Optimization and characterization of cellulose extraction from olive pomace

被引:0
作者
Wanshan Han
Yuhuan Geng
机构
[1] South China University of Technology,School of Food Science and Engineering
来源
Cellulose | 2023年 / 30卷
关键词
Olive pomace cellulose; Extraction; Alkali treatment; Bleaching; Optimization;
D O I
暂无
中图分类号
学科分类号
摘要
Olive pomace (OP) was used as raw material to extract cellulose by multi-step chemical method, and the extracted cellulose was characterized. The two steps of alkali treatment (alkali concentration, reaction time and reaction temperature) and bleaching (H2O2 concentration, NaOH concentration, bleaching time and bleaching temperature) were optimized. The results showed that the optimum conditions for alkali treatment were as follows: alkali concentration 6%, reaction time 2 h, reaction temperature 95 °C; the optimal bleaching conditions were as follows: 7.5% H2O2 solution, 5% NaOH, bleaching time 2 h, bleaching temperature 75 °C. After multi-step chemical treatment, the cellulose content of the final OP cellulose was (86.41 ± 0.27) %, the lignin content was (6.77 ± 0.55) %, the extraction process yield was 20.36%. By scanning electron microscopy, the surface of OP cellulose changes from dense smooth structure to rough irregular structure with different treatment degrees. Fourier transform infrared spectroscopy (FTIR) proved the removal of hemicellulose and lignin in OP fibers after chemical treatment. The crystallinity of OP fiber increased from 34.80 to 68.69% after treatment. Thermogravimetric analysis (TGA) showed that OP cellulose had high thermal stability. The study provides a new idea for the conversion of industrial processing by-products into high-quality cellulose, and proves that it is feasible to extract cellulose from olive pomace.
引用
收藏
页码:4889 / 4903
页数:14
相关论文
共 183 条
  • [1] Asif M(2022)Extraction and characterization of microcrystalline cellulose from lagenaria siceraria fruit pedicles Polymers 14 1867-1589
  • [2] Ahmed D(2015)Untreated and alkali treated fibers from Alfa stem: effect of alkali treatment on structural, morphological and thermal features Cellulose 22 1577-347
  • [3] Ahmad N(2022)Optimization of cellulosic fiber extraction from parsley stalks and utilization as filler in composite biobased films Foods 11 3932-2781
  • [4] Qama MT(2017)Effect of alkali treatment on microstructure and mechanical properties of individual bamboo fibers Cellulose 24 333-896
  • [5] Alruwaili NK(2018)Cellulose fiber isolation and characterization from sweet blue Lupin hull and canola straw J Polym Environ 26 2773-4103
  • [6] Bukhari SNA(2021)A review on catalytic pyrolysis for high-quality bio-oil production from biomass Biomass Conversion Biorefinery 10 237-1999
  • [7] Borchani KE(2022)Olive pomace and pate olive cake as suitable ingredients for food and feed Microorganisms 21 885-86
  • [8] Carrot C(2014)Idealized powder diffraction patterns for cellulose polymorphs Cellulose 33 4093-1629
  • [9] Jaziri M(2021)Industrial optimization of alkaline and bleaching conditions for cellulose extraction from the marine seaweed Ulva lactuca J Appl Phycol 29 1990-189
  • [10] Cakmak H(2021)Extraction and characterization of microcrystalline cellulose from date palm fibers using successive chemical treatments J Polym Environ 112 75-6199