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辅酶Q_(10)生物合成方法的研究进展 被引量:4
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作者 陈有为 陈学端 +3 位作者 丁点寒 邹丽梅 祁峰 黄建忠 《药物生物技术》 CAS 2017年第5期431-435,共5页
辅酶Q_(10)由醌环母核和聚异戊二烯疏水侧链组成,在电子传递链中起传递电子的作用。因其有抗脂质过氧化,参与细胞能量代谢和基因表达调控等功能备受研究者的关注。微生物法生产CoQ_(10)具有产物活性高、原料成本低并可以通过规模放大提... 辅酶Q_(10)由醌环母核和聚异戊二烯疏水侧链组成,在电子传递链中起传递电子的作用。因其有抗脂质过氧化,参与细胞能量代谢和基因表达调控等功能备受研究者的关注。微生物法生产CoQ_(10)具有产物活性高、原料成本低并可以通过规模放大提高生产能力等优点。因此清楚微生物法生产CoQ_(10)的生物合成途径,关键酶基因以及能够提高CoQ_(10)产量的发酵条件优化的方法策略对大规模工业化生产CoQ_(10)具有重要参考意义。 展开更多
关键词 辅酶Q10 对羟基苯二甲酸 异戊二烯焦磷酸 生物合成途径 关键酶
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Efficient aerobic oxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid on Ru/C catalysts 被引量:9
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作者 Lufan Zheng Junqi Zhao +2 位作者 Zexue Du Baoning Zong Haichao Liu 《Science China Chemistry》 SCIE EI CAS CSCD 2017年第7期950-957,共8页
2,5-Furandicarboxylic(FDCA) is a potential substitute for petroleum-derived terephthalic acid, and aerobic oxidation of5-hydroxymethylfurfural(HMF) provides an efficient route to synthesis of FDCA. On an activated car... 2,5-Furandicarboxylic(FDCA) is a potential substitute for petroleum-derived terephthalic acid, and aerobic oxidation of5-hydroxymethylfurfural(HMF) provides an efficient route to synthesis of FDCA. On an activated carbon supported ruthenium(Ru/C) catalyst(with 5 wt% Ru loading), HMF was readily oxidized to FDCA in a high yield of 97.3% at 383 K and 1.0 MPa O_2 in the presence of Mg(OH)_2 as base additive. Ru/C was superior to Pt/C and Pd/C and also other supported Ru catalysts with similar sizes of metal nanoparticles(1–2 nm). The Ru/C catalysts were stable and recyclable, and their efficiency in the formation of FDCA increased with Ru loadings examined in the range of 0.5 wt%–5.0 wt%. Based on the kinetic studies including the effects of reaction time, reaction temperature, O_2 pressure, on the oxidation of HMF to FDCA on Ru/C, it was confirmed that the oxidation of HMF to FDCA proceeds involving the primary oxidation of HMF to 2,5-diformylfuran(DFF) intermediate, and its sequential oxidation to 5-formyl-2-furancarboxylic acid(FFCA) and ultimately to FDCA, in which the oxidation of FFCA to FDCA is the rate-determining step and dictates the overall formation rate of FDCA. This study provides directions towards efficient synthesis of FDCA from HMF, for example, by designing novel catalysts more efficient for the involved oxidation step of FFCA to FDCA. 展开更多
关键词 aerobic oxidation 5-hydromethylfurfural 2 5-furandicarboxylic supported Ru catalyst base additives reaction mechanism
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