Waste cooking oil makes bioplastics cheaper
'Bioplastics' that are naturally synthesized by microbes could be made commercially viable by using waste cooking oil as a starting material. This would reduce environmental contamination and also give high-quality plastics suitable for medical implants, according to scientists presenting their work at the Society for General Microbiology's Autumn Conference at the University of Warwick. The Polyhydroxyalkanoate (PHA) family of polyesters is synthesized by a wide variety of bacteria as an energy source when their carbon supply is plentiful. Poly 3-hydroxybutyrate (PHB) is the most commonly produced polymer in the PHA family. Currently, growing bacteria in large fermenters to produce high quantities of this bioplastic is expensive because glucose is used as a starting material.
Work by a research team at the University of Wolverhampton suggests that using waste cooking oil as a starting material reduces production costs of the plastic. "Our bioplastic-producing bacterium, Ralstonia eutropha H16, grew much better in oil over 48 hours and consequently produced three times more PHB than when it was grown in glucose," explained Victor Irorere who carried out the research. "Electrospinning experiments, performed in collaboration with researchers from the University of Birmingham, showed that nanofibres of the plastic produced from oils were also less crystalline, which means the plastic is more suited to medical applications."
Previous research has shown that PHB is an attractive polymer for use as a microcapsule for effective drug delivery in cancer therapy and also as medical implants, due to its biodegradability and non-toxic properties. Improved quality of PHB combined with low production costs would enable it to be used more widely.
The disposal of used plastics -- which are largely non-biodegradable -- is a major environmental issue. Plastic waste on UK beaches has been steadily increasing over the past two decades and now accounts for about 60% of marine debris. "The use of biodegradable plastics such as PHB is encouraged to help reduce environmental contamination. Unfortunately the cost of glucose as a starting material has seriously hampered the commercialization of bioplastics," said Dr Iza Radecka who is leading the research. "Using waste cooking oil is a double benefit for the environment as it enables the production of bioplastics but also reduces environmental contamination caused by disposal of waste oil."
The next challenge for the group is to do appropriate scale-up experiments, to enable the manufacture of bioplastics on an industrial level.
Source: Society for General Microbiology
Related
- Biofuel waste product recycled for electricityTue, 4 Sep 2012, 20:03:22 EDT
- Coconut oil could combat tooth decayMon, 3 Sep 2012, 17:02:35 EDT
- Using waste to recover waste uraniumSun, 6 Sep 2009, 22:16:19 EDT
- Microbial answer to plastic pollution?Sun, 28 Mar 2010, 19:24:32 EDT
- The fungus among us: A new way of decomposing BPA-containing plasticWed, 28 Jul 2010, 14:16:07 EDT
Other sources
- Waste cooking oil makes bioplastics cheaperfrom Science DailyMon, 3 Sep 2012, 17:00:34 EDT
- Waste cooking oil makes bioplastics cheaperfrom PhysorgMon, 3 Sep 2012, 3:50:16 EDT
Latest Science Newsletter
Get the latest and most popular science news articles of the week in your Inbox! It's free!Learn more about
Check out our next project, Biology.Net
Popular science news articles
No popular news yet
No popular news yet
- Stem cell transplant restores memory, learning in mice
- 2 landmark studies report on success of using image-guided brachytherapy to treat cervical cancer
- Researchers discover mushrooms can provide as much vitamin D as supplements
- Cutting back on sleep harms blood vessel function and breathing control
- Study: Low-dose aspirin stymies proliferation of 2 breast cancer lines