Javascript must be enabled to continue!
Recent Advances in Synthesis of Graphite from Agricultural Bio-Waste Material: A Review
View through CrossRef
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.
Title: Recent Advances in Synthesis of Graphite from Agricultural Bio-Waste Material: A Review
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.
Related Results
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Evaluating the Science to Inform the Physical Activity Guidelines for Americans Midcourse Report
Abstract
The Physical Activity Guidelines for Americans (Guidelines) advises older adults to be as active as possible. Yet, despite the well documented benefits of physical a...
Assessment of the physical characteristics and fishing performance of gillnets using biodegradable resin (PBS/PBAT and PBSAT) to reduce ghost fishing
Assessment of the physical characteristics and fishing performance of gillnets using biodegradable resin (PBS/PBAT and PBSAT) to reduce ghost fishing
Abstract
Ghost fishing is caused by derelict synthetic‐fibre nets that have been lost at sea. Thus, biodegradable nets have been developed with the aim of protecting marine ecosy...
Analysis of the Impact of Agricultural Products Import Trade on Agricultural Carbon Productivity: Empirical Evidence from China
Analysis of the Impact of Agricultural Products Import Trade on Agricultural Carbon Productivity: Empirical Evidence from China
Abstract
To realize the goal of “dual carbon”, China urgently needs to seek the path of low-carbon agricultural development. The existing agricultural trade deficit in Chin...
Agricultural Waste for Energy Storage, Conversion and Agricultural Applications
Agricultural Waste for Energy Storage, Conversion and Agricultural Applications
Agricultural waste residues (agro-waste) present a significant source of carbohydrates that are often underutilized despite their valuable properties. With increasing urbanization ...
Current situation of plastic waste generation, opportunities and challenges in minimizing plastic waste at Son Tay General Hospital in 2022
Current situation of plastic waste generation, opportunities and challenges in minimizing plastic waste at Son Tay General Hospital in 2022
Objective: This study was conducted to describe the current situation of plastic waste generation and learn the opportunities and challenges in plastic waste management at Son Tay ...
The impact of agricultural production agglomeration on agricultural economic resilience: based on spatial spillover and threshold effect test
The impact of agricultural production agglomeration on agricultural economic resilience: based on spatial spillover and threshold effect test
This study focuses on the role of agricultural production agglomeration in strengthening agricultural economic resilience, exploring the threshold effect of agricultural technologi...
Review on Bio- Bricks
Review on Bio- Bricks
This paper reviews the utilization of Agricultural waste for making Bio Bricks and other construction materials to reduce burning and disposal problems of Agricultural waste due to...
Evaluation of construction and demolition waste management practices using environmental and economic impact assessment
Evaluation of construction and demolition waste management practices using environmental and economic impact assessment
Purpose
Effective management of a substantial quantity of construction and demolition (C&D) waste is vital to achieving the objectives of sustainable construc...

