Physicochemical properties of cellulose produced by local bacterial strain Gluconacetobacter xylinus KRE-65 by static and agitated fermentation methods was studied. Cellulose production by G. xylinus KRE-65 was carried out in coconut base medium with static and agitated fermentation methods. The dry weight, morphological and physicochemical properties of bacterial cellulose were compared based on SEM, XRD and FTIR analyses. The results showed that the G. xylinus KRE 65 in the static fermentation produced cellulose higher than agitated fermentation. Static fermentation method produced bacterial cellulose in the sheets form, while agitated fermentation produced fragmented cellulose with predominantly spherical shape. The observation of the su...
Bacterial cellulose produced by the gram negative, aerobic bacterium of Acetobacter xylinum is chemi...
Alkali treatment is one ofwide chemical treatment for removing non cellulosic materials and other im...
Cellulose is the most abundant biomass in nature. Utilization of organic wastes can be improved by c...
Physicochemical properties of cellulose produced by local bacterial strain Gluconacetobacter xylinus...
Bacterial cellulose, a biopolysaccharide, is produced by the bacterium, Gluconacetobacter xylinus. S...
Sifat fisikokimiawi selulosa yang dihasilkan oleh strain lokal bakteri Gluconacetobacter xylinus KRE...
Bacterial cellulose,an exopolysaccharide produced by Acetobacter Xylinum s.p,has unique structural a...
The aim of the study was to isolate and identify an acetic acid bacterial strain having high cellulo...
The production of plant-based cellulose products had contributed to the increasing rate of deforesta...
This study was carried out to investigate a promising application area of coconut water that is disc...
Tujuan penelitian ini adalah mengoptimasi kondisi fermentasi terbaik strain Bakteri Asam Asetat peng...
ABSTRAK Tujuan penelitian ini adalah mengoptimasi kondisi fermentasi terbaik strain Bakteri Asam A...
MORPHOLOGICAL AND THERMAL PROPERTIES OF ALKALI TERATED BACTERIAL CELLULOSE FROM COCONUT WATER. Alkal...
Cellulose is a nature biopolymer that mainly derived from plant and it has been application broadly ...
<p>The effect of different carbon sources on bacterial cellulose production by Gluconacetobacter xyl...
Bacterial cellulose produced by the gram negative, aerobic bacterium of Acetobacter xylinum is chemi...
Alkali treatment is one ofwide chemical treatment for removing non cellulosic materials and other im...
Cellulose is the most abundant biomass in nature. Utilization of organic wastes can be improved by c...
Physicochemical properties of cellulose produced by local bacterial strain Gluconacetobacter xylinus...
Bacterial cellulose, a biopolysaccharide, is produced by the bacterium, Gluconacetobacter xylinus. S...
Sifat fisikokimiawi selulosa yang dihasilkan oleh strain lokal bakteri Gluconacetobacter xylinus KRE...
Bacterial cellulose,an exopolysaccharide produced by Acetobacter Xylinum s.p,has unique structural a...
The aim of the study was to isolate and identify an acetic acid bacterial strain having high cellulo...
The production of plant-based cellulose products had contributed to the increasing rate of deforesta...
This study was carried out to investigate a promising application area of coconut water that is disc...
Tujuan penelitian ini adalah mengoptimasi kondisi fermentasi terbaik strain Bakteri Asam Asetat peng...
ABSTRAK Tujuan penelitian ini adalah mengoptimasi kondisi fermentasi terbaik strain Bakteri Asam A...
MORPHOLOGICAL AND THERMAL PROPERTIES OF ALKALI TERATED BACTERIAL CELLULOSE FROM COCONUT WATER. Alkal...
Cellulose is a nature biopolymer that mainly derived from plant and it has been application broadly ...
<p>The effect of different carbon sources on bacterial cellulose production by Gluconacetobacter xyl...
Bacterial cellulose produced by the gram negative, aerobic bacterium of Acetobacter xylinum is chemi...
Alkali treatment is one ofwide chemical treatment for removing non cellulosic materials and other im...
Cellulose is the most abundant biomass in nature. Utilization of organic wastes can be improved by c...