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首页> 外文期刊>Chemistry: A European journal >Impact of Nonthermal Atmospheric Plasma on the Structure of Cellulose: Access to Soluble Branched Glucans
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Impact of Nonthermal Atmospheric Plasma on the Structure of Cellulose: Access to Soluble Branched Glucans

机译:非热大气等离子体对纤维素结构的影响:获得可溶性支链葡聚糖的途径

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摘要

We have investigated the effect of non-thermal atmospheric plasma (NTAP) on the structure of microcrystalline cellulose. In particular, by means of different characterization methods, we demonstrate that NTAP promotes the partial cleavage of the -1,4 glycosidic bond of cellulose leading to the release of short-chain cellodextrins that are reassembled in situ, preferentially at the C6 position, to form branched glucans with either a glucosyl or anhydroglucosyl terminal residue. The ramification of cellulosic chain induced by NTAP yields branched glucans that are soluble in DMSO or in water, thus opening a straightforward access to processable glucans from cellulose. Importantly, the absence of solvent and catalyst considerably facilitates downstream processing as compared to (bio)catalytic processes which typically occur in diluted conditions.
机译:我们已经研究了非热大气等离子体(NTAP)对微晶纤维素结构的影响。特别是,通过不同的表征方法,我们证明NTAP可以促进纤维素的-1,4糖苷键的部分裂解,从而导致短链纤维糊精的释放,这些短链纤维糊精原位重组为C6,形成具有葡糖基或脱水葡糖基末端残基的支链葡聚糖。由NTAP诱导的纤维素链的分枝产生了支链葡聚糖,可溶于DMSO或水中,因此可以直接从纤维素中获得可加工的葡聚糖。重要的是,与通常在稀释条件下发生的(生物)催化过程相比,不存在溶剂和催化剂大大促进了下游加工。

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