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Development of a Fe/Mg-bearing metallurgical waste stabilized-CaO/NiO hybrid sorbent-catalyst for high purity H_2 production through sorption - enhanced glycerol steam reforming

机译:通过吸附 - 增强甘油蒸汽重整,通过吸附 - 增强的甘油蒸汽重整研制Fe / Mg冶金废弃物稳定-Ca / NiO杂交吸附剂催化剂的高纯度H_2产生

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In this work, a Fe/Mg-bearing metallurgical waste (upgraded slag oxide, UGSO) was, for the first time, investigated as a stabilizer for increasing the cyclic stability of CaO-based sorbents. The sorbents were prepared through the wet mixing of the ball-milled UGSO particles with the limestone-derived calcium citrate under sonication. The sorption capacity of samples containing different waste loadings (5, 10, 15, and 25 wt%) was studied for 18 carbonation/regeneration cycles under conditions similar to the sorption-enhanced glycerol steam reforming process. A significant improvement of the cyclic stability was observed for all doped sorbents; however, the sample with 10 wt% UGSO showed the highest sorption capacity among all tested samples. This optimum sorbent was further used to synthesize a UGSO stabilized CaO-NiO hybrid sorbent-catalyst material (20 wt% NiO loading), whose performance was tested in sorption-enhanced steam reforming of glycerol. A H-2 purity of around 95% was obtained in the pre-breakthrough period that lasted for about 30 min. In summary, the results showed a better stability of UGSO stabilized sorbents compared to pure CaO and a good performance of the CaO-UGSO10/NiO sorbent-catalyst hybrid material in the sorption-enhanced reforming process. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项工作中,首次研究了Fe / Mg含有冶金废物(升级的炉渣,UGSO)以增加CaO基吸附剂的循环稳定性的稳定剂。通过将球磨的UGSO颗粒与松开下的石灰石衍生的柠檬酸钙的湿混合制备吸附剂。在类似于吸附增强的甘油蒸汽重整过程的条件下,研究了含有不同废物载体(5,10,15和25wt%)的样品的吸附能力,用于18条碳酸化/再生循环。为所有掺杂的吸附剂观察到循环稳定性的显着改善;然而,具有10wt%UGSO的样品在所有测试样品中显示出最高的吸附能力。该最佳吸附剂还用于合成UGSO稳定的CaO-NiO杂交吸附剂 - 催化剂材料(20wt%NiOl负载),其性能在甘油的吸附增强蒸汽重整中进行了测试。在持续约30分钟的预突破期间获得H-2纯度约为95%。总之,结果表明,与纯CaO相比,UGSO稳定吸附剂的稳定性更好,并且在吸附增强的重整过程中的CaO-UgSO10 / NiO吸附剂催化剂杂化材料的良好性能。 (c)2019氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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