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Selective production of valuable chemicals from biomass by two-step conversion combining pre-oxidation and hydrothermal degradation

机译:通过两步转化结合预氧化和水热降解,从生物质中选择性生产有价值的化学物质

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摘要

Biomass is getting notable as a new energy resource to replace fossil resources and to restrain CO2 emission recently. However, it is obvious that the energy use of biomass is unsuitable for its limit of available amounts. Consequently, we investigated the possibility of new refinery scheme of biomass to utilize biomass as an alternative raw material to fossil resources with suggested two-step treatment method. We oxidized cellulose and biomass with H2O2 first and put the residue into hydrothermal condition to obtain some specific chemicals. Through the first oxidation of cellulose, 0.26 g/g-cellulose of organic acid was obtained, and 0.35 g/g-cellulose of oxalic acid was obtained under the catalytic condition. Both cedar and cellulose decreased their crystallinity through the first oxidation and increased their reactivity, we could obtain hydroxymethylfurfural(HMF) from cellulose and biomass through the hydrothermal degradation, 0.11 g/g-cellulose and 0.12 g/g-cedar respectively.
机译:生物质作为替代化石资源和抑制CO2排放的一种新能源正越来越受到关注。但是,很明显,生物质的能源使用不适合其可用量的限制。因此,我们通过提出的两步处理方法,研究了新的生物质提炼方案利用生物质作为化石资源替代原料的可能性。我们先用H2O2氧化纤维素和生物质,然后将残留物置于水热条件下,以获得一些特定的化学物质。通过纤维素的第一次氧化,在催化条件下获得0.26g / g-纤维素的有机酸,并且获得0.35g / g-纤维素的草酸。雪松和纤维素都通过第一次氧化降低了结晶度并提高了反应活性,我们可以通过水热降解从纤维素和生物质中分别获得羟甲基糠醛(HMF),分别为0.11 g / g纤维素和0.12 g / g雪松。

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