Eco-friendly approach for nanocellulose isolation from agricultural wastes and the fabrication of bioaerogel scaffolds

被引:2
|
作者
Zainul, Rahadian [1 ]
Albadn, Yonss Mbrook [2 ]
Yahya, Esam Bashir [3 ,4 ]
Manoharadas, Salim [5 ]
Saharudin, Nur Izzaati [2 ,4 ]
Khalil, H. P. S. Abdul [2 ,4 ]
Khan, Mohammad Rizwan [6 ]
Jaber, Mohamed [7 ]
机构
[1] Univ Negeri Padang, Fac Math & Nat Sci, Dept Chem, Padang, Indonesia
[2] Univ Sains Malaysia, Sch Ind Technol, Bioresource Technol Div, Gelugor 11800, Penang, Malaysia
[3] Univ Sains Malaysia, Sch Ind Technol, Bioproc Technol Div, Usm Penang 11800, Malaysia
[4] Univ Sains Malaysia, Sch Ind Technol, Green Biopolymer Coatings & Packaging Cluster, Minden 11800, Malaysia
[5] King Saud Univ, Coll Sci, Dept Bot & Microbiol, POB 2454, Riyadh, Saudi Arabia
[6] King Saud Univ, Coll Sci, Dept Chem, Riyadh 11451, Saudi Arabia
[7] Florida Inst Technol, Coll Engn & Sci, Dept Math Sci, Melbourne, FL USA
来源
EXPRESS POLYMER LETTERS | 2024年 / 18卷 / 04期
关键词
oil palm empty fruit bunch; nanocellulose; supercritical treatment; isolation; cleaner approach; CELLULOSE NANOCRYSTALS; AEROGELS; NANOFIBRILS;
D O I
10.3144/expresspolymlett.2024.27
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
In this study, we employed supercritical carbon dioxide (scCO2) treatment under varying conditions: low-pressure treatment at 30 MPa and high temperature at 80 degrees C (LPHT group) and high-pressure treatment at 60 MPa and low temperature at 50 degrees C (HPLT group) for nanocellulose isolation. The scCO2 treatment resulted in smaller particle sizes and enhanced crystallinity. Notably, HPLT exhibited superior efficiency compared to LPHT treatment. Utilizing temperatures and pressures above the critical point effectively penetrated natural fibers, reducing nanocellulose particle sizes. Moreover, high-pressure and low -temperature nanocellulose demonstrated the highest crystallinity and negative zeta potential values (78.2% and -32.4 +/- 4.01 mV), surpassing those of the low-pressure and high -temperature group (77.9% and 26.0 +/- 2.34 mV) and control (77.3% and 25.9 +/- 3.13 mV). The concentration of nanocellulose significantly impacted the porosity, pore size, and water absorption of the bioaerogel scaffolds, indicating the potential for sustainable and environmentally friendly approaches in material fabrication for diverse applications.
引用
收藏
页码:359 / 370
页数:12
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