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With hydrothermal treatment, the dye sensitized solar cell fabricated utilizing a low temperature bonded nanotube/PET as a photoelectrode exhibits a power conversion efficiency of 5.41%, which is only 0.87% lower than the power conversion efficiency of the solar cell using nanotubes bonded on a conductive glass through high temperature processes.
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The system consists of an existing ORC (organic Rankine cycle) utilizing a low-temperature geothermal brine and a solar trough system.
The power generation systems using a binary working fluid such as ammonia water mixture are proven to be the feasible method for utilizing a low-temperature waste heat source.
A theoretical analysis and an experimental study are carried out for an ORC with R134a as the working fluid, utilizing a low-temperature heat source (Tsource < 150 °C), with focus on the expansion and boiling processes.
Conformal, high conductivity thin films of indium tin oxide (ITO) have been deposited utilizing a relatively low temperature, ambient, multi-layer dip coating process.
A new vacuum monomer technique (VMT), which utilizes a new low temperature source design to produce gaseous monomer, has been developed that allows vacuum deposition of acrylate films with the same properties (ultra smooth and pinhole-free) as PML deposited films.
In this study a low temperature (600 °C) treatment was utilized to improve the fatigue performance of plasma nitrided Ti 6Al 4V alloy by optimization of microstructure.
A low temperature desalination process capable of producing 100 L/d freshwater was designed to utilize solar energy harvested from flat plate solar collectors.
The secret is a low temperature and turning halfway through.
Store the battery at a low temperature.
Bake the meringue at a low temperature.
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