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Chitin and Cellulose Processing in Low-Temperature Electron Beam Plasma

机译:低温电子束等离子体中的几丁质和纤维素加工

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摘要

Polysaccharide processing by means of low-temperature Electron Beam Plasma (EBP) is a promising alternative to the time-consuming and environmentally hazardous chemical hydrolysis in oligosaccharide production. The present paper considers mechanisms of the EBP-stimulated destruction of crab shell chitin, cellulose sulfate, and microcrystalline cellulose, as well as characterization of the produced oligosaccharides. The polysaccharide powders were treated in oxygen EBP for 1–20 min at 40 °C in a mixing reactor placed in the zone of the EBP generation. The chemical structure and molecular mass of the oligosaccharides were analyzed by size exclusion and the reversed phase chromatography, FTIR-spectroscopy, XRD-, and NMR-techniques. The EBP action on original polysaccharides reduces their crystallinity index and polymerization degree. Water-soluble products with lower molecular weight chitooligosaccharides (weight-average molecular mass, Mw = 1000–2000 Da and polydispersity index 2.2) and cellulose oligosaccharides with polymerization degrees 3–10 were obtained. The 1H-NMR analysis revealed 25–40% deacetylation of the EBP-treated chitin and FTIR-spectroscopy detected an increase of carbonyl- and carboxyl-groups in the oligosaccharides produced. Possible reactions of β-1,4-glycosidic bonds’ destruction due to active oxygen species and high-energy electrons are given.
机译:通过低温电子束等离子体(EBP)进行多糖加工是寡糖生产中耗时且对环境有害的化学水解的有前途的替代方法。本文考虑了EBP刺激的蟹壳甲壳质,硫酸纤维素和微晶纤维素的破坏机理,以及所产生的寡糖的表征。在放置在EBP产生区的混合反应器中,在40°C的氧气EBP中将多糖粉末处理1-20分钟。通过尺寸排阻和反相色谱,FTIR光谱,XRD和NMR技术分析了寡糖的化学结构和分子量。 EBP对原始多糖的作用降低了其结晶度和聚合度。获得了分子量较低的壳寡糖(重均分子量,Mw = 1000–2000 Da,多分散指数2.2)和聚合度为3–10的纤维素低聚糖的水溶性产品。 1 H-NMR分析表明,经EBP处理的几丁质的脱乙酰度为25–40%,FTIR光谱检测到所产生的寡糖中羰基和羧基的增加。给出了由于活性氧和高能电子导致β-1,4-糖苷键破坏的可能反应。

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