
Research Article
Synthesis and Characterization of Polylactic Acid / Local Clay Nanocomposite for Packaging Applications
@INPROCEEDINGS{10.4108/eai.3-10-2018.2284354, author={Maimun Maimun and Hesti Meilina and Cut Meurah Rosnelly}, title={Synthesis and Characterization of Polylactic Acid / Local Clay Nanocomposite for Packaging Applications }, proceedings={Proceeding of the First International Graduate Conference (IGC) On Innovation, Creativity, Digital, \& Technopreneurship for Sustainable Development in Conjunction with The 6th Roundtable for Indonesian Entrepreneurship Educators 2018 Universitas Syiah Kuala October, 3-5, 2018 Banda Aceh, Indonesia}, publisher={EAI}, proceedings_a={IGC}, year={2019}, month={5}, keywords={pla clay x-rd ftir sem tensile strength thermal packaging}, doi={10.4108/eai.3-10-2018.2284354} }
- Maimun Maimun
Hesti Meilina
Cut Meurah Rosnelly
Year: 2019
Synthesis and Characterization of Polylactic Acid / Local Clay Nanocomposite for Packaging Applications
IGC
EAI
DOI: 10.4108/eai.3-10-2018.2284354
Abstract
Plastic has become one of the most influential material in human lives due to it being light and strong enough. However, because plastic is non-degradable, it will cause other environmental problem and it is not renewable. Therefore a material that can produce plastic, where it could easily be degradable and the source is renewable. One of these materials is Polylactid acid (PLA) which is derived from starchy plants, such as cassava. However the physical and mechanical of pure PLA still has its downsides, such as low attraction and limited thermal degradation. This research is focused on synthesis PLA from local cassava and addition local clay into PLA in order to improve the two characteristics mentioned previously. The results that the highest was obtain 1,9 kg for 6 hours of disposition and the highest lactic acid obtained 35 % for 5 days fermentation. Polymerization PLA from a lactic acid has been determined by FTIR results. Based on the data show PLA/clay 0,05 M with 2 hours has better tensile strength is 36 MPa and thermal stability compared to pure PLA to be applied as the raw material for packaging.