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Solar Hydrogen Production - Renewable Hydrogen Production by Dry Fuel Reforming

机译:太阳能制氢-干燃料重整制氢

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SHEC LABS - Solar Hydrogen Energy Corporation constructed a pilot-plant to demonstrate a Dry Fuel Reforming (DFR) system that is heated primarily by sunlight focusing-mirrors. The pilot-plant consists of: a solar mirror array and solar concentrator and shutter system; and, two thermo-catalytic reactors to convert Methane, Carbon Dioxide, and Water into Hydrogen. Results from the pilot study show that solar Hydrogen generation is feasible and cost-competitive with traditional Hydrogen production. More than 95% of Hydrogen commercially produced today is by the Steam Methane Reformation (SMR) of natural gas, a process that liberates Carbon Dioxide to the atmosphere. The SMR process provides a net energy loss of 30 to 35% when converting from Methane to Hydrogen. Solar Hydrogen production provides a 14% net energy gain when converting Methane into Hydrogen since the energy used to drive the process is from the sun. The environmental benefits of generating Hydrogen using renewable energy include significant greenhouse gas and criteria air contaminant reductions.
机译:SHEC LABS-太阳能氢能公司建造了一个中试工厂,以演示干燃料重整(DFR)系统,该系统主要由阳光聚焦镜加热。该中试工厂包括:一个太阳镜阵列以及一个太阳聚光器和百叶窗系统;两个热催化反应器将甲烷,二氧化碳和水转化为氢气。初步研究的结果表明,与传统的氢气生产相比,太阳能氢气的生产是可行的,并且具有成本竞争力。如今,超过95%的商业化氢气是通过天然气的蒸汽甲烷重整(SMR)来实现的,该过程将二氧化碳释放到大气中。从甲烷转化为氢气时,SMR工艺的净能量损失为30%至35%。将甲烷转化为氢气时,太阳能制氢可提供14%的净能量增长,因为用于驱动该过程的能量来自太阳。使用可再生能源生产氢气的环境效益包括显着的温室气体和减少标准的空气污染物。

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