TY - JOUR
T1 - Photocatalytic Reforming of Biomass
T2 - What Role Will the Technology Play in Future Energy Systems
AU - Skillen, Nathan
AU - Daly, Helen
AU - Lan, Lan
AU - Aljohani, Meshal
AU - Murnaghan, Christopher W.J.
AU - Fan, Xiaolei
AU - Hardacre, Christopher
AU - Sheldrake, Gary N.
AU - Robertson, Peter K.J.
N1 - Publisher Copyright:
© 2022, The Author(s).
PY - 2022/10
Y1 - 2022/10
N2 - Photocatalytic reforming of biomass has emerged as an area of significant interest within the last decade. The number of papers published in the literature has been steadily increasing with keywords such as ‘hydrogen’ and ‘visible’ becoming prominent research topics. There are likely two primary drivers behind this, the first of which is that biomass represents a more sustainable photocatalytic feedstock for reforming to value-added products and energy. The second is the transition towards achieving net zero emission targets, which has increased focus on the development of technologies that could play a role in future energy systems. Therefore, this review provides a perspective on not only the current state of the research but also a future outlook on the potential roadmap for photocatalytic reforming of biomass. Producing energy via photocatalytic biomass reforming is very desirable due to the ambient operating conditions and potential to utilise renewable energy (e.g., solar) with a wide variety of biomass resources. As both interest and development within this field continues to grow, however, there are challenges being identified that are paramount to further advancement. In reviewing both the literature and trajectory of the field, research priorities can be identified and utilised to facilitate fundamental research alongside whole systems evaluation. Moreover, this would underpin the enhancement of photocatalytic technology with a view towards improving the technology readiness level and promoting engagement between academia and industry.
AB - Photocatalytic reforming of biomass has emerged as an area of significant interest within the last decade. The number of papers published in the literature has been steadily increasing with keywords such as ‘hydrogen’ and ‘visible’ becoming prominent research topics. There are likely two primary drivers behind this, the first of which is that biomass represents a more sustainable photocatalytic feedstock for reforming to value-added products and energy. The second is the transition towards achieving net zero emission targets, which has increased focus on the development of technologies that could play a role in future energy systems. Therefore, this review provides a perspective on not only the current state of the research but also a future outlook on the potential roadmap for photocatalytic reforming of biomass. Producing energy via photocatalytic biomass reforming is very desirable due to the ambient operating conditions and potential to utilise renewable energy (e.g., solar) with a wide variety of biomass resources. As both interest and development within this field continues to grow, however, there are challenges being identified that are paramount to further advancement. In reviewing both the literature and trajectory of the field, research priorities can be identified and utilised to facilitate fundamental research alongside whole systems evaluation. Moreover, this would underpin the enhancement of photocatalytic technology with a view towards improving the technology readiness level and promoting engagement between academia and industry.
KW - Biomass
KW - Energy
KW - Hydrogen
KW - Photocatalysis
KW - Technology readiness level (TRL)
UR - http://www.scopus.com/inward/record.url?scp=85132133868&partnerID=8YFLogxK
U2 - 10.1007/s41061-022-00391-9
DO - 10.1007/s41061-022-00391-9
M3 - Review article
C2 - 35717466
AN - SCOPUS:85132133868
SN - 2365-0869
VL - 380
JO - Topics in Current Chemistry
JF - Topics in Current Chemistry
IS - 5
M1 - 33
ER -