Use of Industrial Wastes as Sustainable Nutrient Sources for Bacterial Cellulose (BC) Production: Mechanism, Advances, and Future Perspectives

Author:

Kadier AbudukeremuORCID,Ilyas R. A.ORCID,Huzaifah M. R. M.ORCID,Harihastuti Nani,Sapuan S. M.,Harussani M. M.ORCID,Azlin M. N. M.,Yuliasni RustianaORCID,Ibrahim R.,Atikah M. S. N.,Wang Junying,Chandrasekhar K.,Islam M AmirulORCID,Sharma ShubhamORCID,Punia SnehORCID,Rajasekar Aruliah,Asyraf M. R. M.,Ishak M. R.

Abstract

A novel nanomaterial, bacterial cellulose (BC), has become noteworthy recently due to its better physicochemical properties and biodegradability, which are desirable for various applications. Since cost is a significant limitation in the production of cellulose, current efforts are focused on the use of industrial waste as a cost-effective substrate for the synthesis of BC or microbial cellulose. The utilization of industrial wastes and byproduct streams as fermentation media could improve the cost-competitiveness of BC production. This paper examines the feasibility of using typical wastes generated by industry sectors as sources of nutrients (carbon and nitrogen) for the commercial-scale production of BC. Numerous preliminary findings in the literature data have revealed the potential to yield a high concentration of BC from various industrial wastes. These findings indicated the need to optimize culture conditions, aiming for improved large-scale production of BC from waste streams.

Funder

Universiti Teknologi Malaysia, project CRG 30.3

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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