Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Optimization Production and Characterization of Bacterial Cellulose from Cornhusk

View through CrossRef
<div><table cellspacing="0" cellpadding="0" align="center"><tbody><tr><td align="left" valign="top"><p class="StyleE-JOURNALAbstrakKeywordsBold">Cornhusks are agricultural wastes with low economic value that will cause environmental pollution if not appropriately handled. Cornhusk waste can be processed as raw material for bacterial cellulose (nata) since it contains 44% cellulose. This study aims to optimize bacterial cellulose production from cornhusks and determine the effect of cornhusk mass and fermentation duration on the characteristics of the nata produced. The primary process for producing bacterial cellulose from cornhusks was fermentation by Acetobacter xylinum. The nata characterization carried out in this study includes thickness, yield, crude fiber, and moisture content, as well as statistical analysis to determine whether there was significant effect of variations in cornhusk mass and fermentation duration on bacterial cellulose production. Based on the results of optimizing the production of nata from cornhusks, the optimal mass of cornhusks was of 25 grams with fermentation duration of 17 days. Based on the characterization and data analysis results, variation on the cornhusks mass and duration of the fermentation had a significant effect on fiber content, yield, and tensile strength of bacterial cellulose from cornhusks. On the other hand, the variations on cornhusks mass and the duration of fermentation did not significantly affect the moisture content and thickness of bacterial cellulose from cornhusks.</p></td></tr></tbody></table></div>
Title: Optimization Production and Characterization of Bacterial Cellulose from Cornhusk
Description:
<div><table cellspacing="0" cellpadding="0" align="center"><tbody><tr><td align="left" valign="top"><p class="StyleE-JOURNALAbstrakKeywordsBold">Cornhusks are agricultural wastes with low economic value that will cause environmental pollution if not appropriately handled.
Cornhusk waste can be processed as raw material for bacterial cellulose (nata) since it contains 44% cellulose.
This study aims to optimize bacterial cellulose production from cornhusks and determine the effect of cornhusk mass and fermentation duration on the characteristics of the nata produced.
The primary process for producing bacterial cellulose from cornhusks was fermentation by Acetobacter xylinum.
The nata characterization carried out in this study includes thickness, yield, crude fiber, and moisture content, as well as statistical analysis to determine whether there was significant effect of variations in cornhusk mass and fermentation duration on bacterial cellulose production.
Based on the results of optimizing the production of nata from cornhusks, the optimal mass of cornhusks was of 25 grams with fermentation duration of 17 days.
Based on the characterization and data analysis results, variation on the cornhusks mass and duration of the fermentation had a significant effect on fiber content, yield, and tensile strength of bacterial cellulose from cornhusks.
On the other hand, the variations on cornhusks mass and the duration of fermentation did not significantly affect the moisture content and thickness of bacterial cellulose from cornhusks.
</p></td></tr></tbody></table></div>.

Related Results

Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Biosurfactants are natural substances produced by several bacterial and fungal organisms that are amphiphilic and are extracellular (a part of the cell membrane). Biosurfactants ca...
A Circular Economy Use of Durian Rind Waste for Cellulose Extraction and Its Application in Polylactic Acid (PLA) Biodegradable Composites
A Circular Economy Use of Durian Rind Waste for Cellulose Extraction and Its Application in Polylactic Acid (PLA) Biodegradable Composites
Durian rind is a food waste by-product left after consuming fruit flesh and can contribute to environmental pollution due to its slow decomposition and the large disposal area requ...
Production of Bacterial Cellulose by Komagataeibacter xylinus InaCC B404 using Different Carbon Sources
Production of Bacterial Cellulose by Komagataeibacter xylinus InaCC B404 using Different Carbon Sources
Recently, microorganism-based hydrogel has been attracting attention for its applications in the revegetation of marginal land and in crop production on dry land. Komagataeibacter ...
Investigation of α-Cellulose Content of Sugarcane Scrappings and Bagasse as Tablet Disintegrant
Investigation of α-Cellulose Content of Sugarcane Scrappings and Bagasse as Tablet Disintegrant
The aim of this study is to investigate the physicochemical and disintegrant properties of α – cellulose obtained from sugarcane scrapings and bagasse. The mechanical and release p...
Production and Characterization of Bacterial Cellulose from Food waste: A sustainable approach
Production and Characterization of Bacterial Cellulose from Food waste: A sustainable approach
Abstract Cellulose is a natural polymer found in plant cell walls and has been used in many industries for ages. The increasing demand for cellulose is estimated to be 100–...
Bacterial Cellulose From Rice Waste Water With Addition Chitosan, Glycerol, And Silver Nanoparticle
Bacterial Cellulose From Rice Waste Water With Addition Chitosan, Glycerol, And Silver Nanoparticle
This study aimed to prepare silver nanoparticles chemically, deposite silver nanoparticles on bacterial cellulose-chitosan-glycerol composite based rice waste water, as well as tes...
Role of bacterial cellulose fibrils in Agrobacterium tumefaciens infection
Role of bacterial cellulose fibrils in Agrobacterium tumefaciens infection
During the attachment of Agrobacterium tumefaciens to carrot tissue culture cells, the bacteria synthesize cellulose fibrils. We examined the role of these cellulose fibrils in the...

Back to Top