Recent advances in the application of nanomaterials for improved biodiesel, biogas, biohydrogen, and bioethanol production

被引:41
作者
Awogbemi, Omojola [1 ]
Von Kallon, Daramy Vandi [1 ]
机构
[1] Univ Johannesburg, Dept Mech & Ind Engn Technol, Johannesburg, South Africa
关键词
Biofuel; Nanotechnology; Biodiesel; Nanomaterials; Carbon nanotubes; ANAEROBIC-DIGESTION; METHANE PRODUCTION; MAGNETIC NANOPARTICLES; NICKEL NANOPARTICLES; OXIDE NANOPARTICLES; NANOTECHNOLOGY; FERMENTATION; ENHANCEMENT; HYDROGEN; IRON;
D O I
10.1016/j.fuel.2023.130261
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The unrelenting utilization of fossil-based fuels has led to the continuous emission of anthropogenic gases and exacerbated environmental degradation at an alarming rate. Due to its renewability, sustainability, costeffectiveness, and environmental friendliness, the demand for biofuels, as reliable substitutes for fossil fuels, has been on the rise in recent decades. The deployment of nanotechnology is one of the sustainable strategies to boost the production of high-quality biofuels. The current study succinctly reviews the recent advancements in the utilization of nanomaterials to enhance the production and purification of biodiesel, biogas, biohydrogen, bioethanol, and other forms of biofuels from diverse feedstocks. The study examines the trend in global biofuel production, methods of fabrication and characteristics of nanomaterials, and avenues of utilization of nanotechnology in biofuel production. The outcome of the study reveals that the deployment of nanomaterials including metallic nanomaterials, nanocomposites, carbon-based nanomaterials, carbon nanotubes, graphene, and nanoscale biochar significantly contributes to biofuel production from various feedstocks. Deploying appropriate nanomaterials enhances feedstock conversion rate, separation and purification process, and product quality improvement. In the end, the reviews note the environmental implications of nanomaterials-based biofuel production, suggest remediation actions and recommend avenues for further research. There is a need for more novel integrated technologies, technical innovations, and financial investments to escalate sustainable biofuel production through the deployment of appropriate eco-friendly nanomaterials.
引用
收藏
页数:22
相关论文
共 192 条
[1]   Effects of Co and Ni nanoparticles on biogas and methane production from anaerobic digestion of slurry [J].
Abdelsalam, E. ;
Samer, M. ;
Attia, Y. A. ;
Abdel-Hadi, M. A. ;
Hassan, H. E. ;
Badr, Y. .
ENERGY CONVERSION AND MANAGEMENT, 2017, 141 :108-119
[2]   Biobutanol preparation through sugar-rich biomass by Clostridium saccharoperbutylacetonicum conversion using ZnO nanoparticle catalyst [J].
Abel, Saka ;
Tesfaye, JuleLeta ;
Gudata, Lamessa ;
Nagaprasad, N. ;
Subramanian, Kumaran ;
Mani, Mahendrakumar ;
Shanmugam, R. ;
Dwarampudi, L. Priyanka ;
Roy, Arpita ;
Stalin, B. ;
Krishnaraj, Ramaswamy .
BIOMASS CONVERSION AND BIOREFINERY, 2022,
[3]   Synthesis of nanomaterials using various top-down and bottom-up approaches, influencing factors, advantages, and disadvantages: A review [J].
Abid, Namra ;
Khan, Muhammad ;
Shujait, Sara ;
Chaudhary, Kainat ;
Ikram, Muhammad ;
Imran, Muhammad ;
Haider, Junaid ;
Khan, Maaz ;
Khan, Qasim ;
Maqbool, Muhammad .
ADVANCES IN COLLOID AND INTERFACE SCIENCE, 2022, 300
[4]   Enhanced production of biodiesel using nanomaterials: A detailed review on the mechanism and influencing factors [J].
Abusweireh, Reham Sayaddi ;
Rajamohan, Natarajan ;
Vasseghian, Yasser .
FUEL, 2022, 319
[5]  
Aggarwal NK, 2022, Bioethanol Production, P169
[6]   Nature-inspired biogenic synthesis of silver nanoparticles for antibacterial applications [J].
Ahmed, Adeel ;
Usman, Muhammad ;
Ji, Zhijian ;
Ra, Muhammad ;
Yu, Bing ;
Shen, Youqing ;
Cong, Hailin .
MATERIALS TODAY CHEMISTRY, 2023, 27
[7]   Utilization of nanomaterials in accelerating the production process of sustainable biofuels [J].
Ahmed, Shams Forruque ;
Debnath, J. C. ;
Mehejabin, Fatema ;
Islam, Nafisa ;
Tripura, Ritu ;
Mofijur, M. ;
Hoang, Anh Tuan ;
Rasul, M. G. ;
Vo, Dai-Viet N. .
SUSTAINABLE ENERGY TECHNOLOGIES AND ASSESSMENTS, 2023, 55
[8]   Cobalt oxide nanoparticles as a new strategy for enhancing methane production from anaerobic digestion of noxious aquatic weeds [J].
Ali, Sameh Samir ;
Zagklis, Dimitris ;
Kornaros, Michael ;
Sun, Jianzhong .
BIORESOURCE TECHNOLOGY, 2023, 368
[9]   Nanoscale self-assembly: concepts, applications and challenges [J].
Amadi, Eberechukwu Victoria ;
Venkataraman, Anusha ;
Papadopoulos, Chris .
NANOTECHNOLOGY, 2022, 33 (13)
[10]   A review on metal-based nanoparticles and their toxicity to beneficial soil bacteria and fungi [J].
Ameen, Fuad ;
Alsamhary, Khawla ;
Alabdullatif, Jamila A. ;
ALNadhari, Saleh .
ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 2021, 213