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This BCC Research report provides a comprehensive analysis of the global market of nanocellulose (NC). It addresses the drivers and challenges of the NC market, and offers an exhaustive analysis of applications and sectors of this growing industry.

Use this report to:
- Receive a comprehensive analysis of the global market of nanocellulose (NC).
- Analyze the differences between each of the nanocellulose structures in terms of their size, morphology, crystallinity, material properties, and end-use applications
- Learn about the type of nanocellulose, applications and processing techniques.
- Receive information about the profiles of key market companies.

Highlights
- The global market for nanocellulose totaled $46.8 million in 2014 and is projected to approach $277.7 million by 2019, registering a compound annual growth rate (CAGR) of
42.8% through 2019.
- Cellulose nanofibrils as a segment totaled $28.2 million in 2014 and should total $158.3 million by 2019, with a CAGR of 41.2% for the period 2014-2019.
- Cellulose nanocrystals as a segment reached $18.0 million in 2014 and should reach $116.6 million by 2019, with a CAGR of 45.3% between 2014 and 2019.

Introduction & Scope

INTRODUCTION

STUDY GOALS AND OBJECTIVE
This report provides a comprehensive analysis of the global market of nanocellulose (NC). NC is a material derived from cellulose that displays extraordinary chemical and
mechanical properties, such as high stiffness, comparable to that of Kevlar, and tensile strength. This report will focus on the global production capacity and sales of NC, as
well as current and potential applications. The market will be segmented by geographic region, by types of NC, applications and processing techniques.

Due to its exotic properties, NC is currently being tested on a variety of applications across several industries: in automotive and aerospace, packaging, electronics, pharmaceutical and medical devices, and many more. Product development is at its early stages, with the first commercial products quickly approaching the market.
This report addresses the drivers and challenges of the NC market, and offers an exhaustive analysis of applications and sectors of this growing industry.

REASON FOR DOING THE REPORT
NC is quickly becoming commercially available worldwide, and the production capacity is increasing exponentially. NC has a significant potential for economic growth, and the development of new products will lead to a market with nearly unlimited applications. Some of the challenges the industry faces include the improvement of international standards to ensure quality and facilitate trade.

The report analyzes the global market and includes historical sales of NC in 2013 and estimates for 2014. Sales are forecast through 2019. This report is an invaluable instrument for understanding the NC market, the industries involved and its applications. The market is characterized by the creation of partnerships and collaborations between suppliers, manufacturers and product developers.

SCOPE OF THE REPORT
The global market of NC will grow to $277.7 million by 2019 at an astonishing 42.8% compound annual growth rate. This report provides a detailed segmentation by region,
type of nanocellulose (nanocrystal, nanofibril and bacterial), applications and processing techniques. Profiles of key market companies are also included. In-depth competitive market analysis is discussed, with examples of how new products will enter the market. The report also includes descriptions of current and future technologies for the nanocellulose market.

INTENDED AUDIENCE
The report is intended for professionals from the medical devices industry, pharmaceutical companies, nanotechnology, materials and chemical sciences. The industry covered in the report includes automotive, aerospace, biomedical, coating, paint, engineering and construction. The forest products industry is also discussed. Additional professionals who may benefit from reading this report include analysts, sales and marketing representatives, R&D scientists, business development and corporate strategy developers. Investment firms will gain valuable information concerning risks and opportunities encountered in the field. The report provides insights and guidance for strategic marketing planning, driver and limiter understanding, and sales growth opportunities.

METHODOLOGY AND INFORMATION SOURCE
A bottom-up approach was used to calculate the global market size of nanocellulose, and a top-down approach was used to segment the market. Primary and secondary research was conducted using patent literature, paid and open-access academic literature, books, press (e.g., New York Times, Wall Street Journal) SEC filings, companies’ annual reports and press releases. Interviews with experts in the field were conducted, including analysts, executives from companies, key opinion leaders and other experts. Additional statistical data and general information were obtained from the National Science Foundation, the National Institutes of Health (NIH), the World Health
Organization (WHO) and the U.S. Food and Drug Administration (FDA).

Table Of Contents

Cellulose Nanoparticles: Processing, Applications and Global Markets
TABLE OF CONTENTS
CHAPTER 1 INTRODUCTION 2
STUDY GOALS AND OBJECTIVE 2
REASON FOR DOING THE REPORT 2
SCOPE OF THE REPORT 2
INTENDED AUDIENCE 3
METHODOLOGY AND INFORMATION SOURCE 3
ANALYST'S CREDENTIALS 3
RELATED BCC RESEARCH REPORTS 3
BCC RESEARCH WEBSITE 4
DISCLAIMER 4
CHAPTER 2 SUMMARY 6
SUMMARY TABLE GLOBAL NANOCELLULOSE MARKET BY MATERIAL, THROUGH
2019 ($ MILLIONS) 6
SUMMARY FIGURE GLOBAL NANOCELLULOSE MARKET BY MATERIAL, 2013-2019 ($
MILLIONS) 6
CHAPTER 3 OVERVIEW 9
LIFE CYCLE ASSESSMENT OF NANOCELLULOSES 9
NANOCELLULOSES 9
Types of Nanocelluloses Considered 10
LCA OF MFC NANOCELLULOSE 11
Production Procedure of MFC 11
LCA Scope and Functional Unit Definition 12
Nanocellulose (MFC) Fabrication Process Description 12
Chemical and Mechanical Processes Descriptions 13
Chemical Modification Process, TEMPO Oxidation (TO) 13
Chemical Modification Process of Chloroacetic Acid Etherification (CE) 13
Mechanical Disintegration Process by Homogenization (HO) 13
Mechanical Disintegration Process by Sonication (SO) 13
Life Cycle Impact Assessment (LCIA) 14
Scenario Analysis 15
Results and Deductions of LCA of MFC Nanocellulose 15
LCA OF NCC NANOCELLULOSE 16
Production of Nanocrystalline Cellulose (NCC) 16
Life Cycle Assessment (LCA) 17
Nanowhiskers Extraction Processes 17
Extraction of Nanowhiskers from Unripe Coconut Fiber 18
Extraction of Nanowhiskers from Cotton Fibers 18
Systems Boundaries 19
Functional Unit 19
Life Cycle Impact Assessment (LCIA) 19
Results and Conclusions 20
TABLE 1 CUMULATIVE ENERGY DEMAND (CED) AND GLOBAL WARMING POTENTIAL
CHAPTER 4 THE GLOBAL NANOCELLULOSE MARKET 23
TABLE 2 GLOBAL NANOCELLULOSE MARKET BY REGION, THROUGH 2019 ($
MILLIONS) 23
TABLE 3 GLOBAL NANOCELLULOSE MARKET SHARE BY REGION, 2013-2019 (%) 23
FIGURE 1 GLOBAL NANOCELLULOSE MARKET SHARE BY REGION, 2013-2019 (%) 23
TABLE 4 GLOBAL NANOCELLULOSE PRODUCTION CAPACITY BY REGION, THROUGH
2019 (TONS) 24
TABLE 5 GLOBAL NANOCELLULOSE PRODUCTION CAPACITY BY TYPE, THROUGH
2019 (TONS) 24
TABLE 6 GLOBAL NANOCELLULOSE PRODUCTION CAPACITY BY TYPE, THROUGH
2019 (%) 25
FIGURE 2 GLOBAL NANOCELLULOSE PRODUCTION CAPACITY BY TYPE, 2013-2019
(%) 25
TABLE 7 GLOBAL NANOCELLULOSE MARKET BY APPLICATION, THROUGH 2019 ($
MILLIONS) 26
TABLE 8 GLOBAL NANOCELLULOSE MARKET SHARE BY APPLICATION, 2013-2019
(%) 27
FIGURE 3 GLOBAL NANOCELLULOSE MARKET SHARE BY APPLICATION, 2013-2019
(%) 27
TABLE 9 NORTH AMERICAN NANOCELLULOSE MARKET BY APPLICATION, THROUGH
2019 ($ MILLIONS) 28
TABLE 10 EUROPEAN NANOCELLULOSE MARKET BY APPLICATION, THROUGH 2019
($ MILLIONS) 29
TABLE 11 ASIAN NANOCELLULOSE MARKET BY APPLICATION, THROUGH 2019 ($
MILLIONS) 29
TABLE 12 GLOBAL NANOCELLULOSE COMPOSITES MARKET BY NANOCOMPOSITE
PRODUCTION PROCESSING, THROUGH 2019 ($ MILLIONS) 30
TABLE 13 NORTH AMERICAN NANOCELLULOSE COMPOSITES MARKET BY
NANOCOMPOSITE PRODUCTION PROCESSING, THROUGH 2019 ($ MILLIONS) 31
TABLE 14 EUROPEAN NANOCELLULOSE COMPOSITES MARKET BY
NANOCOMPOSITE PRODUCTION PROCESSING, THROUGH 2019 ($ MILLIONS) 31
TABLE 15 ASIAN NANOCELLULOSE COMPOSITES MARKET BY NANOCOMPOSITE
PRODUCTION PROCESSING, THROUGH 2019 ($ MILLIONS) 31
TABLE 16 ROW NANOCELLULOSE COMPOSITES MARKET BY NANOCOMPOSITE
PRODUCTION PROCESSING, THROUGH 2019 ($ MILLIONS) 32
TABLE 17 GLOBAL NANOCELLULOSE COMPOSITES MARKET SHARE BY
PRODUCTION PROCESSING, THROUGH 2019 (%) 32
FIGURE 4 GLOBAL NANOCELLULOSE COMPOSITES MARKET SHARE BY
PRODUCTION PROCESSING, 2013-2019 (%) 32
CHAPTER 5 STATE-OF-THE-ART RESEARCH AND DEVELOPMENT 35
INTRODUCTION 35
CELLULOSE NANOPARTICLES (CNS) 36
Microfibrillated Celluloses (MFCs) 36
Cellulose Nanoparticles (CNs) 36
PREPARATION OF CELLULOSE NANOPARTICLES (CNS) 37
First Stage: Pre-treatment 37
Second Stage: Fibrillation Step 38
Mechanical Treatments 38
Refining and High-Pressure Homogenization 38
Grinding 39
Cryocrushing 39
Chemical Treatments 39
Acid Hydrolysis 39
Enzymatic Hydrolysis 41
Chemical Oxidation 42
Electrospinning 42
PROPERTIES OF NANOCELLULOSES 43
Structural and Molecular Properties 43
Mechanical Properties 43
Thermal Properties 43
Rheological Properties 43
TABLE 18 MAJOR GLOBAL MANUFACTURERS OF NANOCELLULOSE 44
TABLE 19 GEOMETRICAL DIMENSIONS OF NC OBTAINED FROM DIFFERENT
SOURCES (NM) 44
TABLE 20 CRYSTALLINITY OF VARIOUS NC (%) 44
TABLE 21 MECHANICAL PROPERTIES OF VARIOUS NC COMPARED TO WOOD 45
TABLE 22 COMPARISON OF PHYSICAL PROPERTIES OF NANOCELLULOSE VERSUS
OTHER COMMON MATERIALS 45
Surface Modifications of Nanocelluloses 46
Surface Modification During Extraction of Cellulose
Nanoparticles 46
Surface Modification by Adsorption 46
Surface Modification by Chemical Reactions 47
Esterification 47
Ionization 47
Silylation 48
Fluorescent Labeling 48
Polymer Grafting 48
NANOCELLULOSE-BASED MATERIALS 49
Preparation of Nanocellulose Films 49
Preparation of Nanocomposites 50
Casting-Evaporation Process 50
Electrospinning Process 51
Melt-Compounding Processes 51
Impregnation Process 51
APPLICATIONS OF NANOCELLULOSES 52
CONCLUSIONS 52
CHAPTER 6 NANOCELLULOSE MARKET APPLICATIONS 55
HIGH-VOLUME APPLICATIONS 55
AUTOMOTIVE-BODY COMPONENTS 55
AUTOMOTIVE-INTERIORS 55
CONSTRUCTION-CEMENT; PRE-STRESSED AND PRE-CAST CONCRETE 55
PACKAGING-FIBER/PLASTIC REPLACEMENT 55
PACKAGING-FILLER 56
PACKAGING-COATING 56
PACKAGING-FILM 56
PAPER-FILLER 56
PAPER-COATINGS 56
PERSONAL CARE-HYGIENE AND ABSORBENT PRODUCTS 57
TEXTILES-CLOTHING 57
LOW-VOLUME APPLICATIONS 57
AEROGELS-OIL AND GAS INDUSTRY 57
AEROSPACE-STRUCTURAL 57
AEROSPACE-INTERIORS 58
CONSTRUCTION-AIR AND WATER FILTRATION 58
CONSTRUCTION-GYPSUM WALLBOARD FACING 58
CONSTRUCTION-INSULATION AND SOUNDPROOFING 58
INDUSTRIAL-VISCOSITY MODIFIERS 59
INDUSTRIAL-WATER PURIFICATION 59
PAINT 59
PERSONAL CARE-COSMETICS 59
PHARMACEUTICALS-EXCIPIENTS 59
SENSORS—MEDICAL, ENVIRONMENTAL AND INDUSTRIAL 59
NOVEL APPLICATIONS 60
ELECTRONICS-ORGANIC LIGHT-EMITTING DIODES (OLEDS) 60
PHOTONIC STRUCTURES-FILMS 60
INDUSTRIAL AND MEDICAL-ADDITIVE MANUFACTURING 60
TABLE 23 NANOCELLULOSE POTENTIAL APPLICATIONS 61
CHAPTER 7 BACTERIAL NANOCELLULOSE: PROPERTIES AND APPLICATIONS 63
INTRODUCTION 63
SYNTHESIS OF BACTERIAL CELLULOSE 63
BIOSYNTHESIS MECHANISM 64
PRODUCTION AND PURIFICATION OF BACTERIAL CELLULOSES 65
Production Process 65
Using Additives to Modify Nature of BC Product 66
Lignosulfonate 67
Hemicellulose 67
Carboxymethyl Cellulose (CMC) 67
2,6 - Dichloronitrobenzonitrile (DCB) 67
Purification 67
PROPERTIES OF BACTERIAL CELLULOSE 68
NANOCOMPOSITES OF BACTERIAL CELLULOSE 68
APPLICATIONS OF BACTERIAL CELLULOSE 71
Medical Applications 71
Skin Therapy 71
Artificial Blood Vessels 72
Tissue Engineering Applications 73
Wound Care Products 73
Dental Care Products 74
Veterinary Medicine 74
Non-medical Applications of Bacterial Cellulose 75
Tablet Excipients 75
Paper Industry 75
Food Industry 75
CHAPTER 8 INDUSTRY STRUCTURE 77
INDUSTRY LIFECYCLE 77
TABLE 24 NANOCELLULOSE POTENTIAL APPLICATIONS 77
TABLE 25 NANOCELLULOSE POTENTIAL PRODUCTS 78
TABLE 26 NANOCELLULOSE MARKET POTENTIAL (TONS) 78
MARKET DRIVERS AND CHALLENGES 78
TABLE 27 JOB GROWTH RELATED TO THE NANOCELLULOSE MARKET, 2015-2020
(UNITS) 78
TABLE 28 GDP GROWTH RELATED TO THE NANOCELLULOSE MARKET, 2015-2020
($ MILLIONS) 79
PRODUCTION CAPACITY GLOBAL SIZE 79
TABLE 29 MAJOR KEY COMPANIES AND PRODUCTION CAPACITIES FOR THE
NANOCELLULOSE MARKET 79
STANDARDS 80
CELLULOSE FROM FORESTS 80
Optimal Use of Wood and Fibers 82
CELLULOSE FROM VEGETABLES 82
INDUSTRY AND APPLICATIONS 83
AUTOMOTIVE AND AEROSPACE 83
TABLE 30 AUTO PARTS REQUIREMENTS 83
TABLE 31 LEADING SUPPLIERS OF BIO-BASED MATERIALS TO NORTH AMERICA
AUTO MANUFACTURERS 84
PACKAGING 84
TABLE 32 NANOCELLULOSE FILM 85
TABLE 33 MICROFIBRILLATED CELLULOSE FILMS 85
PAINT 85
TABLE 34 BENEFITS OF NANOCELLULOSE AS ADDITIVE FOR VARNISHES AND
PAINTS 85
FLEXIBLE ELECTRONICS 86
Energy Storage with Conductive Paper 86
Transparent Nanocellulose Paper for Electronic and Optoelectronic
Devices 87
TABLE 35 COMPARISON OF CELLULOSE NANOFIBRILS PROPERTIES VERSUS OTHER
COMMON MATERIALS 87
MEDICAL APPLICATIONS 88
TABLE 36 MAJOR MARKET COMPANIES IN BACTERIAL CELLULOSE 88
TABLE 37 NANOCELLULOSE COMPOSITES 88
TABLE 38 MICROFIBRILLATED CELLULOSE COMPOSITE 89
NANOCELLULOSE-POLYMERS COMPOSITES AS OXYGEN AND MOISTURE
BARRIERS FOR FOOD PACKAGING 89
Oxygen Permeability 89
Water Vapor Permeability 89
TABLE 39 NANOCELLULOSE-POLYMERS COMPOSITED- EXPECTED PERFORMANCES 90
Coating-Examples 90
TABLE 40 NANOCELLULOSE COATING FOR POLYMERS USED IN FOOD
PACKAGING-LITERATURE EXAMPLES 91
Melt Compounding-Examples 93
TABLE 41 NANOCELLULOSE POLYMERS MELT COMPOUNDING USED IN FOOD
PACKAGING-LITERATURE EXAMPLES 94
Stand-alone Films-Examples 96
TABLE 42 NANOCELLULOSE STAND-ALONE FILMS USED IN FOOD
PACKAGING-LITERATURE EXAMPLES 97
CHAPTER 9 GOVERNMENT REGULATIONS 100
REGULATIONS AND SAFETY 100
TABLE 43 TOXICOLOGICAL EVALUATION OF NANOCELLULOSE 101
CHAPTER 10 PATENT STATUS 104
TABLE 44 ASSIGNEES WITH AT LEAST TWO PATENTS WITHIN THE NANOCELLULOSE
FIELD 104
TABLE 45 RELEVANT NANOCELLULOSE PATENTS 104
CHAPTER 11 PRESS RELEASES 118
TABLE 46 PRESS RELEASES 118
CHAPTER 12 COMPANY PROFILES 124
ALBERTA INNOVATES-TECHNOLOGY FUTURES 124
ASAHI KASEI 125
ASAHI KASEI AMERICA 125
BASF CORP. 126
ABOUT BASF 127
ABOUT BASF'S PAPER CHEMICALS DIVISION 127
ABOUT ZELFO TECHNOLOGY 128
BC GENESIS LLC 128
BLUE GOOSE BIOREFINERIES INC. 128
BORREGAARD 129
RESEARCH AND DEVELOPMENT 129
BOWIL BIOTECH 129
CELLUCOMP LTD. 130
CURRAN PASTE/SLURRY 131
CURRAN POWDER 131
OTHER CURRAN POSSIBILITIES 131
CELLUFORCE 131
COCOSONG FOOD INDUSTRIES SDN. BHD. 132
COLORADO SCHOOL OF MINES 132
CP KELCO 133
DAICEL CORP. 133
EARTHRISE NUTRITIONALS LLC HEADQUARTERS 134
FMC BIOPOLYMER 134
FOREST PRODUCT LABORATORIES 134
PARTNERSHIPS 135
FPINNOVATIONS 135
GEA NIRO SOAVI 136
NAMICELL 136
THE PARTNERS 136
GREENCORE COMPOSITES 136
MOLDS ON CONVENTIONAL MACHINES, TOOLING, HOT-RUNNERS 137
ADVANCED INJECTION MOLDING PROCESSES 137
GRENOBLE INP-PAGORA 137
THE DEVELOPMENT OF BIO-BASED CHEMISTRY 138
ENERGY AND CHEMICAL PRODUCTS 139
APPLICATIONS IN VARIOUS FIELDS 139
INNVENTIA AB 140
BIOREFINING 140
MATERIAL PROCESSES 141
PACKAGING SOLUTIONS 141
INTECHFIBRES 142
KEYSER and MACKAY 142
KRAHN CHEMIE GMBH 142
LOHMANN and RAUSCHER INC. 143
LULEA UNIVERSITY OF TECHNOLOGY 143
MELODEA LTD. 143
NIPPON PAPER INDUSTRIES USA CO. LTD. 144
OJI PAPER 145
PT. SARI SEGAR HUSADA 145
SEALED AIR CORP. 145
SEIKO PMC CORP. 146
SONY CORP. OF AMERICA 146
STORA ENSO 147
TENNANTS DISTRIBUTION LTD 147
UPM 148
GLOBAL NETWORK OF RESEARCH CENTERS 149
UNIVERSITY OF MAINE 149
PILOT PLANT CAPABILITIES 150
UPGRADED REFINER LABORATORY 150
WONG COCO 151
ZELFO TECHNOLOGY 151

LIST OF TABLES
SUMMARY TABLE GLOBAL NANOCELLULOSE MARKET BY MATERIAL, THROUGH 2019
($ MILLIONS) 6
TABLE 1 CUMULATIVE ENERGY DEMAND (CED) AND GLOBAL WARMING POTENTIAL
(GWP) FOR 10 GRAMS OF NANOCELLULOSE PRODUCTION 21
TABLE 2 GLOBAL NANOCELLULOSE MARKET BY REGION, THROUGH 2019 ($
MILLIONS) 23
TABLE 3 GLOBAL NANOCELLULOSE MARKET SHARE BY REGION, 2013-2019 (%) 23
TABLE 4 GLOBAL NANOCELLULOSE PRODUCTION CAPACITY BY REGION, THROUGH
2019 (TONS) 24
TABLE 5 GLOBAL NANOCELLULOSE PRODUCTION CAPACITY BY TYPE, THROUGH
2019 (TONS) 24
TABLE 6 GLOBAL NANOCELLULOSE PRODUCTION CAPACITY BY TYPE, THROUGH
2019 (%) 25
TABLE 7 GLOBAL NANOCELLULOSE MARKET BY APPLICATION, THROUGH 2019 ($
MILLIONS) 26
TABLE 8 GLOBAL NANOCELLULOSE MARKET SHARE BY APPLICATION, 2013-2019 (%) 27
TABLE 9 NORTH AMERICAN NANOCELLULOSE MARKET BY APPLICATION, THROUGH
2019 ($ MILLIONS) 28
TABLE 10 EUROPEAN NANOCELLULOSE MARKET BY APPLICATION, THROUGH 2019
($ MILLIONS) 29
TABLE 11 ASIAN NANOCELLULOSE MARKET BY APPLICATION, THROUGH 2019 ($
MILLIONS) 29
TABLE 12 GLOBAL NANOCELLULOSE COMPOSITES MARKET BY NANOCOMPOSITE
PRODUCTION PROCESSING, THROUGH 2019 ($ MILLIONS) 30
TABLE 13 NORTH AMERICAN NANOCELLULOSE COMPOSITES MARKET BY
NANOCOMPOSITE PRODUCTION PROCESSING, THROUGH 2019 ($ MILLIONS) 31
TABLE 14 EUROPEAN NANOCELLULOSE COMPOSITES MARKET BY NANOCOMPOSITE
PRODUCTION PROCESSING, THROUGH 2019 ($ MILLIONS) 31
TABLE 15 ASIAN NANOCELLULOSE COMPOSITES MARKET BY NANOCOMPOSITE
PRODUCTION PROCESSING, THROUGH 2019 ($ MILLIONS) 31
TABLE 16 ROW NANOCELLULOSE COMPOSITES MARKET BY NANOCOMPOSITE
PRODUCTION PROCESSING, THROUGH 2019 ($ MILLIONS) 32
TABLE 17 GLOBAL NANOCELLULOSE COMPOSITES MARKET SHARE BY PRODUCTION
PROCESSING, THROUGH 2019 (%) 32
TABLE 18 MAJOR GLOBAL MANUFACTURERS OF NANOCELLULOSE 44
TABLE 19 GEOMETRICAL DIMENSIONS OF NC OBTAINED FROM DIFFERENT SOURCES
(NM) 44
TABLE 20 CRYSTALLINITY OF VARIOUS NC (%) 44
TABLE 21 MECHANICAL PROPERTIES OF VARIOUS NC COMPARED TO WOOD 45
TABLE 22 COMPARISON OF PHYSICAL PROPERTIES OF NANOCELLULOSE VERSUS
OTHER COMMON MATERIALS 45
TABLE 23 NANOCELLULOSE POTENTIAL APPLICATIONS 61
TABLE 24 NANOCELLULOSE POTENTIAL APPLICATIONS 77
TABLE 25 NANOCELLULOSE POTENTIAL PRODUCTS 78
TABLE 26 NANOCELLULOSE MARKET POTENTIAL (TONS) 78
TABLE 27 JOB GROWTH RELATED TO THE NANOCELLULOSE MARKET, 2015-2020
(UNITS) 78
TABLE 28 GDP GROWTH RELATED TO THE NANOCELLULOSE MARKET, 2015-2020 ($
MILLIONS) 79
TABLE 29 MAJOR KEY COMPANIES AND PRODUCTION CAPACITIES FOR THE
NANOCELLULOSE MARKET 79
TABLE 30 AUTO PARTS REQUIREMENTS 83
TABLE 31 LEADING SUPPLIERS OF BIO-BASED MATERIALS TO NORTH AMERICA AUTO
MANUFACTURERS 84
TABLE 32 NANOCELLULOSE FILM 85
TABLE 33 MICROFIBRILLATED CELLULOSE FILMS 85
TABLE 34 BENEFITS OF NANOCELLULOSE AS ADDITIVE FOR VARNISHES AND PAINTS 85
TABLE 35 COMPARISON OF CELLULOSE NANOFIBRILS PROPERTIES VERSUS OTHER
COMMON MATERIALS 87
TABLE 36 MAJOR MARKET COMPANIES IN BACTERIAL CELLULOSE 88
TABLE 37 NANOCELLULOSE COMPOSITES 88
TABLE 38 MICROFIBRILLATED CELLULOSE COMPOSITE 89
TABLE 39 NANOCELLULOSE-POLYMERS COMPOSITED- EXPECTED PERFORMANCES 90
TABLE 40 NANOCELLULOSE COATING FOR POLYMERS USED IN FOOD
PACKAGING-LITERATURE EXAMPLES 91
TABLE 41 NANOCELLULOSE POLYMERS MELT COMPOUNDING USED IN FOOD
PACKAGING-LITERATURE EXAMPLES 94
TABLE 42 NANOCELLULOSE STAND-ALONE FILMS USED IN FOOD
PACKAGING-LITERATURE EXAMPLES 97
TABLE 43 TOXICOLOGICAL EVALUATION OF NANOCELLULOSE 101
TABLE 44 ASSIGNEES WITH AT LEAST TWO PATENTS WITHIN THE NANOCELLULOSE
FIELD 104
TABLE 45 RELEVANT NANOCELLULOSE PATENTS 104
TABLE 46 PRESS RELEASES 118

LIST OF FIGURES
SUMMARY FIGURE GLOBAL NANOCELLULOSE MARKET BY MATERIAL, 2013-2019 ($
MILLIONS) 6
FIGURE 1 GLOBAL NANOCELLULOSE MARKET SHARE BY REGION, 2013-2019 (%) 23
FIGURE 2 GLOBAL NANOCELLULOSE PRODUCTION CAPACITY BY TYPE, 2013-2019 (%) 25
FIGURE 3 GLOBAL NANOCELLULOSE MARKET SHARE BY APPLICATION, 2013-2019
(%) 27
FIGURE 4 GLOBAL NANOCELLULOSE COMPOSITES MARKET SHARE BY PRODUCTION
PROCESSING, 2013-2019 (%) 32

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