Poly(lactic acid) bio-composites containing biochar particles: Effects of fillers and plasticizer on crystallization and thermal properties

Biochar has emerged as a filler material for bio-degradable composites with favorable thermal and mechanical properties. Therefore, biochar is used in poly (lactic acid) (PLA) and PLA/thermoplastic starch (TPS) based composites. The crystallization and thermo-analytical properties of these blends wi...

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Main Authors: T. Haeldermans, P. Samyn, R. Cardinaels, D. Vandamme, K. Vanreppelen, A. Cuypers, S. Schreurs
Format: Article
Language:English
Published: Budapest University of Technology 2021-04-01
Series:eXPRESS Polymer Letters
Subjects:
Online Access:http://www.expresspolymlett.com/letolt.php?file=EPL-0010939&mi=cd
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spelling doaj-c4190273f630439a9f3e30f47ac38de02021-01-28T10:04:05ZengBudapest University of Technology eXPRESS Polymer Letters1788-618X2021-04-0115434336010.3144/expresspolymlett.2021.30Poly(lactic acid) bio-composites containing biochar particles: Effects of fillers and plasticizer on crystallization and thermal propertiesT. HaeldermansP. SamynR. CardinaelsD. VandammeK. VanreppelenA. CuypersS. SchreursBiochar has emerged as a filler material for bio-degradable composites with favorable thermal and mechanical properties. Therefore, biochar is used in poly (lactic acid) (PLA) and PLA/thermoplastic starch (TPS) based composites. The crystallization and thermo-analytical properties of these blends with increasing amounts (20 to 50 wt%) of biochar are investigated. In the thermogravimetric analysis, the PLA/char composites’ onset degradation temperature and temperature of maximum weight loss decrease with increasing biochar concentrations (320 to 275 °C and 380 to 350 °C, respectively). Contrastingly, in the PLA/TPS/char composites, the impact of the biochar is shielded by the TPS. The unaltered glass transition demonstrates that biochar does not act as a plasticizer in any of the composites, while TPS does. Biochar acts as a nucleation agent, but hinders further crystal growth at high concentrations, as confirmed by isothermal crystallization and infrared spectroscopy. The TPS smoothens the PLA/biochar interface, leading to an obstructed nucleation effect of biochar, proven by differential scanning calorimetry, infrared spectroscopy, and scanning electron microscopy. This work demonstrates the shielding effect TPS has on biochar and can help to understand further and optimize the production and biodegradability of these composites.http://www.expresspolymlett.com/letolt.php?file=EPL-0010939&mi=cdpolymer compositesthermal propertiesbiocharpolylactic acidthermoplastic starch
collection DOAJ
language English
format Article
sources DOAJ
author T. Haeldermans
P. Samyn
R. Cardinaels
D. Vandamme
K. Vanreppelen
A. Cuypers
S. Schreurs
spellingShingle T. Haeldermans
P. Samyn
R. Cardinaels
D. Vandamme
K. Vanreppelen
A. Cuypers
S. Schreurs
Poly(lactic acid) bio-composites containing biochar particles: Effects of fillers and plasticizer on crystallization and thermal properties
eXPRESS Polymer Letters
polymer composites
thermal properties
biochar
polylactic acid
thermoplastic starch
author_facet T. Haeldermans
P. Samyn
R. Cardinaels
D. Vandamme
K. Vanreppelen
A. Cuypers
S. Schreurs
author_sort T. Haeldermans
title Poly(lactic acid) bio-composites containing biochar particles: Effects of fillers and plasticizer on crystallization and thermal properties
title_short Poly(lactic acid) bio-composites containing biochar particles: Effects of fillers and plasticizer on crystallization and thermal properties
title_full Poly(lactic acid) bio-composites containing biochar particles: Effects of fillers and plasticizer on crystallization and thermal properties
title_fullStr Poly(lactic acid) bio-composites containing biochar particles: Effects of fillers and plasticizer on crystallization and thermal properties
title_full_unstemmed Poly(lactic acid) bio-composites containing biochar particles: Effects of fillers and plasticizer on crystallization and thermal properties
title_sort poly(lactic acid) bio-composites containing biochar particles: effects of fillers and plasticizer on crystallization and thermal properties
publisher Budapest University of Technology
series eXPRESS Polymer Letters
issn 1788-618X
publishDate 2021-04-01
description Biochar has emerged as a filler material for bio-degradable composites with favorable thermal and mechanical properties. Therefore, biochar is used in poly (lactic acid) (PLA) and PLA/thermoplastic starch (TPS) based composites. The crystallization and thermo-analytical properties of these blends with increasing amounts (20 to 50 wt%) of biochar are investigated. In the thermogravimetric analysis, the PLA/char composites’ onset degradation temperature and temperature of maximum weight loss decrease with increasing biochar concentrations (320 to 275 °C and 380 to 350 °C, respectively). Contrastingly, in the PLA/TPS/char composites, the impact of the biochar is shielded by the TPS. The unaltered glass transition demonstrates that biochar does not act as a plasticizer in any of the composites, while TPS does. Biochar acts as a nucleation agent, but hinders further crystal growth at high concentrations, as confirmed by isothermal crystallization and infrared spectroscopy. The TPS smoothens the PLA/biochar interface, leading to an obstructed nucleation effect of biochar, proven by differential scanning calorimetry, infrared spectroscopy, and scanning electron microscopy. This work demonstrates the shielding effect TPS has on biochar and can help to understand further and optimize the production and biodegradability of these composites.
topic polymer composites
thermal properties
biochar
polylactic acid
thermoplastic starch
url http://www.expresspolymlett.com/letolt.php?file=EPL-0010939&mi=cd
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