cellulose film
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2022 ◽  
Vol 29 (2) ◽  
Author(s):  
Caixiang Chen ◽  
Shumei Wen ◽  
Zhihui Wang ◽  
Dongmei Zhang ◽  
Jinming Zhang ◽  
...  

2021 ◽  
Vol 116 ◽  
pp. 141-147
Author(s):  
Izabela Betlej

Profile of enzymes in samples of bacterial cellulose film treated with Trametes versicolor and Coniophora puteana. The paper presents the results of research showing the profile of hydrolytic enzymes synthesized by fungi that cause decomposition of wood during growth on film samples made of bacterial cellulose. The performed analyzes allowed for the conclusion that the presence of cellulose in the culture medium stimulates the fungal cells to synthesize full groups of enzymes that are not produced on the agarmaltose medium. Among the synthesized enzymes, both species of fungi produced two enzymes: β - glucosidase and N-acetyl-β - glucuronidase with the highest observed activity.


Polymers ◽  
2021 ◽  
Vol 13 (23) ◽  
pp. 4209
Author(s):  
Zhen Xu ◽  
Qiwen Zhou ◽  
Lixiang Wang ◽  
Guangmei Xia ◽  
Xingxiang Ji ◽  
...  

Paper cups are widely employed in daily life with many advantages, but most of the used paper cups are incinerated or landfilled, due to the great challenge of separating the thin inner polyethylene (PE) coating, causing the waste of energy and the pollution of our environment. Therefore, recycling and converting the used paper cups into high-value materials is meaningful and important. In this work, transparent cellulose-based films were successfully prepared from the used paper cups via 1-allyl-3-methylimidazolium chloride ionic liquid after simple pretreatment. Additionally, the difference in properties and structures of cellulose-based films regenerated in different coagulation baths (water or ethanol) was also explored. It was found that the cellulose-based film possessed good thermal property and displayed better hydrophobicity than the traditional pure cellulose film. Moreover, they also demonstrated good mechanical property and the tensile strength of cellulose-based film regenerated in water can reach 31.5 Mpa, higher than those of cellulose-based film regenerated in ethanol (25.5 Mpa) and non-degradable polyethylene film (9–12 MPa), indicating their great potential as the packaging materials. Consequently, valorization of the low cost used paper cups and preparation of high-valve cellulose-based films were realized simultaneously by a facile and green process.


2021 ◽  
pp. 118922
Author(s):  
Pangye Gao ◽  
Ruitao Cha ◽  
Huize Luo ◽  
Yiran Xu ◽  
Pai Zhang ◽  
...  

Author(s):  
Yan Wu ◽  
Wanying Zhao ◽  
Xinyu Wu ◽  
Jian Gan ◽  
Haiqiao Zhang ◽  
...  

The moso bamboo fiber powder was used as raw material to prepare cellulose nano-fibril films, 5% of polyvinyl alcohol solution was used as a structural reinforcement agent, dopamine hydrochloride (DA) was used as a surface adhesive, and hexadecyl trimethoxy silane was used as a surface modifier. The superhydrophobic films were prepared by vacuum filtration and impregnation. The results showed that the water contact angle on the surface of the film could reach 156°. The microstructure and chemical composition of the film surface was further studied by scanning electron microscopy (SEM), Fourier transforms infrared spectroscopy (FTIR), and roughness measurement The scanning electron microscopy images showed that the nanofibers on the surface of Cellulose nanofibers film were arranged and randomly distributed, thus forming a dense network interwoven structure. In PDA hydrophobic modification solution, an Hexadecyltrimethoxysilane was hydrolyzed to a hexadecyl silanol to obtain the polar terminal hydroxyl of Hexadecyl silanol molecule. The -OCH3 terminal group of HDTMS reacted with hydroxyl/H2O to form a silanol (Si-OH) bond and further condensed to form a Si-O-Si network. In addition, due to the hydrophilicity of the surface of the nano cellulose film, a large amount of—OH was adsorbed on the surface of the nano cellulose film, resulted in the chemical connection between cetyl groups, thus realized the grafting of cetyl long-chain alkyl groups onto the fibers of the nano cellulose film.The film showed good self-cleaning and waterproof properties, which can be widely used in wet environment packaging and building.


Author(s):  
Weijun Zhou ◽  
Minfeng Chen ◽  
Qinghua Tian ◽  
Jizhang Chen ◽  
Xinwu Xu ◽  
...  

Author(s):  
Junwu Peng ◽  
Yanan Li ◽  
Xinglin Liu ◽  
Guizhen Ke ◽  
Dengpeng Song ◽  
...  
Keyword(s):  

Author(s):  
K.H. Mahmoud ◽  
A.SA. Alsubaie ◽  
Farid M. Abdel-Rahim ◽  
E.A. Abdel Wahab ◽  
Khaled A. Elsayed

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