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Application of an electrochemical membrane reactor to the thermochemical water splitting IS process for hydrogen production

机译:电化学膜反应器在热化学水分解IS工艺制氢中的应用

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The Bunsen reaction (SO2 + I-2 + 2H(2)O= H2SO4 + 2HI) in the thermochemical IS process to produce hydrogen was successfully employed using an electrochemical membrane reactor. H2SO4 and HI were concentrated in the anode side and the cathode side of the reactor, respectively. 1, is the dominant bulk of the recycling chemicals in this process, and 12 concentration at the outlet of the reactor was reduced ca. 93% by using this technique. The electric energy consumption for the reaction was about 50% smaller by reducing the concentration of I-2 indicating that the IS process can be operate efficiently at low 12 concentration. The reaction was carried out for 4 h, and the HI concentration was increased by 26%. This amount was the same within 10% as the values calculated from the total loaded electricity. In order to decrease the overpotential at the anode side, small amount of HI was added to the anode side solution. The total voltage was reduced by 0.03 V by the addition of III. 9 (C) 2004 Elsevier B.V. All rights reserved.
机译:使用电化学膜反应器成功地将热化学IS过程中的本生反应(SO2 + I-2 + 2H(2)O = H2SO4 + 2HI)用于产生氢气。 H 2 SO 4和HI分别浓缩在反应器的阳极侧和阴极侧。 1,是该过程中循环化学品的主要成分,并且反应器出口处的12浓度降低了约。 93%通过使用此技术。通过降低I-2的浓度,反应的电能消耗减少了约50%,这表明IS工艺可以在低12浓度下有效运行。反应进行4小时,HI浓度增加26%。该量与从总负载电量计算出的值相差10%以内。为了减少阳极侧的过电势,将少量HI加入到阳极侧溶液中。通过添加III,总电压降低了0.03V。 9(C)2004 Elsevier B.V.保留所有权利。

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