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Rhodium catalysts build into the structure of a silicate support in the hydroformylation of alkenes

机译:在烯烃的加氢甲酰化反应中,铑催化剂内置于硅酸盐载体的结构中

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Rhodium is build into a nano-structured calcium silicate during the synthesis of the silicate. Thereby, it was desired to create a robust heterogeneous catalyst, which does not suffer from catalyst leaching like rhodium impregnated on a pre-formed silicate. While this was achieved, the silicate structure was adversely affected by the incorporation of rhodium — the surface area and pore volume of the material were found to be comparatively low. Alcohol and acid washing were tested to address this issue. The alcohol treatment proved detrimental as catalytic material was leached from the silicate. The acid washed rhodium containing calcium silicate was quite active in the hydroformylation of alkenes and did not suffer loss of catalyst into the product phase. Acid treated rhodium containing silicates were more active than their untreated counterparts but less selective due to access to the rhodium centers being opened.
机译:在硅酸盐的合成过程中,铑被嵌入纳米结构的硅酸钙中。因此,期望创建一种坚固的非均相催化剂,其不像浸渍在预先形成的硅酸盐上的铑那样遭受催化剂浸出。在达到这一目标的同时,铑的掺入对硅酸盐结构产生了不利影响,发现该材料的表面积和孔体积相对较低。测试了酒精和酸洗以解决该问题。事实证明,醇处理不利于催化材料从硅酸盐中浸出。酸洗过的含铑的硅酸钙在烯烃的加氢甲酰化中非常活跃,并且不会损失催化剂进入产物相。酸处理过的含铑硅酸盐比未处理过的硅酸盐更有活性,但由于进入铑中心的通道选择性较低。

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