Abstract:
본 발명은 열교환 장치를 내장한 일산화탄소 선택적 산화반응기 및 연료 개질 시스템에 관한 것으로, 일산화탄소의 선택적 산화반응이 일어나고, 가스의 유입구와 배출구를 갖는 반응기 본체; 반응기 본체의 내부에 설치되고, 냉각매체의 유입구와 배출구를 갖는 열교환부; 및 열교환부를 둘러싸도록 반응기 본체의 내부에 충진되는 다수의 일산화탄소 선택적 산화반응용 촉매로 이루어진 촉매층을 포함하는 일산화탄소 선택적 산화반응기를 제공하며, 또한 상기 선택적 산화반응기를 포함하는 연료 개질 시스템을 제공한다.
Abstract:
The present invention relates to a catalyst forming apparatus using a screw extruder. The present invention comprises: a screw extruder which makes the catalysts of a powder state into the catalyst of a dough state and then extrudes them; and a cutter which cuts the catalysts extruded in the screw extruder into a certain length and shape. The cutter comprises a pair of cutting drums which are rotatably arranged, and successively performs cutting while the catalysts pass between the cutting drums. The present invention enables the catalysts extruded in the screw extruder to be formed into the catalysts of a certain shape while directly passing through the cutter, thereby conveniently forming the catalysts into a pellet shape or a sphere shape.
Abstract:
PURPOSE: A fuel reformer is provided to enhance mixing characteristic of raw materials and to uniformly supply raw materials to a catalyst layer by uniformly distributing the mixed raw materials in the columnar direction. CONSTITUTION: A fuel reformer comprises a first cylindrical body (10), a second cylindrical body (20), a third cylindrical body (30), a steam reforming reaction part, and a raw material introduction portion. The first, second and third cylindrical body are concentrically arranges and the diameters are gradually enlarged. The first cylindrical body forms a combustion chamber. The steam reforming reaction part is formed in an intervening space between the second and third cylindrical bodies, and a reaction in which hydrocarbon is reformed to hydrogen by reacting with steam. The raw material introduction portion is connected from the side of the third cylindrical body to the third cylindrical body in the tangential direction. The raw material mixture which includes hydrocarbon is introduced to the raw material introduction portion.
Abstract:
PURPOSE: A multi-tube cylindrical steam reformer is provided to be able to reduce the diameter of the central line on which reaction tubes are arranged compared to a top-down burner, and therefore, to be able to design a compact furnace. CONSTITUTION: A multi-tube cylindrical steam reformer comprises a furnace (10); multiple reaction tubes (50) installed within the furnace, in which a reformation reaction that source natural gas and water vapor are transformed into modified gas including hydrogen; a central burner (20) which is installed in the center of the furnace, and heats reaction tubes by combusting the source natural gas while generating exhaust gas; and at least one side burner (30,40) which is installed on the side of the furnace, and heats reaction tubes by combusting the source natural gas while generating exhaust gas.
Abstract:
PURPOSE: A catalytic combustion apparatus with complete uniform flow for a large capacity internal-reforming MCFC(Molten Carbonate Fuel Cell) is provided to maintain uniform pressure distribution of mixed gas and uniform gas flow in branch pipes. CONSTITUTION: A catalytic combustion apparatus with complete uniform flow for a large capacity internal-reforming MCFC comprises a gas mixing part(1), a uniform flow guide section, a complete catalytic combustion section(3), and an exhaust gas supply section(4). The gas mixing part separately supplies and mixes cathode by-product gas(11) and anode air(12) which are produced according to the reforming reaction of MCFC stack outside an MCFC stack vessel(6). The uniform flow guide section has a perforated or branched structure in order to maintain uniform flow distribution of the mixed gas supplied to the MCFC stack vessel. The complete catalytic combustion section completely burns the mixed gas through multi-stage catalysts(31,32). The exhaust gas supply section supplies high-temperature heat and exhaust gas to the MCFC stack vessel.
Abstract:
PURPOSE: A CO shift reactor with a steam generating part and a method for controlling an outlet temperature of the CO shift reactor are provided to contact a cooling medium with the outside of a reactor as a boundary of an external wall. CONSTITUTION: A Co shift reactor includes a steam generating unit(1). The steam generating unit generates stream by heat exchange between combustion flue gas waste heat and supply water. A CO shift reaction unit(2) is installed inside the steam generating unit. Heat exchange between generated heat of the CO shift reactor and high-temperature water stored in the steam generating unit is performed at a lower temperature than the generated heat. A temperature of an outlet is stably controlled by the heat exchange.
Abstract:
본발명은구조체의표면에형성된루테늄함유촉매층을포함하는촉매의제조방법에관한것으로, 루테늄전구체함유용액과침전제의혼합용액을 1차숙성시켜루테늄함유침전물시드를형성시킨후 2차숙성시킴으로써상기시드를성장시켜루테늄함유침전물입자를형성시킨다음, 구조체를접촉시켜상기입자가구조체표면에증착하여균일한두께로고분산된루테늄함유촉매층이형성된촉매를제조할수 있다. 상기촉매는구형의루테늄함유침전물입자가쌓여루테늄함유촉매층이형성된형태를가져촉매의비표면적이크므로루테늄촉매에의해수소를생산하는다양한반응에서우수한촉매성능을발휘할수 있다.