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Electron Beam Irradiation of Cellulosic Materials—Opportunities and Limitations

机译:纤维素材料的电子束辐照-机遇与局限

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摘要

The irradiation of pulp is of interest from different perspectives. Mainly it is required when a modification of cellulose is needed. Irradiation could bring many advantages, such as chemical savings and, therefore, cost savings and a reduction in environmental pollutants. In this account, pulp and dissociated celluloses were analyzed before and after irradiation by electron beaming. The focus of the analysis was the oxidation of hydroxyl groups to carbonyl and carboxyl groups in pulp and the degradation of cellulose causing a decrease in molar mass. For that purpose, the samples were labeled with a selective fluorescence marker and analyzed by gel permeation chromatography (GPC) coupled with multi-angle laser light scattering (MALLS), refractive index (RI), and fluorescence detectors. Degradation of the analyzed substrates was the predominant result of the irradiation; however, in the microcrystalline samples, oxidized cellulose functionalities were introduced along the cellulose chain, making this substrate suitable for further chemical modification.
机译:从不同的角度来看,纸浆的照射是令人关注的。当需要对纤维素进行改性时,主要是需要的。辐照可带来许多优势,例如节省化学药品,从而节省成本,并减少环境污染物。因此,在通过电子束辐照之前和之后分析了纸浆和解离的纤维素。分析的重点是纸浆中的羟基氧化为羰基和羧基,纤维素降解导致摩尔质量降低。为此,样品用选择性荧光标记物标记,并通过凝胶渗透色谱(GPC),多角度激光散射(MALLS),折射率(RI)和荧光检测器进行分析。被分析的底物的降解是辐射的主要结果。然而,在微晶样品中,氧化纤维素官能团沿纤维素链引入,使该底物适合进一步化学修饰。

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