This study was conducted to compare the celluloses from Acetobacter xylinum and Pseudomonas fluorescens. Results showed that A. xylinum and P. fluorescens produce insoluble and soluble cellulose respectively. The agitation at several speeds was found to affect the form and yield of bacterial celluloses.Based on FTIR spectroscopy,the biochemical composition of A. xylinum cellulose was apparently distinct from that of p. fluorescens with regards to the spectral region between 830 cm-1 and 1400 cm-1.Sample preparation of P. fluorescens cellulose for XRD analysis was unsuccessful due to its high solubility in culture medium whilst XRD analysis demonstrated the high crystallinity (92.13%)of A.xylinum cellulose. Collectively, the variations b...
Bacterial cellulose is composed of an ultrafine nanofiber network and well-ordered structure; theref...
bial cellulose Structural characteristics of microbial cellulose synthesized by two different method...
Bacterial cellulose pellicles were produced by Gluconacetobacter xylinus using non conventional low-...
The focal point of this research project was the development of two applications of cellulose produc...
The production of plant-based cellulose products had contributed to the increasing rate of deforesta...
Cellulose is an organic compound produced mainly in plants. Bacterial, or microbial, cellulose has d...
93-96Bacterial cellulose (BC) has been produced by the Gram negative bacterium Acetobacter xylinum...
The demand for cellulose is accelerating in the paper making industry. Alternate sources of cellulos...
Bacterial cellulose, a biopolysaccharide, is produced by the bacterium, Gluconacetobacter xylinus. S...
Bacterial cellulose is an attractive biopolymer for a number of applications including food, biomedi...
<p>The effect of different carbon sources on bacterial cellulose production by Gluconacetobacter xyl...
fibers of pure cellulose can be made from some bacteria such as acetobacter xylinum. Bacterial cellu...
Bacterial cellulose produced by the gram negative, aerobic bacterium of Acetobacter xylinum is chemi...
International audienceMany advances in nanomaterials synthesis have been recorded during the last 30...
Bacterial cellulose was biosynthesized by Acetobacter xylinum on an enriched growth medium of glucos...
Bacterial cellulose is composed of an ultrafine nanofiber network and well-ordered structure; theref...
bial cellulose Structural characteristics of microbial cellulose synthesized by two different method...
Bacterial cellulose pellicles were produced by Gluconacetobacter xylinus using non conventional low-...
The focal point of this research project was the development of two applications of cellulose produc...
The production of plant-based cellulose products had contributed to the increasing rate of deforesta...
Cellulose is an organic compound produced mainly in plants. Bacterial, or microbial, cellulose has d...
93-96Bacterial cellulose (BC) has been produced by the Gram negative bacterium Acetobacter xylinum...
The demand for cellulose is accelerating in the paper making industry. Alternate sources of cellulos...
Bacterial cellulose, a biopolysaccharide, is produced by the bacterium, Gluconacetobacter xylinus. S...
Bacterial cellulose is an attractive biopolymer for a number of applications including food, biomedi...
<p>The effect of different carbon sources on bacterial cellulose production by Gluconacetobacter xyl...
fibers of pure cellulose can be made from some bacteria such as acetobacter xylinum. Bacterial cellu...
Bacterial cellulose produced by the gram negative, aerobic bacterium of Acetobacter xylinum is chemi...
International audienceMany advances in nanomaterials synthesis have been recorded during the last 30...
Bacterial cellulose was biosynthesized by Acetobacter xylinum on an enriched growth medium of glucos...
Bacterial cellulose is composed of an ultrafine nanofiber network and well-ordered structure; theref...
bial cellulose Structural characteristics of microbial cellulose synthesized by two different method...
Bacterial cellulose pellicles were produced by Gluconacetobacter xylinus using non conventional low-...