Abstract:
The present invention relates to a method for promoting a dehydrogenation reaction of ammonia borane pellets including a solid catalyst, wherein the method comprises: a mixture preparing step of mixing ammonia brane and a solid catalyst to prepare a mixture; a pellet preparing step of pelletizing the mixture to prepare ammonia brane pellets; a supplying step of supplying the prepared ammonia brane pellets to a reactor; and a hydrogen preparing step of applying heat to the reactor, to which the ammonia brane pellets are supplied, to promote a dehydrogenation reaction, thereby promoting the hydrogen generation rate and enabling continuous generation of hydrogen.
Abstract:
신규한 알킬 사슬 변성 술폰화 폴리에테르술폰 공중합체 및 그 제조 방법이 제공된다. 해당 알킬 체인 변성 술폰화 폴리에테르술폰 공중합체는 높은 열적 안정성 및 기계적 안정성을 가지며, 경제적이고 동시에 낮은 메탄올 침투성과 양호한 양성자 전도성, 양호한 물 흡수성을 가진다. 따라서, 기존의 나피온 등을 대체하여 고분자 전해질 막 연료전지 또는 직접 메탄올 연료전지 등과 같은 연료전지 상업화에 있어서 유용하게 사용될 수 있다.
Abstract:
The present invention relates to a fluid pumping device used in a fuel cell system and, more specifically, a fluid pumping device capable of lightening weight, maintaining durability of a pump, and facilitating replace and management by spatially separating the pump from a temporary storage unit for a fluid in which the high temperature fluid passes through. The fluid pumping device of the present invention is not restricted in an installation place. The fluid pumping device is not only simple but also has small failure factors. The fluid pumping device for a fuel cell can pump high temperature gas without additional cooling processes and contribute to improvement of the fuel cell system by increasing a fuel use rate.
Abstract:
Provided are a ceria-based composition including ceria, metal coated ceria, bithmus oxide, ceria-based composite electrolyte powder, a sintering method using the same, and a sintered body made thereof. The sintering density of a composite can be obtained at 1000 deg. C or less lower than existing sintering temperature, 1500 deg. C. The ion conductivity of an composite electrolyte can be enhanced.
Abstract:
PURPOSE: An in-situ manufacturing method of polybenzimidazole-base electrolyte membrane and a polybenzimidazole-base electrolyte membrane manufactured by using thereof are provided to manufacture polybenzimidazole-base electrolyte membrane with desired area without going through complex processes. CONSTITUTION: An in-situ manufacturing method of polybenzimidazole-base electrolyte membrane comprises the following steps: (S1) polymerizing the polybenzimidazole-base polymer in solution; (S2) forming a membrane by casting the solution including the polymerized polymer on top of the substrate and drying the outcome material in air; (S3) washing the dried membrane with water or alcohol; and (S4) evaporating water or alcohol as fixing a form of the film.
Abstract:
PURPOSE: A method for manufacturing an electrode including polybenzimidazole with high activity of a triple phase boundary is provided to enhance the activity of a triple phase boundary that is an actual response location in a fuel cell and to manufacture a membrane electrode assembly having improved performance. CONSTITUTION: A method for manufacturing an electrode including polybenzimidazole comprises the steps of: providing a first mixture of polybenzimidazole and a catalyst supported in a carrier; and mixing polytetrafluoroethylene with the first mixture to prepare a second mixture. The first mixture production step is carried out by forming a dispersion by adding the catalyst supported in the carrier to the solution formed by dissolving polybenzimidazole in a solvent and removing the solvent from the dispersion.
Abstract:
본 발명에서는 로봇에 대한 주전원으로서 연료전지장치를 사용하고, 상기 주전원의 보조 전원으로서 이차전지를 사용하는 하이브리드 전력공급장치를 제공한다. 상기 하이브리드 전력공급장치에 있어서, 로봇의 소비 전력이 연료전지장치의 생산 전력을 초과하는 경우 이에 대응하여 이차전지와 연료전지장치 간의 부하를 배분시켜 보조 전원인 이차전지로부터도 로봇에 전력을 공급하도록 한다. 로봇, 연료전지, 이차전지, 하이브리드, 전력분배장치
Abstract:
A method for manufacturing a membrane electrode assembly, and a unit cell of a fuel cell containing the membrane electrode assembly are provided to produce a membrane electrode assembly of a large area massively and to inhibit the formation of an ionomer skin layer, thereby improving the performance of a fuel cell. A method for manufacturing a membrane electrode assembly comprises the steps of forming a carbon layer(101) on a transfer substrate(201); forming a catalyst layer(102) on the transfer substrate in which the carbon layer is formed; and transferring the carbon layer and the catalyst layer formed on the transfer substrate to a polymeric electrolyte membrane(104). An outer ionomer layer(103) is formed on the catalyst layer at the second step.
Abstract:
A hybrid power supply device is provided to supply the stable power regardless of the sudden load variation using liquid fuel cell. A power distributing device(400) is connected to a robot(100). A fuel cell device(200) is connected to the power distributing device. The fuel cell device supplies the power to the robot. The fuel cell device includes a fuel cell stack and a peripheral device. The peripheral device operates the fuel cell stack. A secondary battery(300) is connected to the power distribution device. The secondary battery supplies the power to the peripheral device, the power distribution device, and an operation control device(500). If the power consumption exceeds the power produced by the fuel cell device, the secondary battery supplies the power to the robot. The operation control device is connected to the fuel cell device and the power distribution device. The operation control device controls the operation of the peripheral device.
Abstract:
본 발명에서는, 알칼리 붕소수소화물 용액을 이용한 수소 방출 반응용 촉매로서, Co와 B가 결합한 산화물 또는 Co와 B가 결합한 화합물(Co와 B가 결합한 산화물을 제외한다) 중 어느 하나 또는 둘을 포함하는 것을 특징으로 하는 알칼리 붕소수소화물 용액을 이용한 수소 방출 반응용 Co-B 촉매를 제공한다. 또한, 본 발명에서는, 알칼리 붕소수소화물 용액을 이용한 수소 방출 반응용 촉매의 제조 방법에 있어서, 환원제로 알칼리 붕소수소화물 용액을 이용하여 Co 2+ 를 환원하는 단계(S1); 및 환원 후 침전된 촉매를 건조 및 소성하여, Co와 B가 결합한 산화물 또는 Co와 B가 결합한 화합물(Co와 B가 결합한 산화물을 제외한다) 중 어느 하나 또는 둘을 포함하는 촉매를 수득하는 단계(S2)로 구성되는 것을 특징으로 하는 알칼리 붕소수소화물 용액을 이용한 수소 방출 반응용 Co-B 촉매의 제조 방법을 제공한다. 본 발명에 따른 알칼리 붕소수소화물 용액을 이용한 수소 방출 반응용 Co-B 촉매는, 귀금속 촉매인 Ru 촉매에 비하여 30~50% 이상의 높은 활성을 갖는 것이므로, 상용의 Co 금속 촉매와 달리 비귀금속 촉매로서 고가의 Ru 등 귀금속 촉매를 대체할 수 있다. 붕소수소화물, 루테늄, 수소, 촉매, 고분자전해질막연료전지