Feasibility of the use of different types of enzymatically treated cellulosic fibres for polylactic acid (PLA) recycling

被引:12
作者
Bendourou, Fatima Ezzahra [1 ]
Suresh, Gayatri [1 ]
Laadila, Mohamed Amine [1 ,6 ,7 ]
Kumar, Pratik [1 ]
Rouissi, Tarek [1 ]
Dhillon, Gurpreet S. [1 ,5 ]
Zied, Khiari [2 ]
Brar, Satinder K. [1 ,3 ]
Galvez, Rosa [4 ]
机构
[1] INRS ETE, 490 Couronne, Quebec City, PQ G1K 9A9, Canada
[2] Lethbridge Coll, Ctr Appl Res & Innovat, Lethbridge, AB T1K 1L6, Canada
[3] York Univ, Lassonde Sch Engn, Dept Civil Engn, Toronto, ON M3J 1P3, Canada
[4] Univ Laval, Dept Genie Civil, Quebec City, PQ G1K 7P4, Canada
[5] Univ Alberta, Dept Agr Food & Nutr Sci AFNS, Edmonton, AB, Canada
[6] Laval Univ, Chem Engn Dept, 1065 Ave Med, Quebec City, PQ G1V 0A6, Canada
[7] Investissement Quebec CRIQ, 333 Rue Franquet, Quebec City, PQ G1P 4C7, Canada
关键词
rPLA; Cellulosic fibres; Chemical extraction; Enzyme treatment; Mechanical tests; Biodegradation;
D O I
10.1016/j.wasman.2020.11.058
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
In the present study, the potential use of cellulosic microfibers (CMFs) extracted from hemp fiber (HF) and pulp and paper solid waste (mixed sludge (MS), deinked sludge (DS)) as a reinforcing agent in novel bio composite materials produced from recycled Polylactic acid (rPLA) was investigated. CMFs were extracted and treated using physicochemical method followed by enzymatic treatment with laccase and cellulase. The effects of CMFs concentrations (1.5, 3 and 6% w/w) and fiber size (75 mu m-1.7 mm) on the mechanical properties (impact and tensile) and biodegradability of the biocomposite samples were investigated. A modified interfacial adhesion between rPLA matrix and the three fibers used, was clearly observed through mechanical tests due to alkali and enzymatic treatments. The use of different types of enzymatically treated cellulosic fibers for polylactic acid (PLA) recycling was assessed by Scaning electron microscopy (SEM), X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FTIR). The combined physicochemical and enzymatic treatments led to a considerable size reduction of the cellulosic fibers (HF, MS and DS) resulting in the enhanced interfacial adhesion between rPLA matrix and fibers. The biocomposite obtained with rPLA with HF gave the most favorable values for Young's modulus (324.53 +/- 3.10 MPa, p-value 0.03), impact strength (27.61 +/- 2.94 kJ/m(2), p-value 0.01) and biodegradation rate (1.97%). (C) 2020 Elsevier Ltd. All rights reserved.
引用
收藏
页码:237 / 247
页数:11
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