Employing Rsm and Ann-Based Applications for Modelling Enhanced Bacterial Cellulose Production from Pineapple Peel Waste Using Komagateibacter Saccharivorans Appk1

Author:

patel Ajay,Patel Payal,Parmar Manisha,Gosai Haren

Publisher

Elsevier BV

Reference48 articles.

1. Response surface methodology-based improvement of the yield and differentiation of properties of bacterial cellulose by metabolic enhancers;I Cielecka;Int. J. Biol. Macromol,2021

2. Bacterial cellulose: a versatile biopolymer for wound dressing applications;R Portela;Microb. Biotechnol,2019

3. Process control and scale-up of modified bacterial cellulose production for tailormade anti-inflammatory drug delivery systems;U Beekmann;Carbohydr. Polym,2020

4. Sustainable Bioconversion of Industrial Wastes into Bacterial Cellulose for Diverse Applications : A Way Towards Pollution Control and Abatement;A Patel;Curr. Pollut. Reports,2023

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