Javascript must be enabled to continue!
An Innovative Alternative to Plastic Straws with Bacterial Cellulose
View through CrossRef
This study aims to introduce the usage of biodegradable bacterial cellulose as an alternative material to straw production. Cellulose is a crystalline linear chain polysaccharide found in various organisms with cell walls. Known for its strength and durability, cellulose is also biodegradable due to its organic nature. Through a series of different experiments that include the production of cellulose from SCOBY (symbiotic culture of bacteria and yeast) and the subsequent creation of straws from the cellulose and food-safe glue, this study proposes a more environmentally friendly alternative to plastic straws. Further experiments were done to compare the functionality of the cellulose straw to that of plastic straws and other alternatives currently in the market, including paper and metal straws. This was done using a strength test to see how much weight the straws could hold before breaking, a test to see how long the straws could maintain their integrity with water running through them, and an experiment where different drinking liquids were used. It was found that the cellulose straws displayed no loss in functionality when compared to the other straws and displayed similar levels of durability as the plastic straws.
Title: An Innovative Alternative to Plastic Straws with Bacterial Cellulose
Description:
This study aims to introduce the usage of biodegradable bacterial cellulose as an alternative material to straw production.
Cellulose is a crystalline linear chain polysaccharide found in various organisms with cell walls.
Known for its strength and durability, cellulose is also biodegradable due to its organic nature.
Through a series of different experiments that include the production of cellulose from SCOBY (symbiotic culture of bacteria and yeast) and the subsequent creation of straws from the cellulose and food-safe glue, this study proposes a more environmentally friendly alternative to plastic straws.
Further experiments were done to compare the functionality of the cellulose straw to that of plastic straws and other alternatives currently in the market, including paper and metal straws.
This was done using a strength test to see how much weight the straws could hold before breaking, a test to see how long the straws could maintain their integrity with water running through them, and an experiment where different drinking liquids were used.
It was found that the cellulose straws displayed no loss in functionality when compared to the other straws and displayed similar levels of durability as the plastic straws.
Related Results
Saving the Planet with Barbie?
Saving the Planet with Barbie?
In 2019, Mattel introduced a series of Barbie dolls in connection with National Geographic which included a Polar Marine Biologist, an Entomologist, a Wildlife Photojournalist, and...
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...
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 Review on Edible Straws
A Review on Edible Straws
Plastic pollution remains one of the most pressing environmental challenges of the 21st century, with single-use plastic straws contributing significantly to marine litter and micr...
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 ...
SIFAT FISIKOKIMIAWI SELULOSA PRODUKSI ISOLAT BAKTERI Gluconacetobacter xylinus KRE-65 PADA METODE FERMENTASI BERBEDA (Physicochemical Properties of Cellulose Produced by Bacterial Isolate Gluconacetobacter xylinus KRE-65 in Different Fermentation Methods)
SIFAT FISIKOKIMIAWI SELULOSA PRODUKSI ISOLAT BAKTERI Gluconacetobacter xylinus KRE-65 PADA METODE FERMENTASI BERBEDA (Physicochemical Properties of Cellulose Produced by Bacterial Isolate Gluconacetobacter xylinus KRE-65 in Different Fermentation Methods)
Physicochemical properties of cellulose produced by local bacterial strain Gluconacetobacter xylinus KRE-65 by static and agitated fermentation methods was studied. Cellulose produ...
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...
Efektivitas Penggunaan Stainless Steel Atau Sendok Besi Terhadap Kesehatan Lingkungan
Efektivitas Penggunaan Stainless Steel Atau Sendok Besi Terhadap Kesehatan Lingkungan
Plastic waste is the largest source of waste. Plastic waste in Indonesia has polluted the ocean. There are many products made from plastic, one of which is straws. Plastic waste is...

