The Global Market for Nanocellulose

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Date: 21-Sep-2016
No. of pages: 360
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The Global Market for Nanocellulose, fully updated and revised to September 2016, including an additional 40 pages of contents from the previous edition features:


  • Technology description and production methods

  • Market structure, supply chain, patenting and publications

  • Production volumes, total, forecasted and by producer for The Global Nanocellulose Market

  • Markets for nanocellulose, including composites, electronics, construction, paper and pulp, filtration, medicine and life sciences, paints, films, coatings, rheological modifiers, aerogels and oil and gas exploration.

  • Commercialization timelines, by market

  • Producer, research centre and application developer profiles

  • Assessment of economic prospects of the market for nanocellulose based on Future Markets assessment tools and company inputs.


Nanocellulose can be produced from a variety of materials (vegetable matter, bamboo etc.) and after applying various pre-treatments, tailor-made nanofibrils with specific morphology and surface chemistry are produced. As well as being completely renewable, safer to handle, and cheaper to produce, nanocellulose materials also possess exceptional physical and chemical properties.

Today there is a substantial amount of research on nanocellulose and commercial development is on-going, including the construction of multi-ton capacity manufacturing facilities, mainly in North American, Japan and Europe. The market for nanocellulose continues to grow with new products on the market in 2015 and new production facilities coming on stream in 2016.

In the light of the Paris Climate Agreement, development of environmentally sustainable new technologies and materials is of growing importance. Nanocellulose is a prime candidate for use as a sustainable material in industries such as packaging that typically involves the high-energy intensity production of chemicals and synthetic polymers.

With appropriate conversion and extraction technologies, as well as modification and characterization, nanocellulose can be integrated into bio-based products such as strength enhancers in paper, polymer composite additives, emulsions and oxygen barrier films for plastics packaging. It will also add new impetus to the traditional paper and board industry and play a role in the future development of printable and flexible electronics.

The Global Market for Nanocellulose

Table of Contents

1 Research Methodology 25
1.1 Commercial Impact Rating System 26
1.2 Market Challenges Rating System 28

2 Executive Summary 30
2.1 Applications 32
2.2 Production 38
2.3 Market drivers 39
2.3.1 Sustainable materials 40
2.3.2 Improved products 40
2.3.3 Unique properties 41
2.3.4 Recent improvements in production and product integration 42
2.4 Market and technical challenges 42
2.4.1 Characterization 43
2.4.2 Production 43
2.4.3 Functionalization 44
2.4.4 Moisture absorption and aggregation 45
2.4.5 Scalability 45
2.4.6 Lack of current products 45
2.5 Market size 50

3 Introduction 54
3.1 Properties of nanomaterials 54
3.2 Categorization 56

4 Nanomaterials Regulations 58
4.1 Europe 58
4.1.1 REACH 59
4.1.2 Biocidal Products Regulation 59
4.1.3 National nanomaterials registers 60
4.1.4 Cosmetics regulation 61
4.1.5 Food safety 63
4.2 United States 64
4.2.1 Toxic Substances Control Act (TSCA) 64
4.3 Asia 66
4.3.1 Japan 66
4.3.2 South Korea 66
4.3.3 Taiwan 67
4.3.4 Australia 67

5 Nanocellulose 69
5.1 Types of nanocellulose 70
5.1.1 NanoFibrillar Cellulose (NFC) 72
5.1.1.1 Applications 73
5.1.1.2 Production methods 74
5.1.2 NanoCrystalline Cellulose (NCC) 77
5.1.2.1 Applications 78
5.1.2.2 Production capacities 79
5.1.3 Bacterial Cellulose (BCC) 80
5.1.3.1 Applications 80
5.2 Synthesis of cellulose materials 81
5.2.1 Microcrystalline cellulose (MCC) 81
5.2.2 Microfibrillated cellulose (MFC) 82
5.2.3 Nanofibrillated cellulose (MFC) 83
5.2.4 Cellulose nanocrystals (CNC) 84
5.2.5 Bacterial cellulose particles (CNC) 85
5.3 Properties of nanocellulose 86
5.4 Advantages of nanocellulose 88
5.5 Manufacture of nanocellulose 88
5.6 Production methods 90
5.6.1 Nanofibrillated cellulose production methods 93
5.6.2 Nanocrystalline celluose production methods 94

6 Nanocellulose Market Structure 95

7 Swot Analysis For Nanocellulose 99

8 Regulations And Standards 103
8.1 Standards 103
8.1.1 International Standards Organization (ISO) 103
8.1.2 American National Standards 103
8.1.3 CSA Group 104
8.2 Toxicity 104
8.3 Regulation 108

9 Regional Initiatives And Government Funding 110

10 Nanocellulose Applications 111

11 Nanocellulose Technology Readiness Level (Trl) 113

12 Nanocellulose End User Market Segment Analysis 115
12.1 Production of nanocellulose 115
12.1.1 Microfibrillated cellulose 115
12.1.2 Cellulose nanofiber production 116
12.1.3 Cellulose nanocrystal production 117
12.1.4 Production volumes, by region 118
12.1.5 Prices 118
12.2 Nanocellulose patents & publications 119

13 Composites 126
13.1 Market Drivers And Trends 126
13.1.1 Growing use of polymer composites 126
13.1.2 Increased need for advanced, protective materials 127
13.1.3 Improved performance 127
13.1.4 Multifunctionality 129
13.1.5 Growth in the wind energy market 129
13.1.6 Environmental impact of carbon fibers 130
13.1.7 Shortcomings of natural fiber composites and glass fiber reinforced composites 131
13.2 Applications 132
13.2.1 Applications by cellulose type 134
13.2.2 Applications timeline 135
13.2.3 Market opportunity 136
13.2.4 Applications and market size 137
13.2.5 Biopackaging 138
13.2.5.1 Market drivers and trends 138
13.2.5.2 Applications 146
13.2.5.3 Market size 149
13.2.5.4 Market challenges 152
13.2.6 Aerospace 154
13.2.6.1 Market drivers and trends 154
13.2.6.2 Applications 157
13.2.6.3 Market size 158
13.2.6.4 Market challenges 161
13.2.7 Automotive 162
13.2.7.1 Market drivers and trends 162
13.2.7.2 Safety 166
13.2.7.3 Cost 167
13.2.7.4 Applications 167
13.2.7.5 Market size 169
13.2.7.6 Market challenges 172
13.2.8 Construction & building 174
13.2.8.1 Market drivers and trends 174
13.2.8.2 Applications 175
13.2.8.3 Market size 176
13.2.8.4 Market challenges 177
13.2.10 Nanocellulose product developers in composites 179

14 Paper & Board 182
14.1 Market drivers and trends 182
14.1.1 Environmental 182
14.1.2 Need to develop innovative new products in the paper and board industry 182
14.2 Applications 183
14.2.1.1 Paper packaging 185
14.2.1.2 Paper coatings 186
14.2.1.3 Anti-microbials 187
14.3 Market size 187
14.4 Nanocellulose product developers in paper and board 189

15 Medical & Healthcare 191
15.1 Market drivers and trends 192
15.1.1 Improved drug delivery for cancer therapy 192
15.1.2 Shortcomings of chemotherapies 193
15.1.3 Biocompatibility of medical implants 194
15.1.4 Anti-biotic resistance 194
15.1.5 Growth in advanced woundcare market 194
15.2 Applications 195
15.2.1.1 Drug delivery 196
15.2.1.2 Medical implants 197
15.2.1.3 Tissue engineering 198
15.2.1.4 Wound dressings 198
15.2.1.5 Laterial flow immunosay labels 199
15.3 Market size and opportunity 199
15.4 Nanocellulose product developers in medical and healthcare 204

16 Coatings, Films & Paints 206
16.1 Market drivers and trends 206
16.1.1 Sustainable coating systems and materials 206
16.1.2 Chemical to biobased 207
16.1.3 Increased demand for abrasion and scratch resistant coatings 208
16.1.4 Increased demand for UV-resistant coatings 209
16.1.5 Growth in superhydrophobic coatings market 209
16.2 Applications 211
16.2.1 Abrasion and scratch resistance 211
16.2.2 Wood coatings 212
16.2.3 Anti-counterfeiting films 213
16.2.4 Superhydrophobic coatings 213
16.2.5 Gas barriers 214
16.3 Market size 215
16.4 Nanocellulose product developers in coatings, films and paints 218

17 Aerogels 220
17.1 Market drivers and trends 220
17.1.1 Energy efficiency 220
17.1.2 Demand for environmentally-friendly, lightweight materials 220
17.2 Market size 220
17.3 Applications 221
17.3.1 Thermal insulation 222
17.3.2 Medical 222
17.3.3 Shape memory 223
17.4 Nanocellulose product developers in aerogels 223

18 Oil And Gas Exploration 224
18.1 Market Drivers And Trends 224
18.1.1 Need to reduce operating costs and improve operation efficiency 224
18.1.2 Increased demands of drilling environments 225
18.1.3 Increased exploration in extreme environments 226
18.1.4 Environmental and regulatory 227
18.2 Applications 227
18.2.1 Oil and fracking drilling fluids 229
18.2.2 Extraction 231
18.3 Market size 231
18.4 Market challenges 233
18.5 Nanocellulose product developers in oil and gas exploration 234

19 Filtration And Separation 236
19.1 Market drivers and trends 236
19.1.1 Need for improved membrane technology 236
19.1.2 Water shortage and population growth 238
19.1.3 Need for improved and low cost membrane technology 239
19.1.4 Need for improved groundwater treatment technologies 240
19.1.5 Cost and efficiency 241
19.1.6 Growth in the air filter market 241
19.1.7 Need for environmentally, safe filters 242
19.1.8 Recyclability of polymer membranes 242
19.2 Applications 243
19.2.1 Water filtration 245
19.2.2 Air filtration 246
19.2.3 Virus filtration 247
19.3 Market size 249
19.4 Market challenges 251
19.5 Nanocellulose product developers in filtration and separation 252

20 Rheology Modifiers 254
20.1 Applications 254
20.1.1 Food 256
20.1.2 Pharmaceuticals 256
20.1.3 Cosmetics 256
20.2 Commercial activity 257

21 Flexible Electronics 258
21.1 Market drivers and trends 258
21.1.1 Environmental 258
21.1.2 Flexible, wearable and paper electronics markets growing 259
21.1.3 Need for improved barrier function 262
21.2 Applications 263
21.2.1 Flexible energy storage 266
21.2.2 Conductive inks 268
21.3 Market size 269
21.4 Nanocellulose product developers in flexible electronics 272

22 3d Printing 274
22.1 Market drivers 274
22.1.1 Improved materials at lower cost 274
22.1.2 Limitations of current thermoplastics 275
22.2 Applications and market size 275
22.3 Market challenges 278
22.4 Nanocellulose product developers in 3D printing 279

23 Nanocellulose Company Profiles 281- 341 (59 Company Profiles)
23.1 Producers and types of nanocellulose produced (NCF, NCC, BCC) 281
23.2 Target markets for producers 283

24 Main Nanocellulose Research Centres 343

List of Tables

Table 1: Markets and applications for nanocellulose 33
Table 2: Nanocellulose production plants worldwide and production status 38
Table 3: Potential volume estimates (tons) and penetration of nanocellulose into key markets 50
Table 4: Market summary for nanocellulose-Selling grade particle diameter, usage, advantages, average price/ton, market estimates, global consumption, main current applications, future applications 51
Table 5: Categorization of nanomaterials 56
Table 6: National nanomaterials registries in Europe 60
Table 7: Nanomaterials regulatory bodies in Australia 68
Table 8: Nanocellulose properties 71
Table 9: Applications of nanofibrillar cellulose (NFC) 73
Table 10: Production methods of NFC producers 76
Table 11: Applications of nanocrystalline cellulose (NCC) 78
Table 12: Production capacities of CNC producers per annum in tons, current and planned 79
Table 13: Applications of bacterial cellulose (BC) 80
Table 14: Microcrystalline cellulose (MCC) preparation methods, resulting materials and applications 81
Table 15: Microfibrillated cellulose (MFC) preparation methods, resulting materials and applications 82
Table 16: Nanofibrillated cellulose (MFC) preparation methods, resulting materials and applications 83
Table 17: Cellulose nanocrystals (MFC) preparation methods, resulting materials and applications 84
Table 18: Cellulose nanocrystals (MFC) preparation methods, resulting materials and applications 85
Table 19: Properties and applications of nanocellulose 86
Table 20: Properties of cellulose nanofibrils relative to metallic and polymeric materials 89
Table 21: Nanocellulose nanocrystal sources and scale 90
Table 22: Nanofibrillated cellulose production methods 93
Table 23: Cellulose nanocrystals (NCC) production methods 94
Table 24: Nanocellulose market structure 95
Table 25: SWOT analysis of nanocellulose 99
Table 26: Safety of Micro/Nanofibrillated cellulose 105
Table 27: Potential high volume impact of nanocellulose and likelihood of market impact 111
Table 28: Production capacities of CNF producers per annum in tons, current and planned 117
Table 29: Production capacities of CNC producers per annum in tons, current and planned 117
Table 30: Example prices of nanocellulose 118
Table 31: Published patent publications for nanocellulose, 1997-2013 120
Table 32: Nanocellulose patents as of May 2015 120
Table 33: Research publications on nanocellulose materials and composites, 1996- 2013 121
Table 34: Nanocellulose patents by organisation 122
Table 35: Nanocellulose patents by organisation, 2014 123
Table 36: Main patent assignees for NCC, as of May 2015 124
Table 37: Main patent assignees for NFC, as of May 2015 125
Table 38: Main patent assignees for BCC, as of May 2015 125
Table 39: Comparative properties of polymer composites reinforcing materials 132
Table 40: Comparative properties of polymer composites reinforcing materials 133
Table 41: Equivalent cost of nanocellulose and competitive materials in polymer composites 134
Table 42: Applications of nanocellulose in polymer composites by cellulose type 135
Table 43: Nanocellulose applications timeline in the polymer composites market 135
Table 44: Nanocellulose in the polymer composites market-applications, stage of commercialization and estimated economic impact 136
Table 45: Limitations of nanocellulose in the development of polymer nanocomposites 137
Table 46: Application markets, competing materials, nanocellulose advantages and current market size in polymer composites 137
Table 47: Examples of antimicrobial immobilization into cellulose nanofibers 146
Table 48: Oxygen permeability of nanocellulose films compared to those made form commercially available petroleum based materials and other polymers 148
Table 49: Application markets, competing materials, NFC advantages and current market size in packaging 152
Table 50: Nanomaterials in the packaging market-applications, stage of commercialization and estimated economic impact 152
Table 51: Market challenges rating for nanotechnology and nanomaterials in the packaging market 153
Table 52: Nanomaterials in the aerospace market-applications, stage of commercialization and estimated economic impact 159
Table 53: Market challenges rating for nanotechnology and nanomaterials in the aerospace market 161
Table 54: Applications of natural fiber composites in vehicles by manufacturers 165
Table 55: Application markets, competing materials, Nanocellulose advantages and current market size in the automotive sector 170
Table 56: Nanotechnology and nanomaterials in the automotive market-applications, stage of commercialization and estimated economic impact 171
Table 57: Applications and commercilization challenges in the automotive market 172
Table 58: Market challenges rating for nanotechnology and nanomaterials in the automotive market 173
Table 59: Nanotechnology and nanomaterials in the construction, building protection and exterior coatings market-applications, stage of commercialization and estimated economic impact 176
Table 60: Market challenges rating for nanotechnology and nanomaterials in the construction, building protection and architectural exterior coatings market 178
Table 61: Nanocellulose in polymer composites-Companies and products 179
Table 62: Nanocellulose applications timeline in the paper and board markets 183
Table 63: Global packaging market, billions US$ 187
Table 64: Nanocellulose product developers in paper and board 190
Table 65: Nanocellulose applications timeline in the medical and healthcare markets 195
Table 66: Nanotechnology and nanomaterials opportunity in the drug formulation and delivery market-applications, stage of commercialization and estimated economic impact 200
Table 67: Nanotechnology and nanomaterials opportunity in medical implants and devices market-applications, stage of commercialization and estimated economic impact 201
Table 68: Nanotechnology and nanomaterials opportunity in the wound care marketapplications, stage of commercialization and estimated economic impact 203
Table 69: Nanocellulose product developers in medical and healthcare applications 204
Table 70: Nanocellulose applications timeline in the coatings and paints markets 211
Table 71: Application markets, competing materials, nanocellulose advantages and current market size in coatings and films 217
Table 72: Nanocellulose product developers in coatings, films and paints 218
Table 73: Nanocellulose applications timeline in the aerogels market 221
Table 74: Nanocellulose product developers in aerogels 223
Table 75: Nanocellulose applications timeline in the oil market 227
Table 76: Application markets, competing materials, NFC advantages and current market size in oil and gas 232
Table 77: Nanotechnology and nanomaterials in the oil and gas market-applications, stage of commercialization and estimated economic impact 233
Table 78: Market challenges rating for nanotechnology and nanomaterials in the oil and gas exploration market 234
Table 79: Nanocellulose product developers in oil and gas exploration 234
Table 80: Types of filtration 236
Table 81: CNF membranes 239
Table 82: Nanocellulose applications timeline in the filtration market 243
Table 83: Application markets, competing materials, nanocellulose advantages and current market size in filtration 249
Table 84: Nanomaterials in the filtration and environmental remediation marketapplications, stage of commercialization and estimated economic impact 250
Table 85: Market challenges rating for nanotechnology and nanomaterials in the filtration and environmental remediation market 251
Table 86: Commercial activity in nanocellulose filtration 252
Table 87: Nanocellulose applications timeline in the rheology modifiers market 254
Table 88: Commercial activity in nanocellulose rheology modifiers 257
Table 89: Nanocellulose applications timeline in flexible electronics 263
Table 90: Application markets, competing materials, Nanocellulose advantages and current market size in electronics 269
Table 91: Opportunities for nanomaterials in printed electronics 271
Table 92: Nanocellulose product developers in flexible electronics 272
Table 93: Applications in 3D printing, by nanomaterials type and benefits thereof 275
Table 94: Application markets, competing materials, nanocellulose advantages and current market size in 3D printing 277
Table 95: Nanotechnology and nanomaterials in the 3D printing market-applications, stage of commercialization and estimated economic impact 278
Table 96: Market challenges rating for nanotechnology and nanomaterials in the 3D printing market 279
Table 97: Companies developing nanocellulose 3D printing products, 279 98: Nanocellulose producers and types of nanocellulose produced 281
Table 99: Target market, by company 283

List of Figures

Figure 1: Scale of cellulose materials 31
Figure 2: Cellulose nanofiber transparent sheet 42
Figure 3: CNF transparent sheet 46
Figure 4: Running shoes incorporating cellulose nanofibers 47
Figure 5: Ballpoint pen incorporating cellulose nanofibers 48
Figure 6: CNF wet powder 49
Figure 7: Hierarchical Structure of Wood Biomass 69
Figure 8: Types of nanocellulose 71
Figure 9: Schematic of NFC production 72
Figure 10: TEM image of cellulose nanocrystals 78
Figure 11: Main steps involved in the preparation of NCC 92
Figure 12: Schematic of typical commercialization route for nanocellulose producer. 95
Figure 13: Technology Readiness Level (TRL) for nanocellulose 114
Figure 14: Production volumes of nanocellulose 2015, by region 118
Figure 15: Nanocellulose patents by field of application, 2013 122
Figure 16: Example process for producing NFC packaging film 144
Figure 17: Nanomaterials-based automotive components 167
Figure 18: Paper and board global demand 189
Figure 19: Global Paints and Coatings Market, share by end user market. 216
Figure 20: Nanocellulose sponge developed by EMPA for potential applications in oil recovery. 229
Figure 21: Nanocellulose virus filter paper 248
Figure 22: NFC computer chip 265
Figure 23: NFC translucent diffuser schematic 266
Figure 24: Nanocellulose photoluminescent paper 267
Figure 25: LEDs shining on circuitry imprinted on a 5x5cm sheet of CNF 268
Figure 26: LEDs shining on circuitry imprinted on a 5x5cm sheet of CNF 269

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