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Thermochemical water-splitting for H_2 generation using sol-gel derived Mn-ferrite in a packed bed reactor

机译:在填充床反应器中使用溶胶-凝胶衍生的锰铁氧体进行H_2生成的热化学水分解

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This paper reports synthesis of Mn-ferrite using sol-gel technique, which involved the addition of Mn and Fe salts in ethanol followed by gelation using propylene oxide (PO). As-prepared gels were aged, dried and calcined rapidly upto different temperatures of 600 ℃-900 ℃ and quenched in air. Calcined powders obtained were analyzed using x-ray diffraction, BET surface area analyzer, scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The gels calcined rapidly upto 600 ℃ and quenched in air resulted into a phase pure Mn-ferrite with porousanoparticle morphology and higher SSA. The H_2 generation ability of the calcined powder was investigated by performing multiple thermochemical cycles in the Inconel packed bed reactor. In addition, the effects of several process parameters such as water-splitting temperature (T_(ws)), regeneration temperature (T_(reg)), regeneration time (t_(reg)) and volumetric flow rate of water (v_o) on H_2 generation ability of Mn-ferrite were investigated in detail.
机译:本文报道了使用溶胶-凝胶技术合成锰铁氧体的过程,该技术涉及在乙醇中添加锰和铁盐,然后使用环氧丙烷(PO)进行凝胶化。将所制备的凝胶老化,干燥并快速煅烧至600℃-900℃的不同温度,然后在空气中骤冷。使用X射线衍射,BET表面积分析仪,扫描电子显微镜(SEM)和透射电子显微镜(TEM)分析获得的煅烧粉末。凝胶快速煅烧至600℃并在空气中淬火,形成具有多孔/纳米颗粒形态和较高SSA的相纯锰铁氧体。通过在Inconel填充床反应器中进行多个热化学循环,研究了煅烧粉末的H_2生成能力。另外,水分解温度(T_(ws)),再生温度(T_(reg)),再生时间(t_(reg))和水的体积流量(v_o)等几个工艺参数对H_2的影响详细研究了锰铁氧体的生成能力。

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