 8.1 Packaging in brief 175 8.2 Functional packaging 180 8.3 Nanocellulose in functional packaging 188 8.4 Conclusion 203 References 205 9 Application of nanocrystalline cellulose: Processing and biomedical applications 215 Aamir H. Bhat, Y.K. Dasan, Imran Khan, H. Soleimani and Amil Usmani 9.1 Introduction 215 9.2 Nanocrystalline cellulose and their properties 216 9.3 Extraction methods of nanocrystalline cellulose 217 9.4 Modification of nanocrystalline cellulose 221 9.5 Nanocrystalline cellulose reinforced nanocomposites processing methods 224 9.6 Properties of nanocrystalline-based nanocomposites 227 9.7 Nanocrystalline cellulose-based nanocomposites in biomedical applications 229 9.8 Toxicology and biocompatibility of nanocomposites 233 9.9 Conclusion 234 References 234 Further reading 240 10 Cellulose nanowhiskers from oil palm empty fruit bunch biomass as green fillers 241 M.K. Mohamad Haafiz, Azman Hassan, Abdul Khalil H.P.S., Abdulwahab F. Owolabi, M.M. Marliana, Reza Arjmandi, I.M. Inuwa, Mohammad R. Nurul Fazita and M. Hazwan Hussin 10.1 Introduction 241 10.2 Experimental 242

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