Dublin, Feb. 21, 2024 (GLOBE NEWSWIRE) -- The "Global Market for Nanocellulose (Cellulose Nanofibers, CelluloseNanocrystals, Bacterial Nanocellulose) 2024-2034" report has been added to ResearchAndMarkets.com's offering.
Despite being the most available natural polymer on earth, it is only over the past few years that cellulose has gained prominence as a nanostructured material, chiefly in the form of micro/nanofibrillar cellulose, nanocrystalline cellulose and bacterial nanocellulose. These materials are natural, abundant, renewable, bio-degradable, high in strength and low in weight, making them attractive for developing bio-based, more sustainable product solutions.
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.
Cellulose nanofibers (CNF) are bio-based but possess high mechanical strength (stronger than steel), high aspect ratios, high transparency, and high chemical resistance. They are also lightweight. As a result, they are very attractive for application in composites and thermoplastics, although they have yet to greatly impact this market. Renewable bio-based polymers and composites derived from natural resources are of great commercial interest due to the environmental impact of fossil fuel-based plastic products. Many bio-based polymers have been developed, but they have shortcomings that render them unsuitable for many applications. The use of cellulose-based nanomaterials is therefore viewed as a means to improve the performance of bio-based polymers in markets such as packaging and automotive, without compromising their properties and sustainability.
The Global Market for Nanocellulose 2024-2034 provides an in-depth analysis of the global nanocellulose industry, encompassing cellulose nanofibers (CNF), cellulose nanocrystals (CNC), and bacterial nanocellulose (BNC). It offers a granular view of production methods and capacities, pricing, properties, applications, product developers, and demand forecasts across major end-use markets. Detailed regional demand forecasts through 2034 are provided for North America, Europe, Asia Pacific, Latin America, and Middle East & Africa.
The report analyzes CNF, CNC and BNC separately across key application markets such as composites, automotive components, construction materials, paper and packaging, textiles, biomedicine products, hygiene products, paints and coatings, aerogels, oil and gas fluids, filtration membranes, rheology modifiers for personal care and food, flexible and stretchable electronics, 3D printing materials, aerospace components and more.
For each application market, the report provides:
- Technology SWOT analysis
- Assessment of megatrends, drivers and commercialization challenges
- Insights on competing materials and performance benchmarks
- Main global OEMs and partnerships
- Granular 10-year volume and revenue forecasts
Over 160 company profiles analyze major producers and product developers. The competitive landscape examines commercial activities and strategic partnerships to evaluate maturity across manufacturing, intellectual property, marketing, end-product integration, and regional activity.
Report contents include:
- Introduction and overview of nanocellulose types - cellulose nanofibers (CNF), cellulose nanocrystals (CNC), and bacterial nanocellulose (BNC)
- CNF production methods, capacities, pricing, properties, SWOT analysis
- CNF applications and demand forecasts in composites, automotive, construction, packaging, textiles, biomedicine, hygiene, paints/coatings, aerogels, oil/gas, filtration, rheology modifiers
- Regional CNF demand forecasts (North America, Europe, Asia Pacific, Latin America, Middle East & Africa)
- Profiles of over 160 CNF, CNC and BNC manufacturers and product developers. Companies profile include Asahi Kasei Corporation, Bucha Bio, Inc., Cellucomp Ltd., Chuetsu Pulp & Paper Co., Ltd, Daio Paper Corporation, DKS Co. Ltd., FP Chemical Industry Co., Ltd., Fuji Pigment Co., Ltd, Hansol Paper., Ltd., Hokuetsu Corporation, Kao Corporation, Marusumi Paper Company Limited, Masuko Sangyo Co., Ltd., Modern Synthesis, Nippon Paper Group, Inc., Onkyo Corporation, Oji Holdings Corporation, Osaka Gas Chemicals Co., Ltd., Rengo Co., Ltd., Risho Kogyo Co. Ltd., Sappi Limited, Shinwa Kako KK, Smart Reactors, Tokushu Tokai Paper Co., Ltd., Toray Industries, Inc., and UPM Biomedicals
- Analysis of CNC production, properties, pricing, SWOT analysis
- CNC applications and global demand forecasts by market
- Profiles of key CNC producers
- Overview of bacterial nanocellulose (BNC) - production, pricing, SWOT analysis
- BNC applications and product developers
- 10-year volume and revenue forecasts for CNF, CNC and BNC applications, globally and regionally
- Benchmarking of nanocellulose technology and products against alternatives
- Evaluation of intellectual property and manufacturing readiness of nanocellulose technologies
The report equips stakeholders with granular intelligence and comparable data needed to realistically evaluate opportunities, risks, and partnerships to accelerate commercial adoption across the nanocellulose value chain globally.
Key Topics Covered:
1 INTRODUCTION
1.1 Definitions
1.2 Cellulose
1.3 Feedstocks
1.4 Cellulose fibers
1.5 "Nano" Cellulose (CNF, CNC, BNC)
1.6 Cellulose filaments
2 CELLULOSE NANOFIBERS
2.1 Advantages of cellulose nanofibers
2.2 Pre-treatment and Synthesis methods
2.2.1 Acid hydrolysis
2.2.2 TEMPO oxidation
2.2.3 Ammonium persulfate (APS) oxidation
2.2.4 Enzymatic Hydrolysis
2.2.5 Ball milling
2.2.6 Cryocrushing
2.2.7 High-shear grinding
2.2.8 Ultrasonication
2.2.9 High-pressure homogenization
2.2.10 Recent methods
2.3 Applications of cellulose nanofibers
2.4 SWOT analysis
2.5 Cellulose nanofibers (CNF) production capacities 2023
2.6 Pricing
2.7 Commercial CNF products
2.8 End use markets for cellulose nanofibers
2.8.1 Composites
2.8.2 Automotive
2.8.3 Buildings and construction
2.8.4 Paper and board packaging
2.8.5 Textiles and apparel
2.8.6 Biomedicine and healthcare
2.8.7 Hygiene and sanitary products
2.8.8 Paints and coatings
2.8.9 Aerogels
2.8.10 Oil and gas
2.8.11 Filtration
2.8.13 Other markets
2.8.13.1 Printed, stretchable and flexible electronics
2.8.13.2 3D printing
2.8.13.3 Aerospace
2.8.13.4 Batteries
2.9 Cellulose nanofiber company profiles
- Adsorbi
- Aichemist Metal
- ANPOLY
- Asahi Kasei
- Azul Energy
- Beijing Ding Sheng Xiong Di Technology
- Betulium
- Blue BioFuels
- Ceapro
- Cellfion
- CELLiCON
- Cellucomp Ltd.
- Cellulose Lab
- Cellutech
- Centre Technique du Papier
- Chemkey Advanced Materials Technology
- Chuetsu Pulp & Paper
- CNNT
- DaikyoNishikawa
- Daio Paper Corporation
- Daishowa Paper Products
- Denso
- DIC
- DKS
- Earth Recycle
- Ehime Paper Manufacturing
- Evolgene Genomics
- Fibercoat
- Fillerbank
- FineCell Sweden
- FP Chemical Industry
- Fuji Pigment
- Furukawa Electric
- Gen Corporation
- Glamarium OU Technologies
- Granbio Technologies
- GreenNano Technologies
- GS Alliance
- Guilin Qihong Technology
- Hansol Paper
- Harvest Nano
- Hattori Shoten
- Hexa Chemical Co.
- Hokuetsu
- i-Compology
- InventWood
- The Japan Steel Works
- JeNaCell
- Kami Shoji
- Kao
- KOS 21
- KRI, Inc.
- Lenzing
- Maniwa Biochemical
- Marine Nanofiber
- Marusumi Paper Company
- Marutomi Seishi
- Masuko Sangyo
- Mitsubishi Chemical
- Mizuno Kinzoku Shoji
- Mori Machinery
- Moorim P&P
- MOVIC AMT
- Nanografi
- Nanollose
- National Research Company
- Natural Friend
- Nature Costech
- Nature Gifts
- Nippon Paper
- Nippon Shizai
- Nissin Kogyo
- Norske Skog
- Ocean TuniCell
- Oita CELENA
- Omura Paint
- Onkyo
- Oji Holdings
- Osaka Gas Chemicals
- Performance BioFilaments
- PhotoCide Protection
- Re-Fresh Global
- Rengo
- Ripro
- Risho Kogyo
- Sanwa Kako
- Sappi
- Seiko PMC
- Sharp Chemical
- Shinwa Kako
- Smart Reactors
- Starlite
- Sugino Machine
- Svilosa
- Take Cite
- Taiyo Holdings
- Tianjon Haojia Cellulose
- Tentok Paper
- Toagosei
- Tokushu Tokai Paper
- Toray Industries
- Toppan Printing
- Toyoda Gosei
- Toyota Boshoku
- Toyo Chemical
- TPS
- TS Tech
- Ube Industries
- Unitika
- UPM Biomedicals
- US Forest Products Laboratory
- Valmet
- VERDE Nanomaterials
- Verso
- Xylocel
- Yokohama Bio Frontier
- Yokohama Rubber
- Yoshikawakuni Plastics
- Zelfo Technology
- Zeoform
- Zhejiang Jinjiahao Green Nanomaterial
- ZoepNano
3 CELLULOSE NANOCRYSTALS
3.1 Introduction
3.2 Synthesis
3.3 Properties
3.4 Production
3.5 Pricing
3.6 SWOT analysis
3.7 Markets and applications
3.8 Cellulose nanocrystals (CNC) production capacities 2023
3.9 Global demand for cellulose nanocrystals by market
3.10 Cellulose nanocrystal company profiles
- Alberta Innovates/Innotech Materials
- Anomera
- Blue Goose Biorefineries
- Ceapro
- CELLiCON
- CelluDot
- Celluforce
- Fillerbank
- Evolgene Genomics
- Guilin Qihong Technology
- Melodea
- Nanolinter
- Navitas
- Poly-Ink
- Renmatix
- Sweetwater Energy
- Tianjin Woodelfbio Cellulose
- Toyo Seikan Group Holdings
- UMaine Process Development Center
- Forest Products Laboratory (FPL)
- Valentis Nanotech
4 BACTERIAL NANOCELLULOSE (BNC)
4.1 Overview
4.2 Production
4.3 Pricing
4.4 SWOT analysis
4.5 Markets and applications
4.5.1 Biomedical
4.5.2 Electronics
4.5.3 Food industry
4.5.4 Pharmaceuticals
4.5.5 Cosmetics and personal care
4.5.6 Paper and composites
4.5.7 Filtration membranes
4.5.8 Acoustics
4.5.8 Textiles
4.6 Bacterial nanocellulose (BNC) company profiles
- AgriSea NZ Seaweed
- Axcelon Biopolymers
- Azolla
- BioSmart Nano
- Bioweg
- Bowil Biotech
- Bucha Bio
- Cass Materials
- Cellugy
- DePuy Synthes
- FZMB
- Kusano Sakko
- Lohmann & Rauscher
- MakeGrowLab
- Modern Synthesis
- Nanollose
- Nano Novin Polymer Co
- Polybion
- ScobyTec GmbH
For more information about this report visit https://www.researchandmarkets.com/r/ok7y67
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