Photocatalytic Hydrogen Production from Biomass Under Solar Irradiation
Loading...
Date
Authors
Supervisors
Journal Title
Journal ISSN
Volume Title
Publisher
Abstract
This study aimed at finding ways to harvest hydrogen as sustainable fuel from renewable
source using clean and abundant solar energy. Sawdust, a renewable and waste material was
used for H2 production, which categorises the harvested hydrogen as ‘green hydrogen’. Initial
hydrothermal valorisation of sawdust yielded us cellulose, which was used as the sacrificial
agent. Sacrificial agent was then photo-reformed to hydrogen using photocatalyst TiO2 photodeposited
with Au, coated with rGO. TiO2, Au and rGO being non-toxic and environmentally
friendly didn’t hamper the ‘green’ hydrogen production. TiO2, a semiconductor has band gap
of approximately 3.2 eV, which renders it an effective photocatalyst. Nevertheless, its
effectiveness is hindered by the rapid recombination of electron-hole pairs. To overcome this,
Au of (1,3,5) wt. percentage was photo-deposited onto TiO2, as metal deposition enhances
charge separation. Au also exhibits surface plasmon resonance (SPR), improving light
absorption. Among the different loadings tested, 3% Au proved to be the most effective,
increasing efficiency without obstructing active sites. Modification of metal loaded
photocatalyst with rGO, which is conductive material with π conjugation, helps in further
reduction in recombination of electron and holes, this increases the photocatalytic activity, with
its best performing wt. % was 10% rGO out of 5, 10 & 12 wt. % rGO on 3% Au-TiO2.
Furthermore, the use of biomass, sawdust as sacrificial agent is great aid for activity
enhancement, as it is oxidised by photo-generated holes which reduces the recombination rate
also increasing the quantum yield of photo-catalytically produced green H2. The research
successfully illustrated biomass photo-reforming into green hydrogen, yield up to 296.12
mmol, as verified by gas chromatography.
Description
MSc thesis
