期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Catalytic Hydrothermal Liquefaction of Water Hyacinth Using Fe3O4/NiO Nanocomposite: Optimization of Reaction Conditions by Response Surface Methodology
1
作者 Godwin Aturagaba Dan Egesa +1 位作者 Edward Mubiru Emmanuel Tebandeke 《Journal of Sustainable Bioenergy Systems》 2023年第3期73-98,共26页
This research aimed at optimizing the reaction conditions for the catalytic hydrothermal liquefaction (HTL) of water hyacinth using iron oxide/nickel oxide nanocomposite as catalysts. The iron oxide/nickel oxide nanoc... This research aimed at optimizing the reaction conditions for the catalytic hydrothermal liquefaction (HTL) of water hyacinth using iron oxide/nickel oxide nanocomposite as catalysts. The iron oxide/nickel oxide nanocomposite was synthesized by the co-precipitation method and used in the hydrothermal liquefaction of water hyacinth. The composition and structural morphology of the synthesized catalysts were determined using X-ray diffraction (XRD), transmission electron microscopy (TEM), scanning electron microscopy (SEM), and atomic absorption spectroscopy (AAS). The particle size distribution of the catalyst nanoparticles was determined by the Image J software. Three reaction parameters were optimized using the response surface methodology (RSM). These were: temperature, residence time, and catalyst dosage. A maximum bio-oil yield of 59.4 wt% was obtained using iron oxide/nickel oxide nanocomposite compared to 50.7 wt% obtained in absence of the catalyst. The maximum bio-oil yield was obtained at a temperature of 320°C, 1.5 g of catalyst dosage, and 60 min of residence time. The composition of bio-oil was analyzed using gas chromatography-mass spectroscopy (GC-MS) and elemental analysis. The GC-MS results showed an increase of hydrocarbons from 58.3% for uncatalyzed hydrothermal liquefaction to 88.66% using iron oxide/nickel oxide nanocomposite. Elemental analysis results revealed an increase in the hydrogen and carbon content and a reduction in the Nitrogen, Oxygen, and Sulphur content of the bio-oil during catalytic HTL compared to HTL in absence of catalyst nanoparticles. The high heating value increased from 33.5 MJ/Kg for uncatalyzed hydrothermal liquefaction to 38.6 MJ/Kg during the catalytic HTL. The catalyst nanoparticles were recovered from the solid residue by sonication and magnetic separation and recycled. The recycled catalyst nanoparticles were still efficient as hydrothermal liquefaction (HTL) catalysts and were recycled four times. The application of iron oxide/ nickel oxide nanocomposites in the HTL of water hyacinth increases the yield of bio-oil and improves its quality by reducing hetero atoms thus increasing its energy performance as fuel. Iron oxide/nickel oxide nanocomposites used in this study are widely available and can be easily recovered magnetically and recycled. This will potentially lead to an economical, environmentally friendly, and sustainable way of converting biomass into biofuel. 展开更多
关键词 catalytic Hydrothermal liquefaction Water Hyacinth BIO-OIL Central Com-posite Design Response Surface Methodology OPTIMIZATION
下载PDF
Preparation and application of a new catalyst to produce bio-oil from microalgae liquefaction 被引量:1
2
作者 Wang Yipeng Nan Ge +2 位作者 Wang Wenjia Zhang Jinglai Han Wei 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2017年第1期169-175,共7页
In this study,hydrothermal catalytic liquefaction method was adopted to produce bio-oil from microalgae.The influence of supported Ni-Catalysts doped neodymium(Nd)on the bio-oil yield from microalgae liquefaction was ... In this study,hydrothermal catalytic liquefaction method was adopted to produce bio-oil from microalgae.The influence of supported Ni-Catalysts doped neodymium(Nd)on the bio-oil yield from microalgae liquefaction was investigated,aiming to find the optimal preparation procedure of bio-oil.It proved that under the condition of a temperature of 270℃and a reaction period of 30 min,the bio-oil yield of hydrothermal catalytic liquefaction of spirulina powder could reach 55.1%by means of the catalyst prepared with 1 mol/L neodymium nitrate as the dipping solution after a calcination for 4 h at 800℃.In addition,the characterization on catalyst was discussed in this research. 展开更多
关键词 CATALYST BIO-OIL MICROALGAE catalytic liquefaction spirulina powder
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部