Title
Minimizing organic waste generated by pineapple crown: A simple process to obtain cellulose for the preparation of recyclable containers
Date Issued
01 December 2020
Access level
open access
Resource Type
journal article
Author(s)
Mamani D.C.
Nole K.S.O.
Montoya E.E.C.
Vitorino H.A.
Publisher(s)
MDPI AG
Abstract
In this study, cellulose was obtained from the residues of pineapple crown by means of simple acid pretreatment and subsequent alkaline treatment. The pretreatment consisted of washing, drying, and chopping with high shear at pH = 5 under heating. The content of cellulose, hemicellulose, and lignin in the pineapple crown was determined by chemical methods. The cellulose obtained was compared with commercial cellulose by Fourier-transform infrared (FTIR) spectroscopy, thermogravimetric analysis, and X-ray diffraction (XDR). Thus, from the obtained fiber cellulose, a food container was prepared, and its physical-mechanical properties were determined. Then, after alkali treatment, the purity of cellulose was 84.7% from the pineapple crown (56.0%) and was compared with commercial cellulose (95%). FTIR results confirmed the removal of the non-cellulosic compounds after alkali treatment. The maximum pyrolysis temperature increased to 356◦C, higher than the original fiber (322◦C), indicating greater thermal stability after chemical treatment. Furthermore, the crystallinity increased to 68% with respect to the original fiber (27%). The physical properties of the container showed a decrease in the parameters in wet 95% RH, as expected, thus facilitating its reuse. These results indicate that the pineapple crown cellulose can be obtained with significant purity, from a single chemical treatment. In addition, this polymorphous cellulose can be used to make ecofriendly reusable food containers.
Start page
1
End page
12
Volume
5
Issue
4
Language
English
OCDE Knowledge area
Bioproductos (productos que se manufacturan usando biotecnología), biomateriales, bioplásticos, biocombustibles, materiales nuevos bioderivados, químicos finos bioredivados
Subjects
Scopus EID
2-s2.0-85091636967
Source
Recycling
ISSN of the container
23134321
Sources of information:
Directorio de Producción Científica
Scopus