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Recent Advances in Synthesis of Graphite from Agricultural Bio-Waste Material: A Review

Graphitic carbon is a valuable material that can be utilized in many fields, such as electronics, energy storage and wastewater filtration. Due to the high demand for commercial graphite, an alternative raw material with lower costs that is environmentally friendly has been explored. Amongst these,...

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Autores principales: Yap, Yee Wen, Mahmed, Norsuria, Norizan, Mohd Natashah, Abd Rahim, Shayfull Zamree, Ahmad Salimi, Midhat Nabil, Abdul Razak, Kamrosni, Mohamad, Ili Salwani, Abdullah, Mohd Mustafa Al-Bakri, Mohamad Yunus, Mohd Yusry
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10180389/
https://www.ncbi.nlm.nih.gov/pubmed/37176484
http://dx.doi.org/10.3390/ma16093601
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author Yap, Yee Wen
Mahmed, Norsuria
Norizan, Mohd Natashah
Abd Rahim, Shayfull Zamree
Ahmad Salimi, Midhat Nabil
Abdul Razak, Kamrosni
Mohamad, Ili Salwani
Abdullah, Mohd Mustafa Al-Bakri
Mohamad Yunus, Mohd Yusry
author_facet Yap, Yee Wen
Mahmed, Norsuria
Norizan, Mohd Natashah
Abd Rahim, Shayfull Zamree
Ahmad Salimi, Midhat Nabil
Abdul Razak, Kamrosni
Mohamad, Ili Salwani
Abdullah, Mohd Mustafa Al-Bakri
Mohamad Yunus, Mohd Yusry
author_sort Yap, Yee Wen
collection PubMed
description Graphitic carbon is a valuable material that can be utilized in many fields, such as electronics, energy storage and wastewater filtration. Due to the high demand for commercial graphite, an alternative raw material with lower costs that is environmentally friendly has been explored. Amongst these, an agricultural bio-waste material has become an option due to its highly bioactive properties, such as bioavailability, antioxidant, antimicrobial, in vitro and anti-inflammatory properties. In addition, biomass wastes usually have high organic carbon content, which has been discovered by many researchers as an alternative carbon material to produce graphite. However, there are several challenges associated with the graphite production process from biomass waste materials, such as impurities, the processing conditions and production costs. Agricultural bio-waste materials typically contain many volatiles and impurities, which can interfere with the synthesis process and reduce the quality of the graphitic carbon produced. Moreover, the processing conditions required for the synthesis of graphitic carbon from agricultural biomass waste materials are quite challenging to optimize. The temperature, pressure, catalyst used and other parameters must be carefully controlled to ensure that the desired product is obtained. Nevertheless, the use of agricultural biomass waste materials as a raw material for graphitic carbon synthesis can reduce the production costs. Improving the overall cost-effectiveness of this approach depends on many factors, including the availability and cost of the feedstock, the processing costs and the market demand for the final product. Therefore, in this review, the importance of biomass waste utilization is discussed. Various methods of synthesizing graphitic carbon are also reviewed. The discussion ranges from the conversion of biomass waste into carbon-rich feedstocks with different recent advances to the method of synthesis of graphitic carbon. The importance of utilizing agricultural biomass waste and the types of potential biomass waste carbon precursors and their pre-treatment methods are also reviewed. Finally, the gaps found in the previous research are proposed as a future research suggestion. Overall, the synthesis of graphite from agricultural bio-waste materials is a promising area of research, but more work is needed to address the challenges associated with this process and to demonstrate its viability at scale.
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spelling pubmed-101803892023-05-13 Recent Advances in Synthesis of Graphite from Agricultural Bio-Waste Material: A Review Yap, Yee Wen Mahmed, Norsuria Norizan, Mohd Natashah Abd Rahim, Shayfull Zamree Ahmad Salimi, Midhat Nabil Abdul Razak, Kamrosni Mohamad, Ili Salwani Abdullah, Mohd Mustafa Al-Bakri Mohamad Yunus, Mohd Yusry Materials (Basel) Review Graphitic carbon is a valuable material that can be utilized in many fields, such as electronics, energy storage and wastewater filtration. Due to the high demand for commercial graphite, an alternative raw material with lower costs that is environmentally friendly has been explored. Amongst these, an agricultural bio-waste material has become an option due to its highly bioactive properties, such as bioavailability, antioxidant, antimicrobial, in vitro and anti-inflammatory properties. In addition, biomass wastes usually have high organic carbon content, which has been discovered by many researchers as an alternative carbon material to produce graphite. However, there are several challenges associated with the graphite production process from biomass waste materials, such as impurities, the processing conditions and production costs. Agricultural bio-waste materials typically contain many volatiles and impurities, which can interfere with the synthesis process and reduce the quality of the graphitic carbon produced. Moreover, the processing conditions required for the synthesis of graphitic carbon from agricultural biomass waste materials are quite challenging to optimize. The temperature, pressure, catalyst used and other parameters must be carefully controlled to ensure that the desired product is obtained. Nevertheless, the use of agricultural biomass waste materials as a raw material for graphitic carbon synthesis can reduce the production costs. Improving the overall cost-effectiveness of this approach depends on many factors, including the availability and cost of the feedstock, the processing costs and the market demand for the final product. Therefore, in this review, the importance of biomass waste utilization is discussed. Various methods of synthesizing graphitic carbon are also reviewed. The discussion ranges from the conversion of biomass waste into carbon-rich feedstocks with different recent advances to the method of synthesis of graphitic carbon. The importance of utilizing agricultural biomass waste and the types of potential biomass waste carbon precursors and their pre-treatment methods are also reviewed. Finally, the gaps found in the previous research are proposed as a future research suggestion. Overall, the synthesis of graphite from agricultural bio-waste materials is a promising area of research, but more work is needed to address the challenges associated with this process and to demonstrate its viability at scale. MDPI 2023-05-08 /pmc/articles/PMC10180389/ /pubmed/37176484 http://dx.doi.org/10.3390/ma16093601 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Yap, Yee Wen
Mahmed, Norsuria
Norizan, Mohd Natashah
Abd Rahim, Shayfull Zamree
Ahmad Salimi, Midhat Nabil
Abdul Razak, Kamrosni
Mohamad, Ili Salwani
Abdullah, Mohd Mustafa Al-Bakri
Mohamad Yunus, Mohd Yusry
Recent Advances in Synthesis of Graphite from Agricultural Bio-Waste Material: A Review
title Recent Advances in Synthesis of Graphite from Agricultural Bio-Waste Material: A Review
title_full Recent Advances in Synthesis of Graphite from Agricultural Bio-Waste Material: A Review
title_fullStr Recent Advances in Synthesis of Graphite from Agricultural Bio-Waste Material: A Review
title_full_unstemmed Recent Advances in Synthesis of Graphite from Agricultural Bio-Waste Material: A Review
title_short Recent Advances in Synthesis of Graphite from Agricultural Bio-Waste Material: A Review
title_sort recent advances in synthesis of graphite from agricultural bio-waste material: a review
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10180389/
https://www.ncbi.nlm.nih.gov/pubmed/37176484
http://dx.doi.org/10.3390/ma16093601
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