Abstract:
An electro-catalytic honeycomb for controlling exhaust emissions, which adopts to purify a lean-burn exhaust, comprises a honeycomb structural body, a solid-oxide layer and a cathode layer. The honeycomb structural body includes an anode, a plurality of gas channels, and a shell. The anode is formed as a backbone, the gas channels are formed inside the backbone for passing the exhaust, and the shell covers an outer surface of the anode. The solid-oxide layer is adhered to an inner surface of the anode and connects the shell so as to encapsulate the anode. The cathode layer is adhered to a tube wall of the solid-oxide layer and has an oxidizing environment. The anode has a reducing environment. The reducing and the oxidizing environment facilitate an electromotive force to occur between the anode and the cathode layer to promote a decomposition of nitrogen oxides of the exhaust into nitrogen and oxygen.
Abstract:
An electrocatalytic tube for controlling exhaust emissions, which adopts to purify the exhaust, comprises a tube, an anode layer and a cathode layer. The tube is composed of a solid-state electrolyte layer. The solid-state electrolyte layer includes an enclosed chamber, an inner wall formed inside the enclosed chamber, and an outer wall formed outside the enclosed chamber. The enclosed chamber has a sub-atmospheric reducing environment. The anode layer and cathode layer are respectively coated on the inner wall and outer wall of the solid-state electrolyte layer. The reducing environment facilitates an electromotive force to occur between the anode layer and the cathode layer. The electromotive force promotes catalytic decomposition of nitrogen oxides of the exhaust on the cathode layer.
Abstract:
The backlight module includes a holder having a holder sidewall, a light source disposed on the holder, a light guide plate, and a frame. An end of the light guide plated is fixed on the holder. The frame has a frame sidewall. The holder is assembled on the frame, wherein a gap is formed between the holder sidewall and the frame sidewall, and the gap is utilized as a buffer space of the deformation of the light guide plate.
Abstract:
The present invention discloses an electrochemical-catalytic converter, which can remove nitrogen oxides (NOx), carbon monoxide (CO), hydrocarbons (HCs) and particulate matter (PM) in exhaust gas. The electrochemical-catalytic converter comprises a cell module, wherein nitrogen oxides are decomposed to form nitrogen through electrochemical promotion, and wherein carbon monoxide, hydrocarbons and particulate matter are catalyzed to form carbon dioxide and water by an oxidation catalyst.
Abstract:
A backlight module is disclosed, which includes an outer frame having a sidewall and a hole formed on the sidewall, an inner frame disposed inside of the outer frame, and an adhesive device. The inner frame includes a block wall and a support. The block wall has an inner surface, an outer surface, and a breakable section. The outer surface is in contact with the sidewall, and the breakable section is disposed corresponding to the hole. The adhesive device is disposed on the support.
Abstract:
A backlight module is disclosed. The backlight module includes a light guide plate, a backlight source, an optical plate, and an optical coating layer. The light guide plate has a light emitting surface and a light incident end. The light incident end is located at an adjacent side of the light emitting surface. The backlight source is disposed corresponding to the light incident end and generates lights emitting to the light incident end. The optical plate is disposed above the light emitting surface. The optical plate includes an extension portion extending disposed above the backlight source. The optical coating layer is formed on a surface of the extension portion.
Abstract:
A backlight module is disclosed, which includes an outer frame having a sidewall and a hole formed on the sidewall, an inner frame disposed inside of the outer frame, and an adhesive device. The inner frame includes a block wall and a support. The block wall has an inner surface, an outer surface, and a rework section. The outer surface is in contact with the sidewall, and the rework section is disposed corresponding to the hole. The adhesive device is disposed on the support.
Abstract:
The present invention discloses an electrochemical-catalytic converter, which can remove nitrogen oxides (NOx), carbon monoxide (CO) and hydrocarbons (HCs) in exhaust gas and generate electric power simultaneously. The electrochemical-catalytic converter comprises a cell module, wherein nitrogen oxides are reacted electrochemically to form nitrogen, and wherein carbon monoxide and hydrocarbons are catalyzed to form carbon dioxide and water by an oxidation catalyst.
Abstract:
The present disclosure is a backlight module including a light guide plate, a supporter, and a light source module. The light guide plate has a light incident side. The supporter has a bottom plate, a sidewall, and a top plate corresponding to the bottom plate. The bottom plate extends from a first end of the sidewall toward the light guide plate, and the top plate extends along a second end of the sidewall toward the light guide plate. The length of the sidewall is longer than the length of the top plate, such that the top plate corresponding to the sidewall forms at least one breach to expose the second end of the sidewall. The bottom plate, the top plate, and the sidewall together form an accommodating space, and the light incident side of the light guide plate is disposed between the top plate and the bottom plate. The light source module is disposed in the accommodating space and partially exposed through the at least one breach. The light source module has at least one light emitting unit and a printed circuit board. The light emitting unit is disposed on the printed circuit board, such that an emitting surface of the light emitting unit can face the light incident side of the light guide plate.
Abstract:
The present invention discloses a biomedical scaffold material for articular cartilage repair, which is a multi-layer composite scaffold in the cylindrical plug form. It includes a lower porous ceramic layer intimating the bone zone of the joint, and an upper porous ceramic layer intimating the bottom cartilage zone of the joint; a dense ceramic separation layer connecting the lower and upper porous ceramic layers; and a porous gelatin layer, intimating the middle cartilage zone of the joint, affixed to the upper porous ceramic layer.