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Synthesis of Fe3O4 core/alumina shell nanospheres for partial hydrogenation of benzene

机译:Fe3O4核/氧化铝烯烃纳米烯烃的合成

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We report a novel synthesis of Fe3O4 core/alumina shell nanosphere composite for partial hydrogenation of benzene. Fe3O4 core/alumina shell (MFeCA) structured nanospheres were obtained by reducing a hematite core/alumina precursor shell (HFeCAP) nanosphere precursor under H2/N2 gas flow. The magnetic alumina nanospheres (MFeCAs) possess not only uniform size (180~350nm) but also adjusted saturation magnetization value. A novel Ru-based magnetic catalyst was synthesized for the partial hydrogenation of benzene in magnetically stabilized bed (MSB). The performance of magnetic catalyst in MSB demonstrates that it's an effective and highly selective method for partial hydrogenation of benzene. The chain regime of the MSB reactor's operation conditions is responsible for the high selectivity of cyclohexene.
机译:我们报告了一种新的Fe3O4核/氧化铝壳纳米晶体复合材料,用于苯的部分氢化。通过在H 2 / N 2气体流下还原赤铁矿核/氧化铝前体壳(HFECAP)纳米光学前体来获得Fe3O4核/氧化铝壳(MFECA)结构纳米球。磁性氧化铝纳米球(MFECAS)不仅具有均匀的尺寸(180〜350nm),而且具有调节的饱和磁化强度值。合成了一种新型ru基磁性催化剂,用于在磁稳定床(MSB)中苯的部分氢化。磁性催化剂在MSB中的性能证明了苯的部分氢化是一种有效且高度选择的方法。 MSB反应器的操作条件的链条负责环己烯的高选择性。

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