Hydrogen rich gas production through the gasification of sunflower seed pulp and aspen simulation
2019
0 views
0 downloads
Advisor: Prof. Dr. Nezihe Ayas
Abstract (EN)
In this work, sunflower meal, a waste product of sunflower oil factories, was gasified in order to produce hydrogen-rich gaseous products. For the gasification process, a batch direct gasifier and a continuous steam reformer was used. With the direct gasifier, effect of temperature (650, 750 and 850 °C), air feed rate (1, 2, 3 and 4 L/h) and catalyst (K2CO3) ratio (0, 20, 40 wt%) on the gaseous product yield was investigated. The most suitable hydrogen yield was observed to be 5.55 mol H2/kg biomass. For the two step gasification process, biomass was first liquefied. At these experiments, effect of temperature (200, 300 and 350 °C), reaction time (15, 30 and 60 min), water:biomass ratio (wt. 10:1, 20:1 and 50:1) and catalyst (NaOH) ratio (0, 10, 20 and 30 wt%) on liquid and gas yields were investigated. Highest hydrogen yield was 5.45 mol H2/kg biomass. Steam reforming was performed on the liquid product that was produced on this condition. 30% Ni/Al2O3 catalyst was used in catalytic steam reforming experiments. Effect of temperature (600, 700, 800 °C) and water:liquid product ratio (3:3, 8:3, 16:3 and 24:3 by volume) on gas yields were investigated, and the acquired data was compared to the results of Aspen simulation. Highest hydrogen yield was found to be 37,49 mol H2/kg liquid product and when the hydrogen that was produced during liquefaction is added to it a total hydrogen yield of 43,03 mol H2/kg biomass was achieved. Effect of the tested parameters on gas yields are similar to what the aspen simulation calculated.
Author
Tolga Kaan Kanatlı
Institution
How to Cite
Tolga Kaan Kanatlı (Master Thesis). Hydrogen rich gas production through the gasification of sunflower seed pulp and aspen simulation, 2019, Eskişehir Technical Üniversity.
Keywords
License
Tüm Hakları Saklıdır
This work is shared under the specified license terms.
More theses from Eskişehir Technical Üniversity
- Development of membrane containing lidocaine embedded nanoparticle helping prevention of peritoneal adhesions post-surgery with 3D bioprinter technology(2020)
- CuO nanoparticle green synthesis and composite film production with PVA matrix(2021)
- Effect of crystallographic orientation on ionic conductivity of Li(1+x)AlxTi(2-x)(PO4)3 solid electrolytes(2018)
- Removal of Congo Red by Sepiolite supported Aspergillus Fumigatus and Aspergillus Terreus(2019)
- Development of electrochemical sensor based on modified electrode for the determination of carbendazim(2020)
- Synthesis and characterisation of short chain length (SCL) polyhydroxyalkanoate (PHA) from Bacillus and formulation of it with collagen(2020)
