Abstract:
The present invention provides a low power consumption desorption apparatus, which utilizes a pair of electrodes coupled to an absorbing material to provide an electric current flowing through the absorbing material so as to desorb the substances absorbed within the absorbing material. By means of the desorption apparatus of the present invention, the absorbing material is able to enhance the desorbing efficiency and reducing power consumption during desorption. The present invention further provides a dehumidifier using the low power consumption desorption apparatus for providing a continuous dry air flow to desorb and regenerate the moisture from the absorbing material so that the dehumidifier is capable of removing moisture in the air repeatedly to reduce the humidity.
Abstract:
A method for the test of a testing platform comprises a series of steps performed by a computer. Wherein the computer software structure includes a tested object menu, a plurality of test programs, a test instruction subprogram, a speech instruction subprogram, a driver program database, and a manager for receiving a test results. The method according to the present invention has several stages so that another tested object is further tested, the current test program can be used. Moreover, a speech prompt function is further provided, which may match new computer software construction.
Abstract:
A method and an apparatus for desorption and a dehumidifier are provided in the present invention, in which an electrical potential is applied to electrodes disposed on both ends of an absorbing material so as to desorb the substances absorbed within the absorbing material whereby the absorbing material is capable of being maintained for cycling the absorbing operation. By means of the method and the apparatus of the present invention, the desorbing efficiency can be enhanced and the energy consumption can be reduced during desorption.
Abstract:
A method for treating or alleviating allergic disease in a mammal in need thereof having administering to the mammal a therapeutically effective amount of a pharmaceutical composition having phycocyanin is provided. A method for modulating balance between Th1 and Th2 immune response in a mammal in need thereof, having administering to the mammal an effective amount of phycocyanin, wherein immune response of the mammal is skewed toward the Th1 immune response is also provided. Phycocyanin from Bangia atropupurea (Ba-PC) is identified to regulate mammalian immunological response indicating that Ba-PC can direct skewed immune response toward Th1 response through modulating DC function, increase proliferative activity of antigen-specific T cells and alleviate airway inflammation, confirming that phycobiliproteins are effective in treating allergic disease.
Abstract:
The present invention provides a low power consumption desorption apparatus, which utilizes a pair of electrodes coupled to an absorbing material to provide an electric current flowing through the absorbing material so as to desorb the substances absorbed within the absorbing material. By means of the desorption apparatus of the present invention, the absorbing material is able to enhance the desorbing efficiency and reducing power consumption during desorption. The present invention further provides a dehumidifier using the low power consumption desorption apparatus for providing a continuous dry air flow to desorb and regenerate the moisture from the absorbing material so that the dehumidifier is capable of removing moisture in the air repeatedly to reduce the humidity.
Abstract:
A method and an apparatus for desorption and a dehumidifier are provided in the present invention, in which an electrical potential is applied to electrodes disposed on both ends of an absorbing material so as to desorb the substances absorbed within the absorbing material whereby the absorbing material is capable of being maintained for cycling the absorbing operation. By means of the method and the apparatus of the present invention, the desorbing efficiency can be enhanced and the energy consumption can be reduced during desorption.
Abstract:
A method of fabricating a porous media is provided. In the method, a metal mesh is provided. The metal mesh includes interlaced metal wires, and first holes are formed among the metal wires. An area of each first hole ranges from 1 μm2 to 10,000 μm2, and an area error between the first holes is less than 5%. A metal layer covers the metal wires, so as to form the porous media with second holes. By controlling the thickness of the metal layer, an area of each second hole is reduced to 0.01 μm2 to 1 μm2, and an area error between the second holes is less than 5%.