We present a life cycle analysis of a lightweight design of high concentration photovoltaic module. The materials and processes used in construction are considered to assess the total environmental impact of the module construction in terms of the cumulative energy demand and embodied greenhouse gas emissions, which were found to be 355.3MJ and 27.9 kgCO2eq respectively. We consider six potential deployment locations and the system energy payback times are calculated to be 0.22–0.33 years whilst the greenhouse gas payback times are 0.29–0.88 years. The emission intensities over the life- times of the systems are found to be 6.5–9.8 g CO2eq/kWh, lower than those of other HCPV, PV and CSP technologies in similar locations
Life cycle assessment (LCA) is a powerful environmental management and decision- mak- ing tool that ...
Low-concentration PV (CPV, concentrating photovoltaic) technology is a promising concept because it ...
Despite the renewable nature of solar energy, the sustainability of photovoltaic (PV) systems needs ...
© 2019 by the authors. High Concentrator Photovoltaic Thermal (HCPV/T) systems produce both electric...
High Concentrator Photovoltaic Thermal (HCPV/T) systems produce both electrical and thermal energy a...
Depleting fossil fuel sources and worsening global warming are two of the most serious world problem...
This paper presents a life cycle assessment (LCA) of photovoltaic (PV) solar modules which have been...
Many new photovoltaic (PV) applications, such as the concentrating PV (CPV) systems, are appearing o...
The present article examines the environmental profile of a concentrating photovoltaic/thermal syste...
This paper focuses on the embodied energy and cost assessments of a static concentrating photovoltai...
Photovoltaic systems represent a leading part of the market in the renewable energies sector. Conte...
High Concentration Photovoltaic (HCPV) technology uses multi-junction solar cells made of different ...
Thanks to the continuous development in its technology, solar photovoltaics is already on its way to...
Photovoltaic (PV) systems are regarded as clean and sustainable sources of energy. Although the oper...
The various detrimental environmental and health effects of conventional electricity generation have...
Life cycle assessment (LCA) is a powerful environmental management and decision- mak- ing tool that ...
Low-concentration PV (CPV, concentrating photovoltaic) technology is a promising concept because it ...
Despite the renewable nature of solar energy, the sustainability of photovoltaic (PV) systems needs ...
© 2019 by the authors. High Concentrator Photovoltaic Thermal (HCPV/T) systems produce both electric...
High Concentrator Photovoltaic Thermal (HCPV/T) systems produce both electrical and thermal energy a...
Depleting fossil fuel sources and worsening global warming are two of the most serious world problem...
This paper presents a life cycle assessment (LCA) of photovoltaic (PV) solar modules which have been...
Many new photovoltaic (PV) applications, such as the concentrating PV (CPV) systems, are appearing o...
The present article examines the environmental profile of a concentrating photovoltaic/thermal syste...
This paper focuses on the embodied energy and cost assessments of a static concentrating photovoltai...
Photovoltaic systems represent a leading part of the market in the renewable energies sector. Conte...
High Concentration Photovoltaic (HCPV) technology uses multi-junction solar cells made of different ...
Thanks to the continuous development in its technology, solar photovoltaics is already on its way to...
Photovoltaic (PV) systems are regarded as clean and sustainable sources of energy. Although the oper...
The various detrimental environmental and health effects of conventional electricity generation have...
Life cycle assessment (LCA) is a powerful environmental management and decision- mak- ing tool that ...
Low-concentration PV (CPV, concentrating photovoltaic) technology is a promising concept because it ...
Despite the renewable nature of solar energy, the sustainability of photovoltaic (PV) systems needs ...