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020 _a9781394294268
020 _a9781394294299
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020 _a139429428X
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020 _a9781394294275
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020 _z9781394294268
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020 _z1394294263
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024 8 _aCIPO000221087
035 _a(OCoLC)1511529111
_z(OCoLC)1511138962
_z(OCoLC)1520192015
035 9 _a(OCLCCM-Owned)1511529111
040 _aYDX
_beng
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041 _aeng
049 _aMAIN
050 4 _aTS198.2
_b.R33 2025
082 0 0 _223
_a658.564
100 1 _aRabnawaz, Muhammad,
_eauthor.
245 1 0 _aDegradation, stabilization, and recycling of packaging materials /
_cMuhammad Rabnawaz, Susan E.M. Selke, Ian Wyman.
264 1 _aHoboken, New Jersey :
_bJohn Wiley & Sons, Inc.,
_c[2025]
300 _a1 online resource
336 _atext
_btxt
_2rdacontent
337 _acomputer
_bc
_2rdamedia
338 _aonline resource
_bcr
_2rdacarrier
505 0 _aCover -- Title Page -- Copyright Page -- Contents -- Preface -- Chapter 1 Introduction -- 1.1 General Introduction -- 1.2 What Are Some Ideal Properties of Packaging? -- 1.3 Liquid Resistance and Barrier Properties -- 1.4 End-of-Life (EoL) Outcomes -- 1.5 Life-Cycle Assessment (LCA) and Techno-Economic Analysis (TEA) -- 1.6 Open-Looped Versus Closed-Loop Processes -- 1.7 Recycling -- 1.8 Biodegradable and Compostable Packaging -- 1.9 Concluding Remarks -- References -- Chapter 2 Plastics -- 2.1 Introduction -- 2.2 How Are Polymers Named? -- 2.2.1 Classification of Polymers
505 8 _a2.2.1.1 Classification Based on the Polymer Structure -- 2.2.1.2 Classification Based on the Mechanism -- 2.2.1.3 Classification Based on the Source -- 2.2.1.4 Classification Based on Cost and Performance -- 2.2.1.5 Classification Based on Thermal Behavior -- 2.3 Molecular Architecture -- 2.3.1 Homopolymers and Copolymers -- 2.3.2 Polymer Molecular Weights -- 2.4 Polymer Characterization Techniques -- 2.4.1 Nuclear Magnetic Resonance Spectroscopy -- 2.4.2 Size Exclusion Chromatography -- 2.4.3 Viscosity -- 2.5 Microscopy Techniques -- 2.6 Physical State of a Polymer -- 2.7 Thermal Transitions
505 8 _a2.8 Mechanical Properties -- 2.9 Degradation of Polymers/Plastics -- 2.9.1 Overview -- 2.9.2 Impact of Degradation on Polymer Properties -- 2.10 Wanted Versus Unwanted Degradation in Polymers -- 2.10.1 Unwanted/Undesirable Degradation -- 2.10.2 Wanted/Desirable Degradation -- 2.11 Do all Polymers Degrade at the Same Rate? -- 2.11.1 How Can We Know if a Polymer Is Stable or not Against a Particular Degradation Environment? -- 2.12 Types of Polymer Degradation -- 2.12.1 Thermal Degradation -- 2.12.1.1 The Chemistry of Thermal Degradation
505 8 _a2.12.1.2 Some Polymers Degrade by Unzipping and Others by Random Scission -- 2.12.2 Oxidative Degradation -- 2.12.3 Photodegradation -- 2.12.4 Chemical Degradation -- 2.12.4.1 Hydrolysis -- 2.12.4.2 Environmental Stress Cracking -- 2.12.4.3 Other Chemical Reactions -- 2.12.4.4 Summary of Chemical Degradation Susceptibilities of Various Polymers -- 2.12.5 Mechanical Degradation -- 2.13 Methods for Studying Polymer Degradation -- 2.13.1 Weathering -- 2.13.2 Thermal Degradation -- 2.13.3 Photochemical Degradation -- 2.13.3.1 Change in Molecular Weight -- 2.14 Stabilization of Polymers
505 8 _a2.14.1 Antioxidants -- 2.14.1.1 Chain-breakingElectron Acceptors (CB-AAntioxidants) -- 2.14.1.2 Chain-breakingElectron Donors (CB-DAntioxidants) -- 2.14.2 Peroxide Decomposers -- 2.14.2.1 Stoichiometric Peroxide Decomposers (PD-S) -- 2.14.2.2 Catalytic Peroxide Decomposers (PD-C) -- 2.14.3 Metal Deactivators (MDs) -- 2.14.3.1 UV Light Absorbers and Other Light Stabilizers -- 2.14.3.2 UV Light Absorbers (UVA) -- 2.14.4 Quenchers of Photo-excited States -- 2.14.5 Special Stabilizers -- 2.14.6 Drawbacks of Stabilizers -- 2.15 Summary -- Problem Set -- References -- Chapter 3 Wood -- 3.1 Introduction
520 _aPractical guidance to sustainable packaging and its challenges with analysis of various packaging materials and their interactions with different environments Degradation, Stabilization, and Recycling of Packaging Materials analyzes packaging materials and their interactions with different environments, discussing the degradation processes of different materials like plastics, wood, paper, glass, and metal, providing specific strategies to address these degradation processes, and exploring solid waste management, recent developments in recycling, and the principles of eco-friendly packaging design. Organized into two parts, the first section of this book provides a comprehensive examination of how environmental factors such as heat, shear, light, air, packaged products, and stress affect packaging materials, focusing on the chemistry of their deterioration and stabilization methods. The second section explores solid waste management, recent developments in recycling, and key principles of eco-friendly packaging design, culminating in an extensive discussion of legal and regulatory aspects. The book includes case studies and problem sets in each chapter, with solutions to the problems in an appendix in the back of the book. Written by a team of highly qualified authors, Degradation, Stabilization, and Recycling of Packaging Materials includes discussion on: Structure of tinplate and tin-free steel, corrosion in lacquered cans, and effects of producing, processing, and storing metals Recyclable versus repulpable paper, uses of recycled papers, wet-strength papers, non-wood fibers as paper sources, and contamination issues with paper recycling Plastic recycling rates, plastic scrap exports in the US and abroad, chemical versus mechanical plastic recycling, hydrocracking of plastics, and PE and PET recycling Lightweight glass bottles, strategies to modify or strengthen glass, and the real recyclability of glass Presenting advanced technical knowledge that demystifies the sustainable packaging landscape Degradation, Stabilization, and Recycling of Packaging Materials is a critical resource for researchers, students, and industry professionals in the field of materials science and packaging to evaluate challenges related to solid waste and devise effective disposal strategies.
588 _aDescription based on online resource; title from digital title page (viewed on April 04, 2025).
650 0 _aPackaging
_xMaterials.
650 0 _aChemistry.
_0http://id.loc.gov/authorities/subjects/sh85022986
650 0 _aElectronic books.
_0http://id.loc.gov/authorities/subjects/sh93007047
650 6 _aConditionnement (Emballage)
_xMatériaux.
650 6 _aChimie.
650 6 _aLivres numériques.
650 7 _achemistry.
_2aat
650 7 _apackaging.
_2aat
650 7 _ae-books.
_2aat
650 7 _aIndustrial & Technical.
_2bisacsh/2023
650 7 _aPackaging.
_2bisacsh/2023
650 7 _aIndustrial Design.
_2bisacsh/2023
650 7 _aTECHNOLOGY & ENGINEERING.
_2bisacsh/2023
650 7 _aTextiles & Polymers.
_2bisacsh/2023
650 7 _aChemistry.
_2bisacsh/2023
650 7 _aSCIENCE.
_2bisacsh/2023
650 7 _aIndustrial & Technical.
_2bisacsh/2024
650 7 _aPackaging.
_2bisacsh/2024
650 7 _aIndustrial Design.
_2bisacsh/2024
650 7 _aTECHNOLOGY & ENGINEERING.
_2bisacsh/2024
650 7 _aTextiles & Polymers.
_2bisacsh/2024
650 7 _aChemistry.
_2bisacsh/2024
650 7 _aSCIENCE.
_2bisacsh/2024
655 0 _aElectronic books.
700 1 _aSelke, Susan E. M.,
_eauthor.
_1https://id.oclc.org/worldcat/entity/E39PBJxmCpgB9RpcDpf9fmXfMP
700 1 _aWyman, Ian,
_eauthor.
776 0 8 _iPrint version:
_z1394294263
_z9781394294268
_w(OCoLC)1458442082
776 0 8 _iPrint version:
_z9781394294268
856 4 0 _uhttps://onlinelibrary.wiley.com/doi/book/10.1002/9781394294299
_yFull text is available at Wiley Online Library. Click here to view.
942 _2ddc
_cER