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Regenerated Cellulose

Editat de Mohd Shabbir
en Limba Engleză Hardback – 12 oct 2026
This comprehensive guide unlocks the potential of regenerated cellulose, offering researchers and engineers a definitive roadmap to overcoming cellulose insolubility and exploring next-generation innovations for sustainability.
In recent years, there has been a growing shift toward natural, renewable resources for daily applications. As one of the most abundant natural polymers on earth, cellulose plays a critical role in addressing these expanding demands. However, fully leveraging its potential requires overcoming the challenge of its insolubility in common solvents. This book focuses on the end-to-end processing of cellulose, from its initial dissolution and regeneration to its diverse downstream applications. It examines specific processes and applications of cellulose, including green solvents, environmental remediation applications, and its potential in flexible electronics, and addresses current challenges faced in the application of cellulose. This essential resource is designed to inspire researchers, scholars, engineers, and industry professionals to further utilize this sustainable material.
Readers will find the volume:
  • Addresses how dissolution of cellulose is important for many applications;
  • Explores how morphology of regenerated materials affects the performance of regenerated cellulose;
  • Discusses sustainability and production prospects of regenerated cellulose;
  • Serves as a collection of recent literature in the field of regenerated cellulose.
Audience
Researchers, engineers, students and industry professionals working in cellulose chemistry, polymers, water treatment, food safety and biomedical sciences.
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Specificații

ISBN-13: 9781394343133
ISBN-10: 1394343132
Pagini: 528
Editura: Wiley

Notă biografică

Mohd Shabbir, PhD is an Assistant Professor in the Department of Applied Science, Chandigarh Group of Colleges Jhanjeri, Punjab, India. Prior to this, he had been working as a post-doctoral fellow at the School of Chemical Engineering and Pharmacy, Wuhan Institute of Technology, Wuhan, China. He worked there on regenerated cellulose materials for environmental remediation, sensing, and biomedical applications. He has more than 50 peer-reviewed scientific research publications and six edited books. His current research focuses on biopolymers, cellulose materials, biomaterials for adsorption and catalysis, wastewater treatment, and functional textiles.

Cuprins

Preface xvii
Part I: Cellulose Production and Economic Perspective 1
1 Cellulose: An Introduction to Sources, Regeneration, and Solvents 3
Perneta, Manish Sharma and Mohd Shabbir
1.1 Introduction 3
1.2 Cellulose Sources 4
1.3 Cellulose Dissolution and Solvents 5
1.4 Regeneration of Cellulose to Various Morphologies 8
2 Cellulose and Cellulose Derivatives 15
Tanvir Ahmad Yamin, Sha Md. Mosaddak Shehab, A.S.M. Rowson Jamil and Md. Arif Mahmud
2.1 Introduction 16
2.2 Cellulose: Formation and Structure 16
2.3 Cellulose Derivatives That Can Be Used as Packaging Materials 18
2.4 Crosslinking of Cellulose 38
2.5 Application and Advantages of Various Cellulose Based Packaging Materials 41
2.6 Benefits of Packaging Made of Cellulose Instead of Synthetic Polymer 44
2.7 Conclusion 45
3 Regeneration and Derivatization of Cellulose 59
Popat Mohite, Abhijeet Puri, Riteshkumar Patil, Monikkumar Patel, Yash Nanda, Vijaykumar Prajapati and Sudarshan Singh
3.1 Introduction 60
3.2 Modifications of Cellulose 71
3.3 Sustainability Aspects 77
3.4 Biodegradability and Recycling Considerations 82
3.5 Conclusion 83
4 Economic Perspective of Cellulose Production and Regeneration 91
Heena Gupta
4.1 Introduction 92
4.2 Need for Regenerated Cellulose Fibers 95
4.3 Microplastics from Textiles: Environmental and Health Impacts 102
4.4 RCF in Textile Industry 104
4.5 Conclusion 111
Part II: Environmental Remediation 119
5 Regenerated Cellulose Materials' Sensing Applications for Metal and Inorganic Ions 121
Anita Devi
5.1 Introduction 122
5.2 Cellulose: A Sensing Material 123
5.3 Preparation of Cellulose-Based Materials 124
5.4 Applications as Inorganic Ion Sensors 137
6 Reinventing Modern Concrete with Nanocellulose 147
Mahapara Abbass, Shalom Akhai, Amandeep Singh Wadhwa and Rajni Verma
6.1 Introduction 148
6.2 Synthesis Methods for Spherical Nanocellulose 149
6.3 Functionalization and Surface Modification of SNC 151
6.4 Environmental Applications of SNC 152
6.5 Modification Processes for Enhanced Environmental Benefits 157
6.6 Comparative Analysis with Other Nanomaterials 159
6.7 Case Studies of Spherical Nanocellulose (SNC) Applications 164
6.8 Challenges and Future Directions 166
6.9 Future Research Directions 168
6.10 Conclusion 169
7 Regenerated Cellulose for Catalytic Removal of Pollutants from Wastewater 181
Azam Ali, Jiri Militky, Alyaa Abdulhussein Alsaedi, Maria Murtaza, Narmeen Zahra and Sidra Ghafoor
7.1 Introduction 182
7.2 Treatment Approaches for Wastewater 184
7.3 Cellulose and Their Limitations in Treating Water Pollutants 186
7.4 Regenerated Cellulose to Treat Industrial Wastewater 189
7.5 Conclusion 194
8 Regenerated Cellulose for Packaging 199
Muntajena Nanjeba, Md. Osman Goni Shihan, Rifat Jahangir, Joyanto Sutradhar and Md. Arif Mahmud
8.1 Introduction 200
8.2 Background 201
8.3 Cellulose: A Promising Candidate for Packaging 207
8.4 Regenerated Cellulose 210
8.5 Comparison with Other Packaging Materials 223
8.6 Current Market 226
8.7 Challenges and Future Scope 228
8.8 Conclusion 233
9 Regenerated Cellulose: A Sustainable Solution for Storage and Packaging 243
Arti A. Bagada, Monika B. Sangani and Priya V. Patel
9.1 Introduction 243
9.2 Types and Forms of Regenerated CEL 244
9.3 Applications of Regenerated CEL for Food Packaging 251
9.4 Applications of Regenerated CEL in Healthcare Product Packaging 257
9.5 Future Opportunities and Challenges 259
9.6 Conclusion 260
Part III: Cellulose in Biomedical Field 265
10 Targeted Drugs and Bioactive Compounds Delivery by Regenerated Cellulose 267
Avik Kumar Dhar, Vijay Mohakar, Sneha Ghosh, Pravalika Irukulla, Niloy Chowdhury, Piyas Halder, Ivan Moldavchuk and Md. Shamsuzzaman
10.1 Introduction 269
10.2 Cellulose 271
10.3 Regenerated Cellulose 272
10.4 Controlled Drug and Bioactive Compound Delivery 273
10.5 Solvent Systems for Cellulose Regeneration 274
10.6 Form of RC for DDS 279
10.7 Drug Loading Mechanism 290
10.8 Drug Release Kinetics 294
10.9 Conclusion 299
11 Wound Dressing of Regenerative Cellulose 311
Rajdip Goswami, Meghamouli Rana, Biswajit Basu, Swarnali Dutta, Sourav Ghosh and Sudarshan Singh
11.1 Introduction 312
11.2 Sources of Cellulose 315
11.3 Application of Waste in the Development of Regenerative Cellulose 317
11.4 Anatomy of Skin 318
11.5 Pathophysiology Behind Wound and Its Natural Healing Process 320
11.6 Enhancement in Wound Healing Management Through the Utilization of Cellulose-Based Dressings 322
11.7 Regenerated Cellulose: A Renewable Alternative to Petroleum-Based Plastics in Wound Dressings 323
11.8 Application of Regenerated Cellulose in Wound Healing Management 325
11.9 Regulatory Aspects of Cellulose-Based Wound Dressings 330
11.10 Patent Information on Cellulose-Based Wound Dressings 331
11.11 Challenges Associated with Regenerated Cellulose in Wound Dressings 332
11.12 Future Prospects 333
11.13 Conclusion 334
12 Bacterial Cellulose for Advanced Wound Healing 345
Mrunal Patil, Nikita Shinde and Shivaji Kashte
12.1 Introduction 345
12.2 Wound Healing 347
12.3 Cellulose 349
12.4 Bacterial Cellulose 350
12.5 Properties of BC for Wound Healing 354
12.6 Commercially Available BC Products 361
12.7 Enhancements and Modifications of BC 363
12.8 Limitations and Future Directions 375
12.9 Conclusion 376
13 Bacterial Cellulose for Bone Tissue Engineering 387
Nikita A. Shinde, Mrunal S. Patil and Shivaji B. Kashte
13.1 Introduction 388
13.2 Biosynthesis of Bacteriological Cellulose 389
13.3 Properties of Scaffolds for Bone Tissue Engineering 391
13.4 Scaffolds for Bone Tissue Engineering 402
13.5 Challenges and Future Directions 410
13.6 Conclusion 413
Part IV: Industrial Applications 421
14 Regenerated Cellulose in Textiles 423
Sandra Varnaite-Zuravliova and Julija Baltusnikaite-Guzaitiene
14.1 Introduction 423
14.2 Classification of Regenerated Cellulose Fibers 426
14.3 Methods of Production for Regenerated Cellulose Fibers 431
14.4 New Methods of Production for RCFs 437
14.5 Characteristics of Regenerated Cellulose Fibers 438
14.6 Certain New Regenerated Cellulose Fibers Used in Textiles 444
14.7 Applications of Regenerated Cellulose Fibers 446
14.8 Recycling of Regenerated Cellulose Fibers 449
14.9 Future Perspectives 451
15 Durable and Sustainable Concrete with Spherical Nanocellulose: A Comprehensive Review 463
Mahapara Abbass, Syed Mohd. Arif , Shalom Akhai, Rajni Verma and Amandeep Singh Wadhwa
15.1 Background 464
15.2 Properties and Benefits of SNC-Based Concrete 465
15.3 Environmental Benefits of SNC-Based Concrete 468
15.4 Modification Techniques for SNC 471
15.5 Applications of SNC-Based Concrete 474
15.6 Challenges and Future Research Directions 478
15.7 Conclusion 480
Bibliography 481
Index 491