An expert look at the sustainability benefits of polylactide polymers
As recent discoveries of new polymerization pathways and advances in manufacturing technologies reduce their production cost, poly(lactic acid) (PLA) polymers, an important family of biodegradable plastics, are gaining momentum as a valuable renewable resource. With a multitude of important applications, from its use in medical items such as sutures and stents to its part in the making of environmentally safe food packaging and compost bags, PLA is a vital addition to a modern, sustainable society.
Covering the basic chemistry, structure, and property basics of PLA from an eco-friendly perspective, Poly(lactic acid) delivers details on the latest science along with the industrial procedures responsible for its current growth. Furthermore, it looks at ways PLA is presently being used-and how it can be improved in the future. This all-encompassing guide:
* Details polymerization reactions for PLA production and the material properties of PLA
* Includes a chapter on spectroscopy techniques for PLA analysis (UV-VIS, FTIR, RAMAN, and NMR)
* Discusses processing methods, conversion technologies, blending, molding, degradation, and spinning
* Consolidates and collects a broad base of knowledge about this important polymer in the packaging, biomedical, and textile industries
Enlisting a team of international experts, this book covers PLA from every angle to present a thorough view of the promise held by this unique biodegradable polymer in promoting a more green and stable environment.
This book describes the synthesis, properties, and processing methods of poly(lactic acid) (PLA), an important family of degradable plastics. As the need for environmentally-friendly packaging materials increases, consumers and companies are in search for new materials that are largely produced from renewable resources, and are recyclable. To that end, an overall theme of the book is the biodegradability, recycling, and sustainability benefits of PLA. The chapters, from a base of international expert contributors, describe specific processing methods, spectroscopy techniques for PLA analysis, and and applications in medical items, packaging, and environmental use.
Rafael A. Auras
Biomaterial Biomaterialien Biomaterials Biomedical Engineering Biomedizintechnik Food Science & Technology Lebensmittelforschung u. -technologie Polymer Science & Technology Polymere Polymerwissenschaft u. -technologie Polymilchsäure