
PBS polybutylene succinate claims to be a fully biodegradable macromolecular polymer that decomposes naturally into CO2 and H2O under specific conditions (contact with soil, light, heat, natural water).
It is used in making bioplastic films, bags, boxes, cosmetic bottles, electronic parts packing, disposable diningware, disposable medical articles.
Bionolle was one of the first PBS bioplastics.
PBS Polybutylene Succinate
Sunday, August 9, 2009Posted by Dr Mariano Ramirez Jr at 4:30 PM 0 comments
Labels: bioplastics, renewables
TPS thermoplastic starch
Thursday, July 30, 2009
TPS thermoplastic starch is the most important and widely used bioplastic. It is used in making capsule casings for pharmaceutical drugs. A common TPS is PSM plastarch material from corn; it biodegrades well in compost, wet soil, and water.
TPS is generally made into biodegradable bioplastic films, which are converted into shopping bags, bread bags, bait bags, over wrap, 'flushable' sanitary product backing material, and mulch film. They are also used for foamed starch loose fill packaging and injected moulded take-away containers (usually with the addition of glycerol as plasticizer and polyvinyl alcohol).
TPS blended with either PCL polycaprolactone or PVA polyvinyl alcohol yields such commercial bioplastics Mater-Bi (from Novamont, Italy) and Bioflex (from BioTech, Germany). Mater-Bi was used for biodegradable catering items and garbage bags during the Sydney 2000 Olympics.
More information at European Plastic Films and on Wikipedia.
Posted by Dr Mariano Ramirez Jr at 9:20 PM 0 comments
Labels: bioplastics, renewables
Bioplastics
Bioplastics or organic plastics include all plastics derived from renewable plant sources, such as vegetable oil or corn starch, as opposed to petroplastics from fossil fuel sources. They are potentially biodegradable and compostable, and are now popularly used for disposable packaging (trays and containers for fruit, vegetables, eggs, meat; bottles for softdrinks and dairy products), disposable tableware (crockery, cutlery, drinkware, straws) as well as shopping bags.
Europe accounts for 60% of the biodegradable materials market. In Japan bioplastics are used not for biodegradable applications, but as a thermoplastic from renewable sources, such as for car interiors and mobile phones.
The most common bioplastics are made from
TPS thermoplastic starch
PLA polylactic acid
PBS polybutylene succinate
The European Bioplastics Association shows examples of various bioplastic products here.
More information on Wikipedia.
Note that some bioplastics are NOT designed to be biodegradable. Their avoidance of extracting non-renewable resources is their major environmental benefit, rather than their potential to reduce the bulk of solid waste.
For instance, the 2007 Mazda Premacy Hydrogen RE Hybrid vehicle used PLA fabric for its seats and rigid PLA for its lower panel, shift panel, front console, glove box lid, and hydrogen tank cover.
Mitsubishi was also developing "Green Plastics" for some of its car interiors, such as bamboo-reinforced PBS for trim material and PLA with nylon fiber for its floor mats.
There is a continuing debate on the net environmental benefits of bioplastics. While the sources are renewable, the corn or sugarcane crops do need to be intensively farmed. Moreover despite claims of biodegradability, many bioplastics degrade too slowly, some up to 100 or 1000 years!
Samples of various bioplastics can be found in the FBE Materials Library.or trim material
Posted by Dr Mariano Ramirez Jr at 1:32 AM 0 comments
Labels: bioplastics, renewables
PLA Polylactide
Polylactic acid or polylactide (PLA) is a biodegradable polyester from fermented corn starch, cane sugar, wheat starch. It can be processed like most thermoplastics into fiber and film. PLA is often made into biodegradable plastic cups, but cannot hold hot liquids unless it is modified into PDLA or PLLA, which increases its melting and glass transition temperatures significantly.
In packaging PLA is used as biodegradable loose-fill, compost bags, sandwich packaging, and disposable cutlery. It is also used for biodegradable sutures, nappies, feminine hygiene products and disposable garments. PLA is more expensive than petroleum-based plastics, but its price has been falling as production increases.
NatureWorks is the world's biggest commercial manufacturer of PLA bioplastic. Its range of PLA consumer products can be found here. Technical data sheets, fact sheets and processing guides are available here.
Some of the Australian brands which use PLA for its bottles are
- Natures Organics haircare line
- Cool Change natural spring water
There are some laboratory tests though which show that PLA can decompose into carbon dioxide and water, such as the one by University of Nebraska. Another study by Iowa State University and University of Costa Rica showed results of visible degradation, but did not claim complete decomposition. Suming Li & Michael Vert's chapter on biodegradation of aliphatic polyesters in the book Degradable Polymers: Principles and Applications claimed that "in particular, it is now well known that PLA polymers degrade completely and rather rapidly in a compost where the temperature is usually between 50 and 60C."
There's another discussion on this on the Greener Package knowledge exchange on sustianable packaging.
Posted by Dr Mariano Ramirez Jr at 12:37 AM 0 comments
Labels: bioplastics, renewables

