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Thermal behaviour of NaBH4-sodalites with alumosilicate framework:Influence of cage water content and the surrounding conditions

机译:硅铝酸盐框架的NaBH4-钠钠盐的热行为:网箱含水量和周围条件的影响

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Sodalites Na_8[AlSiO_4]_6(BH_4)_1.8(H_3O_2)_(0.2) and Na_8[AlSiO_4]_6(BH_4)(H_3O-2)_(0.5)(CO_3)_(0.25)(H_2O) were examined to characterize the influence of the mixed cage fillings and the surroundings on the thermal behaviour of enclathrated BH_4~- and the stability of the alumosilicate framework. The samples were investigated in a NaCl matrix during temperature dependent IR-measurements (T1R) and by thermal analysis in inert atmosphere (helium) and in synthetic air. The thermal products were further characterized by XRD and SEM/EDS.It could be shown that the extent of the BH_4- decomposition strongly depends on the cage-fillings of the individual sodalite phase and on the environmental experimental conditions. At low to medium temperatures hydrolysis of BH_4~- by water molecules from decomposition of H_3O_2~-H_2O/CO_3~2-templates leads to B(OH)_4-/BH_3OH~- and via subsequent dehydration to BO(OH)_2~-and finally BO_2~-. At elevated temperatures direct oxidation of BH_4~-^to BO_2~- occurs inside the sodalite cages. Further heating results in sodalite framework destruction and finally formation of nepheline with some boron in its structure besides some unknown polymeric borates outside the alumosilicate phase. Framework stability of the sodalites was found to decrease in the direction → heating in NaCl → heating in He-atmosphere -> heating in air.
机译:检测方钠石Na_8 [AlSiO_4] _6(BH_4)_1.8(H_3O_2)_(0.2)和Na_8 [AlSiO_4] _6(BH_4)(H_3O-2)_(0.5)(CO_3)_(0.25)(H_2O)表征了混合笼填充物和周围环境对包封的BH_4〜-的热行为和铝硅酸盐骨架的稳定性的影响。在温度依赖性红外测量(T1R)期间,在NaCl基质中对样品进行了研究,并在惰性气氛(氦气)和合成空气中通过热分析进行了研究。通过XRD和SEM / EDS对热产物进行了进一步的表征。可以证明BH_4-的分解程度在很大程度上取决于单个方钠石相的笼填充和环境实验条件。在中低温度下,H_3O_2〜-H_2O / CO_3〜2-模板分解而使水分子水解BH_4〜-生成B(OH)_4- / BH_3OH〜-,并随后脱水为BO(OH)_2〜-最后是BO_2〜-。在高温下,在方钠石笼内直接发生BH_4〜-^到BO_2〜-的氧化。进一步加热会导致方钠石骨架破坏,最终形成霞石结构,其结构中除了铝硅酸盐相之外的一些未知的聚合物硼酸盐外,还带有一些硼。发现方钠石的骨架稳定性在以下方向上降低了:→在NaCl中加热→在He大气中加热–>在空气中加热。

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