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Using the TO theory, the dc concentrator can be easily designed by concentrating a sphere into the center of the sphere while diluting a spherical shell into the remaining region.
Furthermore, the microfluidic concentrator can be implemented in applications where concentration of targets are needed, such as the concentration of cells for sample preparation and the concentration of molecular biomarkers for biological assays.
The described microfluidic concentrator can be implemented in applications where rapid concentration of targets is needed such as concentrating cells for sample preparation and concentrating molecular biomarkers for detection.
On the other hand, the selective surface absorber significantly increased the performance, suggesting that the concentrator can be used in high-temperature applications such as steam generation.
An integrated optofluidic solar concentrator can be constructed from the liquid prism tracker in combination with a fixed and static optical condenser (Fresnel lens).
This is because the longitudinal incidence angle of ATFMSC always remains zero by tracking the sun azimuth, so the end loss of the concentrator can be avoided and enables it to operate with high efficiency continually.
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Mineral concentrators can be designed to support several modes of operation, which can be optimized for different geometallurgical units.
These concentrators can be effectively used for various applications such as solar water heater, solar still, and solar cooker.
This article considered that using light concentrators can be useful to enhance the efficiency of the solar cell with respect to manufacturing and cost improvements.
Based on this result, it can be concluded that the treatment of the tailings of borax concentrators can be feasible if the physical and the chemical parameters of the solid/liquid separation process are properly implemented all together.
With optimal application of ejector thermocompression, the waste heat of the concentrators can be utilized and thermo-transformed heat at higher temperature levels can be used for realization of the concentrating processes.
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