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Cobalt-boron loaded thermal activated Turkish sepiolite composites (Co-B@tSe) as a catalyst for hydrogen delivery

机译:负载钴硼的热活化土耳其海泡石复合材料(Co-B @ tSe)作为氢输送的催化剂

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Cobalt-boron loaded thermal activated sepiolite composites (Co-B@tSe) are prepared with an impregnation chemical reduction method and calcination step for use as a catalyst for sodium borohydride (NaBH4) hydrolysis, solvolysis, and methanolysis. The catalytic activity of Co-B@tSe can be improved by using a thermal-treated raw sepiolite as a catalyst support (Eskisehir, Turkey). The catalysts are analyzed using XRD, XRF, FT-IR, BET, DTA/TG, SEM/EDS and, TEM measurements. The catalytic performance for hydrogen generation is evaluated at room temperature. Research shows that cobalt-impregnated, heat treated, raw sepiolite at 500 degrees C (Sample B-2) exhibits a high boron loading ability. These conditions, in conjunction with an appropriate calcination treatment, can improve catalytic activity. When the Co-B@tSe, in the form of Co3BO5 sized 6 +/- 1.8 nm, is dispersed on sepiolite channels, the catalyzed hydrogen generation rate (HGR) shows a trend of more methanolysis than hydrolysis at room temperature.
机译:钴-硼负载的热活化海泡石复合材料(Co-B @ tSe)采用浸渍化学还原法和煅烧步骤制备,用作硼氢化钠(NaBH4)水解,溶剂分解和甲醇分解的催化剂。通过使用热处理的原始海泡石作为催化剂载体,可以提高Co-B @ tSe的催化活性(土耳其,埃斯基谢希尔)。使用XRD,XRF,FT-IR,BET,DTA / TG,SEM / EDS和TEM测量分析催化剂。在室温下评估产生氢的催化性能。研究表明,在500摄氏度(样品B-2)下,经过钴浸渍,热处理的粗制海泡石具有很高的硼负载能力。这些条件,加上适当的煅烧处理,可以提高催化活性。当以3 +/- 5 nm大小的Co3BO5形式的Co-B @ tSe分散在海泡石通道上时,催化的氢生成速率(HGR)表现出比室温下水解更多的甲醇分解趋势。

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