Microbial and Bacterial Cellulose Production Market Size up to 2030 - Quantitative Research by QYResearch Medical | BioSpace

The global Microbial and Bacterial Cellulose Production market was valued at USD 506.8 Million in 2020 and is expected to reach USD 980.9 Million by 2030, at a CAGR of 8.1%. The growing number of end-use applications can be attributed to the market\'s growth. Biosynthesis and recent developments in microbial production, such as cellulose biochemistry and new sources for culture medium, are driving the market.

Sustainability, eco-efficiency, and green chemistry are currently leading the development of a new generation of materials as an alternative to petroleum-based polymers. The use of microbial cellulose (MC), bio cellulose, or bacterial cellulose is one of the most promising investigations in the field of biodegradable polymers. HPMC polymer

Microbial and Bacterial Cellulose Production Market Size up to 2030 - Quantitative Research by QYResearch Medical | BioSpace

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Researchers have been looking into new ways to make microbial cellulose, especially methods that can be used on an industrial scale. The Chinese Academy of Sciences recently developed a new method for bacterial cellulose functionalization by in situ fermentation of Komagataeibacter sucrofermentans, led by Prof. Xian Mo and Zhang Haibo of the Qingdao Institute of Bioenergy and Bioprocess Technology (QIBEBT). This microorganism has the ability to produce bacterial cellulose as well as 6carboxyfluorescein-modified glucose, which serves as a substrate.

Microbial cellulose may be an excellent material for electronic paper substrate because of its higher purity and microfibril structure. This technology is still in the early stages of development and has yet to be scaled up to commercial production levels. More work is being conducted to see whether bacterial cellulose can be used as a substrate in electronic devices such as e-book tablets, e-newspapers, interactive wallpapers, re writable maps, and learning resources. Manufacturing of organic light-emitting diodes is another example of bacterial cellulose\'s use in the electronics industry (OLEDs). In the coming years, these factors are expected to provide enormous growth opportunities for the global microbial and bacterial cellulose production industry. Wound dressing, artificial skin, dental implants, hemostatic materials, drug delivery, vascular grafts, tissue engineering scaffolds, and biosensors are few of the biomedical applications where BC has a lot of promise. However, the availability of substitutes and strict regulations are likely to restrain market growth.

Key Takeaways Growth Medium Outlook

By growth medium, synthetic media segment is expected to account for the largest market share of the microbial and bacterial cellulose production during the forecast period. Synthetic media, registered CAGR of 7.9% in 2020 and is expected to witness substantial growth rate of the market over the forecast period. The most well-known synthetic method for growing bacterial cellulose is the Hestrin–Schramm (HS) medium. An ideal synthetic medium contains glucose, ammonium sulfate, monopotassium phosphate, disodium phosphate, magnesium sulfate, nicotinamide, and ethanol.

Based on production method, static method segment is expected to have significant market share during the forecast period. In comparison to dynamic culturing, static culturing produces higher yields and has a lower rate of mutation in microorganisms. As a result, the synthesis of bacterial cellulose is accelerated. As a result, the static approach is commonly used around the world. Static culturing, on the other hand, requires a larger field, more labour, and a longer cultivation period.

Based on bacteria type, gram negative bacteria segment is expected to have significant market share during the forecast period. Gluconacetobacter xylinus (formerly known as Acetobacter xylinum), a gram negative bacterium, secretes large amounts of cellulose as micro-fibrils from a row of synthetic sites along the cell\'s longitudinal axis. Using saccharides as a carbon source, this aerobic gram negative bacterium ferments efficiently in a temperature range of 25°C–30°C and at a pH of 3–7. Over the forecast period, revenue from the gram negative bacteria segment is projected to rise at a rapid rate.

Based on application, the non-medical application segment is expected to occupy significant market share during the forecast period. Bacterial cellulose is used in the food industry to make raw materials, additive products, food processing materials, delivery systems, and cell immobilisers. Microbial and bacterial cellulose is used as a thickening and stabilising agent in the food industry. The growing demand for long-lasting food products is a major driver of the food industry\'s expansion.

The regions included in the report are North America, Europe, Asia Pacific, Latin America, and Middle East & Africa. North America held the largest market share in the microbial and bacterial cellulose production market in 2020. Various new research studies are ongoing to decrease pollution caused by cellulose extracts. For instance, on March 11, 2020, the U.S. Environmental Protection Agency (EPA) finalized amendments to the 2002 Cellulose Products Manufacturing National Emission Standards for Hazardous Air Pollutants (NESHAP).

Investments in R&D infrastructure and human resources are primary requirements for any effort at innovation driven economic growth. According to 2020 statistics, the U.S. and China account for about 50% share of the global R&D spending, while eight other countries account for 30% share.

Company Profiles and Competitive Landscape

Celluforce, American Process, Axcelon Biopolymers Corporation, Borregaard, Bowil Sp. z o. o., Daicel Corporation, Fzmb GmbH, Merck KGaA, Nippon Paper Industries Co., Ltd., and Nympheas International Biomaterial Corporation are profiled in the report.

Players operating in the market are focusing on strategies, agreements, and acquisitions to gain an advantage over competitors and expand market footprint. Mergers and acquisitions are an integral part of the green hydrogen industry and market. New entrants and start-ups are also focusing on similar strategies as a means of early market entry. Some key highlights are:

Reports and Data forecasts provided on the Microbial and Bacterial Cellulose Production have been shared, discussed, vetted, and cross-checked and verified through interviews with experts and leaders in the industry. Microbial and Bacterial Cellulose Production market is moderately fragmented with a large number of large-sized manufacturers, which account for a majority of the global share. Manufacturers involved in the market are integrated across the value chain. The leading companies are well-equipped with large manufacturing facilities and are engaged in several research & development activities.

Segments Covered in the report

This report forecasts revenue growth at a global, regional & country level, and provides an analysis of the market trends in each of the sub-segments from 2021 to 2030. The scope of the report can be defined as:

For the purpose of this study, Reports and Data have segmented Microbial and Bacterial Cellulose Production market on the basis of Growth Medium, Production Method, Bacteria Type, Application and Region:

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Microbial and Bacterial Cellulose Production Market Report Scope

Segments covered By Growth Medium Outlook, Production Method Outlook, Bacteria Type Outlook, Application Outlook, Regional Outlook

By Growth Medium Outlook     

By Production Method Outlook               

By Bacteria Type Outlook            

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Microbial and Bacterial Cellulose Production Market Size up to 2030 - Quantitative Research by QYResearch Medical | BioSpace

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