Large scale deployment of polymer solar cells on land, on sea and in the air

被引:160
作者
Espinosa, Nieves [1 ]
Hosel, Markus [1 ]
Jorgensen, Mikkel [1 ]
Krebs, Frederik C. [1 ]
机构
[1] DTU, Roskilde, Denmark
关键词
LIFE-CYCLE ASSESSMENT; ENERGY PAYBACK; ITO-FREE; INDIUM; MODULES; COST; THIN;
D O I
10.1039/c3ee43212b
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
With the development of patterns that connect all cells in series, organic photovoltaics have leapt a step forward being ahead of other solar and even other energy technologies in terms of manufacturing speed and energy density. The important questions of how they are meant to be installed for producing power and what the requirements are yet to be explored. We present here the installation of organic solar cell modules in different settings (terrestrial, marine and airborne). For the evaluation of these installations deployed at DTU, we have used the life cycle assessment tools, and calculated key parameters in order to assess their environmental impact. The novel technology when installed in a solar park system can generate more than 1300 kW h kW(p)(-1) of electricity a year, which means that the whole system can pay the energy invested back before the first year of operation, in 320 days. If this electricity is fed back to the same electricity supply system that was used for manufacturing the potential saving of more than 13 GJ of primary energy per kWp per year can be reached. With the real data logged, a dynamic energy payback time has been furthermore calculated for the case of the solar tube installation, giving a value of 1.1 years.
引用
收藏
页码:855 / 866
页数:12
相关论文
共 31 条
[1]   Scalability and stability of very thin, roll-to-roll processed, large area, indium-tin-oxide free polymer solar cell modules [J].
Angmo, Dechan ;
Gevorgyan, Suren A. ;
Larsen-Olsen, Thue. T. ;
Sondergaard, Roar R. ;
Hosel, Markus ;
Jorgensen, Mikkel ;
Gupta, Ritu ;
Kulkarni, Giridhar U. ;
Krebs, Frederik C. .
ORGANIC ELECTRONICS, 2013, 14 (03) :984-994
[2]   All solution processing of ITO-free organic solar cell modules directly on barrier foil [J].
Angmo, Dechan ;
Hosel, Markus ;
Krebs, Frederik C. .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2012, 107 :329-336
[3]   Life Cycle Impact Assessment Workshop Summary Midpoints versus Endpoints: The Sacrifices and Benefits [J].
Bare, Jane C. ;
Hofstetter, Patrick ;
Pennington, David W. ;
de Haes, Helias A. Udo .
INTERNATIONAL JOURNAL OF LIFE CYCLE ASSESSMENT, 2000, 5 (06) :319-326
[4]   Life cycle analysis of organic tandem solar cells: When are they warranted? [J].
Espinosa, Nieves ;
Krebs, Frederik C. .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2014, 120 :692-700
[5]   OPV for mobile applications: an evaluation of roll-to-roll processed indium and silver free polymer solar cells through analysis of life cycle, cost and layer quality using inline optical and functional inspection tools [J].
Espinosa, Nieves ;
Lenzmann, Frank O. ;
Ryley, Stephen ;
Angmo, Dechan ;
Hosel, Markus ;
Sondergaard, Roar R. ;
Huss, Dennis ;
Dafinger, Simone ;
Gritsch, Stefan ;
Kroon, Jan M. ;
Jorgensen, Mikkel ;
Krebs, Frederik C. .
JOURNAL OF MATERIALS CHEMISTRY A, 2013, 1 (24) :7037-7049
[6]   Solar cells with one-day energy payback for the factories of the future [J].
Espinosa, Nieves ;
Hosel, Markus ;
Angmo, Dechan ;
Krebs, Frederik C. .
ENERGY & ENVIRONMENTAL SCIENCE, 2012, 5 (01) :5117-5132
[7]   Life cycle assessment of ITO-free flexible polymer solar cells prepared by roll-to-roll coating and printing [J].
Espinosa, Nieves ;
Garcia-Valverde, Rafael ;
Urbina, Antonio ;
Lenzmann, Frank ;
Manceau, Matthieu ;
Angmo, Dechan ;
Krebs, Frederik C. .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2012, 97 :3-13
[8]   Life-cycle analysis of product integrated polymer solar cells [J].
Espinosa, Nieves ;
Garcia-Valverde, Rafael ;
Krebs, Frederik C. .
ENERGY & ENVIRONMENTAL SCIENCE, 2011, 4 (05) :1547-1557
[9]   A life cycle analysis of polymer solar cell modules prepared using roll-to-roll methods under ambient conditions [J].
Espinosa, Nieves ;
Garcia-Valverde, Rafael ;
Urbina, Antonio ;
Krebs, Frederik C. .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2011, 95 (05) :1293-1302
[10]  
Fthenakis VM., 2011, METHODOLOGY GUIDELIN