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Regeneration of Supported Ammonia Borane to Achieve Higher Yield

机译:支持的氨基氨基的再生以实现更高的产量

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摘要

Ammonia borane is considered as a potential hydrogen storage material due to its high hydrogen content, ease of handling, and moderate dehydrogenation temperature. The regeneration of ammonia borane (AB) is essential for its use as a sustainable hydrogen storage material. In the current work, we attempted to regenerate AB from the post heated product (spent fuel, i. e., products obtained after hydrogen release) through a digestion mediated B-O-Croute. We have also demonstrated the dehydrogenation and regeneration compatibility with the use of a cost-effective layered aluminosilicate support material, bentonite (gBen), and this facilitated both the dehydrogenation and regeneration processes. The isothermal dehydrogenation study suggested that the support material helped to improve the hydrogen release kinetics from AB at lower temperatures. During the regeneration process, gBen supported AB is observed to provide a higher yield (71%) of the digested compound ammonium tetramethylborate (ATMB) as against post heated AB (with 35% in case of pure AB to post AB to ATMB), which finally resulted in increasing the overall regener- ation yield of AB. The regeneration of AB with high yield and purity is confirmed by 11 BNMR and XRD analysis.
机译:硼烷被认为是由于其高氢含量,易于处理和中等脱氢温度而被认为是潜在的氢储存材料。氨基氨(AB)的再生对于用作可持续氢储存材料至关重要。在当前的工作中,我们试图通过消化介导的B-O-croute从加热产物(耗资燃料,在释放氢后获得的产品)再生AB。我们还证明了与使用具有成本效益的分层铝硅酸盐支撑材料,膨润土(GBEN)的脱氢和再生兼容性,这促进了脱氢和再生过程。等温脱氢研究表明,支撑材料有助于改善较低温度下AB的氢释放动力学。在再生过程中,观察到GBEN支持的AB可提供更高的产量(71%),消化的化合物四甲基硼酸铵(ATMB),与后加热的AB相比(在35%的情况下,如果纯AB到ABSB,则为35%)最终导致增加了AB的整体再生产量。通过11 BNMR和XRD分析证实了AB的再生。

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