纳米纤维素
纤维素
材料科学
纤维素乙醇
多孔性
生物量(生态学)
保温
软木
环境污染
复合材料
纳米材料
环境科学
制浆造纸工业
化学工程
纳米技术
工程类
环境保护
地质学
海洋学
图层(电子)
作者
Sergejs Beļuns,Sergejs Gaidukovs,Oskars Platnieks,Gerda Gaidukova,Inese Mieriņa,Līga Grase,Olesja Starkova,Prans Brazdausks,Vijay Kumar Thakur
标识
DOI:10.1016/j.indcrop.2021.113780
摘要
Transition to the circular economy requires the implementation of recycling and reuse routes for waste products. This research addresses one of the leading emerging areas, i.e., the development of sustainable materials and natural waste processing, namely wood and hemp byproducts. The cellulosic nanomaterials derived from these under-utilized waste residues and byproducts also serve as promising natural precursors for advanced applications, e.g., biomedical, pollution filtering, and thermal insulation. The wood and hemp fibrils were prepared by microfluidic processing of 0.2 – 1.0 wt% cellulose water suspensions. After freeze-drying, the resulting foam materials were characterized with a bulk density of 2 – 36 mg/cc. Key characteristics of the obtained hemp and wood nanocellulose (NC) foams were examined by the mechanical response, porosity, BET analysis, thermal conductivity, thermal degradation, chemical composition, and morphology. Hemp NC foams showed higher performance characteristics that coincide with almost twice the length of the fibrils, 1.5 times higher cellulose content, and a more homogeneous mesh-like structure compared to wood NC foams. In addition, the thermal performance of obtained NC foams was in the range of 34 – 44 mW/m·K, which makes their application comparable to commonly used insulation materials.
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