纳米纤维素
材料科学
制浆造纸工业
产量(工程)
纤维素
生物量(生态学)
结晶度
木质纤维素生物量
木质素
化学工程
原材料
水解
生物燃料
纳米技术
色散(光学)
胶体
复合材料
聚合物
生物炼制
工艺工程
酶水解
连续生产
作者
Herman Marius Zendrato,Nanang Masruchin,Siti Nikmatin,Nam–Hun Kim,Seung Hwan Lee,Nyoman J Wistara
标识
DOI:10.1016/j.biombioe.2025.108750
摘要
Conventional H 2 SO 4 hydrolysis for nanocellulose isolation from lignocellulosic biomass typically yields only about 20 % and requires multi-step processing with excessive energy and water consumption. This study introduces an efficient one-step H 2 SO 4 /H 2 O 2 method that integrates delignification, hydrolysis, and sulfonation in a single vessel. Torch ginger stem powder with lignin content of ⁓19 % was treated with 60 wt% H 2 SO 4 and 30 wt% H 2 O 2 at a 15:1 liquid-to-solid ratio and 60 °C for 1.5–5 h. The solid reactant was purified by simple filtration, which significantly reduced water and time consumption. The dispersion process employed ultrasonic treatment with an energy requirement comparable to that of conventional hydrolysis. With this method, a 40 wt% nanocellulose yield was obtained within 1.5 h, double that achieved by conventional methods, with ⁓0.14 % of lignin. The isolated nanocellulose had an initial diameter of 6 nm, a length of 2 μm, and a ζ-potential of −30 mV, ensuring long-term colloidal stability. Longer reaction times refined these dimensions to approximately 4 nm in diameter and less than 500 nm in length while increasing crystallinity to 73 %. This innovative method represents a sustainable and scalable route for producing high-quality nanocellulose efficiently from lignocellulosic biomass. • One-step H 2 SO 4 /H 2 O 2 yields 40 % nanocellulose within only 1.5 h. • H 2 SO 4 /H 2 O 2 integrates delignification, hydrolysis, and sulfonation reaction. • Lignin content drastically reduced from ⁓19 % to ⁓0.14 %. • Solid residue easily filtered and washed after reaction. • Process reduces water, time, and energy consumption.
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