Using Life Cycle Assessment to Improve the Sustainability of Laboratory Synthesis of Chalcogenide Nanoparticles for Thin Film Photovoltaics

A life cycle assessment (LCA) is conducted to investigate the sustainability of a laboratory scale process to synthesise Cu 2 ZnSnS 4 (CZTS) nanoparticles at two different synthesis volumes. This process is the first stage in the fabrication of the light absorbing layer of a Cu 2 ZnSn(S,Se) 4 (CZTSS...

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Published in:Conference record of the IEEE Photovoltaic Specialists Conference pp. 0785 - 0787
Main Authors: Willis, Bethany L., Jones, Michael D. K., Campbell, Stephan, Kartopu, Giray, Punathil, Prabeesh, Cheung, Wai Ming, Woolley, Elliot, Jones, Lewis C. R., Barrioz, Vincent, Zoppi, Guillaume, Qu, Yongtao, Beattie, Neil S.
Format: Conference Proceeding
Language:English
Published: IEEE 09-06-2024
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Abstract A life cycle assessment (LCA) is conducted to investigate the sustainability of a laboratory scale process to synthesise Cu 2 ZnSnS 4 (CZTS) nanoparticles at two different synthesis volumes. This process is the first stage in the fabrication of the light absorbing layer of a Cu 2 ZnSn(S,Se) 4 (CZTSSe) thinfilm photovoltaic (PV) device. The assessment involves analysis of a range of environmental impact categories and the identification of "hotspots" where potential alternatives are suggested and evaluated. Synthesis of the CTZS nanoparticles at a larger batch volume results in benefits across a range of environmental impact categories. Further, the PV device performance made from these inks was unaffected relative to devices made from the smaller synthesis volume. Assessment of the entire CZTS nanoparticle ink fabrication allows for investigation into the sustainability of the nanoparticle ink as a product and the exploration of alternative, more environmentally friendly solvents used for washing and dispersing the nanoparticles.
AbstractList A life cycle assessment (LCA) is conducted to investigate the sustainability of a laboratory scale process to synthesise Cu 2 ZnSnS 4 (CZTS) nanoparticles at two different synthesis volumes. This process is the first stage in the fabrication of the light absorbing layer of a Cu 2 ZnSn(S,Se) 4 (CZTSSe) thinfilm photovoltaic (PV) device. The assessment involves analysis of a range of environmental impact categories and the identification of "hotspots" where potential alternatives are suggested and evaluated. Synthesis of the CTZS nanoparticles at a larger batch volume results in benefits across a range of environmental impact categories. Further, the PV device performance made from these inks was unaffected relative to devices made from the smaller synthesis volume. Assessment of the entire CZTS nanoparticle ink fabrication allows for investigation into the sustainability of the nanoparticle ink as a product and the exploration of alternative, more environmentally friendly solvents used for washing and dispersing the nanoparticles.
Author Woolley, Elliot
Barrioz, Vincent
Zoppi, Guillaume
Qu, Yongtao
Punathil, Prabeesh
Jones, Michael D. K.
Cheung, Wai Ming
Beattie, Neil S.
Campbell, Stephan
Willis, Bethany L.
Kartopu, Giray
Jones, Lewis C. R.
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  givenname: Bethany L.
  surname: Willis
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  organization: Northumbria University,Department of Mathematics, Physics and Electrical Engineering,Newcastle upon Tyne,United Kingdom,NE1 8ST
– sequence: 2
  givenname: Michael D. K.
  surname: Jones
  fullname: Jones, Michael D. K.
  organization: Northumbria University,Department of Mathematics, Physics and Electrical Engineering,Newcastle upon Tyne,United Kingdom,NE1 8ST
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  givenname: Stephan
  surname: Campbell
  fullname: Campbell, Stephan
  organization: Northumbria University,Department of Mathematics, Physics and Electrical Engineering,Newcastle upon Tyne,United Kingdom,NE1 8ST
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  givenname: Giray
  surname: Kartopu
  fullname: Kartopu, Giray
  organization: Northumbria University,Department of Mathematics, Physics and Electrical Engineering,Newcastle upon Tyne,United Kingdom,NE1 8ST
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  givenname: Prabeesh
  surname: Punathil
  fullname: Punathil, Prabeesh
  organization: Northumbria University,Department of Mathematics, Physics and Electrical Engineering,Newcastle upon Tyne,United Kingdom,NE1 8ST
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  givenname: Wai Ming
  surname: Cheung
  fullname: Cheung, Wai Ming
  organization: Northumbria University,Department of Mechanical and Construction Engineering,Newcastle upon Tyne,United Kingdom,NE1 8ST
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  givenname: Elliot
  surname: Woolley
  fullname: Woolley, Elliot
  organization: Wolfson School of Mechanicalm Electrical and Manufacturing Engineering, Loughborough University,Loughborough,Leicestershire,UK,LE11 3TU
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  givenname: Lewis C. R.
  surname: Jones
  fullname: Jones, Lewis C. R.
  organization: Wolfson School of Mechanicalm Electrical and Manufacturing Engineering, Loughborough University,Loughborough,Leicestershire,UK,LE11 3TU
– sequence: 9
  givenname: Vincent
  surname: Barrioz
  fullname: Barrioz, Vincent
  organization: Northumbria University,Department of Mathematics, Physics and Electrical Engineering,Newcastle upon Tyne,United Kingdom,NE1 8ST
– sequence: 10
  givenname: Guillaume
  surname: Zoppi
  fullname: Zoppi, Guillaume
  organization: Northumbria University,Department of Mathematics, Physics and Electrical Engineering,Newcastle upon Tyne,United Kingdom,NE1 8ST
– sequence: 11
  givenname: Yongtao
  surname: Qu
  fullname: Qu, Yongtao
  organization: Northumbria University,Department of Mathematics, Physics and Electrical Engineering,Newcastle upon Tyne,United Kingdom,NE1 8ST
– sequence: 12
  givenname: Neil S.
  surname: Beattie
  fullname: Beattie, Neil S.
  organization: Northumbria University,Department of Mathematics, Physics and Electrical Engineering,Newcastle upon Tyne,United Kingdom,NE1 8ST
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Snippet A life cycle assessment (LCA) is conducted to investigate the sustainability of a laboratory scale process to synthesise Cu 2 ZnSnS 4 (CZTS) nanoparticles at...
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StartPage 0785
SubjectTerms Chalcogenides
Fabrication
Ink
Life cycle assessment
Nanoparticles
Performance evaluation
Photovoltaic systems
Solvents
Sustainable development
Title Using Life Cycle Assessment to Improve the Sustainability of Laboratory Synthesis of Chalcogenide Nanoparticles for Thin Film Photovoltaics
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