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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >HAN and ADN as liquid ionic monopropellants: Thermal and catalytic decomposition processes
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HAN and ADN as liquid ionic monopropellants: Thermal and catalytic decomposition processes

机译:HAN和ADN作为液体离子单推进剂:热和催化分解过程

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摘要

Binary HAN and ADN aqueous solutions have been synthesized, then thermally and catalytically decomposed. Binary HAN mixtures were prepared with different concentrations: 95,80 and 60 wt.%. Whereas ADN solution contains are: 75, 60 and 50 wt.%. The candidate catalysts were prepared by impregnation of alumina doped by lanthanum oxide with active phase precursors: iridium for HAN and copper oxide for ADN and Characterized by transmission electron microscopy, X-ray diffraction and chemisorp-tion. The decomposition processes were followed by thermal analysis and a constant batch reactor. This work shows the essential effect of monopropellant concentrations to determine the best green propellants for industrial applications as reaction control systems. Moreover, HAN and ADN solutions are more efficient for catalytic decomposition due to the absence of stabilizer to inhibit catalysts. The (10%)Ir/Al2O3-La2O3 + HAN_(95%) and the (10%)CuO/Al2O3-La2O3 + ADN_(75%) associations show lower decomposition temperatures, larger reaction rates and leads to higher amount of gas phase products, giving the most efficient systems.
机译:已合成二元HAN和ADN水溶液,然后进行热催化分解。制备具有不同浓度的二元HAN混合物:95,80和60 wt。%。而ADN溶液含有:75、60和50 wt。%。候选催化剂是通过用活性相前体浸渍镧氧化物掺杂的氧化铝而制备的:铱用于HAN,氧化铜用于ADN,并通过透射电子显微镜,X射线衍射和化学同位素表征。分解过程之后进行热分析和恒定间歇反应器。这项工作表明了单一推进剂浓度对于确定工业应用中作为反应控制系统的最佳绿色推进剂的基本作用。而且,由于不存在抑制催化剂的稳定剂,HAN和ADN溶液对于催化分解更有效。 (10%)Ir / Al2O3-La2O3 + HAN_(95%)和(10%)CuO / Al2O3-La2O3 + ADN_(75%)缔合显示较低的分解温度,较大的反应速率并导致较高的气相数量产品,提供最有效的系统。

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