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A wall wetter is a high-performance heat transfer enhancement device that can maintain a constant heat transfer area by pumping up the liquid remaining at the bottom of the evaporation can and spraying it onto the heat transfer surface.
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Free membership registrationThe continuous evaporation device "multi-chamber evaporator" incorporates partition plates into a conventional single evaporator, dividing the liquid phase into three or more sections, and connecting the separated chambers through connecting pipes (holes). Each chamber can be heated with the same heat source or separately, allowing for evaporation. The principle is that when continuous evaporation is performed in a conventional single evaporator, the interior operates at the final boiling point of the concentrated liquid. In a multi-chamber evaporator, the single evaporator is divided, allowing the concentrated liquid to move between the separated chambers, creating differences in boiling point and concentration within the same evaporator. This increases the temperature and concentration differences between the heating temperature and each divided section, enhancing the evaporation efficiency of the device. For more details, please download the catalog.
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Free membership registrationThe ultra-high vacuum distillation system, "Ultra High Vacuum Distillation System," has been successfully developed in collaboration with Nippon Suisan. This system allows for distillation in ultra-high vacuum conditions that were previously thought to be impossible. To lower the temperature of substances, we use a multi-stage distillation tower connected by condensed liquid, which is different from conventional methods. As a result, it has become possible to distill substances that were previously unimaginable. For more details, please download the catalog.
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Free membership registrationThe evaporation and concentration device "Wall Wetter" draws up the liquid remaining at the bottom of the evaporation can using centrifugal force, disperses it onto the heating surface, and promotes evaporation through the wet wall effect. In lines involving processes such as concentration, evaporation, reaction, and solvent recovery (recycling) for pharmaceuticals and food, it is possible to shorten time and processes by more than 50%.
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