Effect of natural deep eutectic solvents on properties of micro crystalline cellulose isolated from kenaf fibre
Natural deep eutectic solvents have gained popularity due to their environmentally benign, recyclable, and reusable properties. They can be used many times without losingtheir effectiveness. Therefore, natural deep eutectic solvents used as effective reagent for lignocellulosic biomass pre-treatment...
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2023
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my.upm.eprints.1075162024-10-17T07:19:01Z http://psasir.upm.edu.my/id/eprint/107516/ Effect of natural deep eutectic solvents on properties of micro crystalline cellulose isolated from kenaf fibre Meraj, Aatikah Jawaid, M. Pratap Singh, Surendra Nasef, Mohamed Mahmoud Ariffin, Hidayah Mohamad Haafiz, M.K. Natural deep eutectic solvents have gained popularity due to their environmentally benign, recyclable, and reusable properties. They can be used many times without losingtheir effectiveness. Therefore, natural deep eutectic solvents used as effective reagent for lignocellulosic biomass pre-treatment for lignin removal. In this work, the natural deep eutectic solvents (i.e., Lactic Acid: Choline Chloride) is used to treat the kenaf fibre biomass with a molar ratio of 2:1 and then microcrystalline cellulose was obtained through acid hydrolysis. The analytical analysis of kenaf microcrystalline cellulose was investigated through Infrared fourier transform spectroscopy, X-ray Diffraction, thermogravimetric analysis, particle size distribution analysis, and scanning electron microscopy. The fourier transform infrared spectroscopy analysis result showed that the maximum proportion of lignin and partial hemicellulose from kenaf fibre were removed during natural deep eutectic solvents pre-treatment. Kenaf microcrystalline cellulose X-ray diffraction results revealed higher crystallinity at 78° compared to other peaks. The thermal analysis shows the kenaf microcrystalline cellulose thermal stability , making it suitable material for more desirable application in many areas. We concluded from obtained results that microcrystalline cellulose extracted with natural deep eutectic solvent pre-treated kenaf fibre can be used in various cellulosic material development in the future for the food packaging, tissue culture, paper, automotive, biomedical, and pharmaceutical applications. Elsevier 2023-11-01 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/107516/1/Effect%20of%20natural%20deep%20eutectic%20solvents%20on%20properties%20of%20micro%20crystalline%20cellulose%20isolated%20from%20kenaf%20fibre.pdf Meraj, Aatikah and Jawaid, M. and Pratap Singh, Surendra and Nasef, Mohamed Mahmoud and Ariffin, Hidayah and Mohamad Haafiz, M.K. (2023) Effect of natural deep eutectic solvents on properties of micro crystalline cellulose isolated from kenaf fibre. Industrial Crops and Products, 203. art. no. 117129. pp. 1-20. ISSN 0926-6690; ESSN: 1872-633X https://www.sciencedirect.com/science/article/pii/S0926669023008944?via%3Dihub 10.1016/j.indcrop.2023.117129 |
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Natural deep eutectic solvents have gained popularity due to their environmentally benign, recyclable, and reusable properties. They can be used many times without losingtheir effectiveness. Therefore, natural deep eutectic solvents used as effective reagent for lignocellulosic biomass pre-treatment for lignin removal. In this work, the natural deep eutectic solvents (i.e., Lactic Acid: Choline Chloride) is used to treat the kenaf fibre biomass with a molar ratio of 2:1 and then microcrystalline cellulose was obtained through acid hydrolysis. The analytical analysis of kenaf microcrystalline cellulose was investigated through Infrared fourier transform spectroscopy, X-ray Diffraction, thermogravimetric analysis, particle size distribution analysis, and scanning electron microscopy. The fourier transform infrared spectroscopy analysis result showed that the maximum proportion of lignin and partial hemicellulose from kenaf fibre were removed during natural deep eutectic solvents pre-treatment. Kenaf microcrystalline cellulose X-ray diffraction results revealed higher crystallinity at 78° compared to other peaks. The thermal analysis shows the kenaf microcrystalline cellulose thermal stability , making it suitable material for more desirable application in many areas. We concluded from obtained results that microcrystalline cellulose extracted with natural deep eutectic solvent pre-treated kenaf fibre can be used in various cellulosic material development in the future for the food packaging, tissue culture, paper, automotive, biomedical, and pharmaceutical applications. |
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Article |
author |
Meraj, Aatikah Jawaid, M. Pratap Singh, Surendra Nasef, Mohamed Mahmoud Ariffin, Hidayah Mohamad Haafiz, M.K. |
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Meraj, Aatikah Jawaid, M. Pratap Singh, Surendra Nasef, Mohamed Mahmoud Ariffin, Hidayah Mohamad Haafiz, M.K. Effect of natural deep eutectic solvents on properties of micro crystalline cellulose isolated from kenaf fibre |
author_facet |
Meraj, Aatikah Jawaid, M. Pratap Singh, Surendra Nasef, Mohamed Mahmoud Ariffin, Hidayah Mohamad Haafiz, M.K. |
author_sort |
Meraj, Aatikah |
title |
Effect of natural deep eutectic solvents on properties of micro crystalline cellulose isolated from kenaf fibre |
title_short |
Effect of natural deep eutectic solvents on properties of micro crystalline cellulose isolated from kenaf fibre |
title_full |
Effect of natural deep eutectic solvents on properties of micro crystalline cellulose isolated from kenaf fibre |
title_fullStr |
Effect of natural deep eutectic solvents on properties of micro crystalline cellulose isolated from kenaf fibre |
title_full_unstemmed |
Effect of natural deep eutectic solvents on properties of micro crystalline cellulose isolated from kenaf fibre |
title_sort |
effect of natural deep eutectic solvents on properties of micro crystalline cellulose isolated from kenaf fibre |
publisher |
Elsevier |
publishDate |
2023 |
url |
http://psasir.upm.edu.my/id/eprint/107516/1/Effect%20of%20natural%20deep%20eutectic%20solvents%20on%20properties%20of%20micro%20crystalline%20cellulose%20isolated%20from%20kenaf%20fibre.pdf http://psasir.upm.edu.my/id/eprint/107516/ https://www.sciencedirect.com/science/article/pii/S0926669023008944?via%3Dihub |
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