Sustainable biodegradable coffee grounds filler and its effect on the hydrophobicity, mechanical and thermal properties of biodegradable PBAT composites

Устойчивый биоразлагаемый наполнитель из кофейной гущи и его влияние на гидрофобность, механические и тепловые свойства биоразлагаемых композитов PBAT
Alain Dufresne, Hesham Moustafa, Chamseddine Guizani
2016-10-08

DSC (differential scanning calorimetry)PBAT (poly(butylene adipate-co-terephthalate))PEG plasticizer (polyethylene glycol)SEM (scanning electron microscopy)XRD (X-ray diffraction)biodegradable compositescoffee grounds (CG) fillercontact angle measurementspyrolysis kinetic modeltensile propertiesthermal degradation kineticsthermogravimetric analysistwin screw extrusion
ABSTRACT Poly(butylene adipate‐ co ‐terephthalate) (PBAT) and coffee grounds (CG) wastes are biodegradable materials. The high cost of PBAT restricts its marketability; the lignocellulosic CG were used as a reinforcing agent for PBAT. Thus, the present work focuses mainly on the preparation and characterization of bio‐based PBAT composites filled with CG bio‐additives with affordable cost, and with potential use in a variety of eco‐friendly fields such as packaging, biomedical devices, and composting. The PBAT polymer was melt blended with various contents of CG powder using twin screw extrusion. The compatibility and dispersion state of investigated biocomposites in presence or absence of PEG as plasticizer were investigated by using scanning electron microscopy (SEM) and X‐ray diffraction (XRD). The effect of the addition of PEG on PBAT/CG was characterized by differential scanning calorimetry (DSC), tensile properties, contact angle measurements, and thermogravimetric analysis. The chemical interaction between hydroxyl groups of CG particles and PEG plasticizer was achieved by these techniques. A pyrolysis kinetic model was proposed to identify the kinetic parameters of the thermal degradation of PBAT and CG powder. © 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017 , 134 , 44498.
1
A pyrolysis kinetic model was proposed to identify kinetic parameters of thermal degradation for PBAT and CG powder.
2
Addition of PEG alters thermal behavior (DSC), tensile properties, hydrophobicity (contact angle), and thermal stability (TGA) of PBAT/CG composites.
3
Lignocellulosic coffee grounds (CG) can be used as a reinforcing filler in biodegradable PBAT to reduce material cost and create bio-based composites.
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PBAT/CG composites were successfully prepared by twin-screw extrusion with varying CG content and with/without PEG plasticizer.
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SEM and XRD show the compatibility and dispersion state of CG in PBAT is affected by the presence of PEG plasticizer, indicating chemical interaction between CG hydroxyl groups and PEG.

Bio-based PBAT composites filled with coffee grounds (PBAT/CG biocomposites)

Effects of coffee grounds filler and PEG plasticizer on hydrophobicity (contact angle), mechanical (tensile) and thermal (DSC, TGA/pyrolysis kinetics) properties, compatibility and dispersion of the PBAT/CG biocomposites

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2016-10-08
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Alain Dufresne
Hesham Moustafa
Chamseddine Guizani
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