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Effect of polymer concentration on the depolymerization of sodium alginate by the solution plasma process

机译:溶液等离子体工艺中聚合物浓度对海藻酸钠解聚的影响

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Depolymerization of alginate was accessed, for the first time, by the plasma treatment in solution called solution plasma process (SPP). The process was done by applying an electrical discharge into a reactor containing sodium alginate aqueous solution. The key of the production is the generation of reactive species induced by the plasma in a liquid environment that can lead to the scission of polymer chains. Effect of polymer concentration on the SPP processing parameters and the depolymerization efficiency were studied. Three concentrations of sodium alginate solutions, i.e., 0.2, 0.5, and 0.9 %w/v, were prepared. The results showed that increasing concentration of the alginate solution decreased the applied voltage required for the generation of plasma. Optical emission spectra demonstrated that the generation of reactive species was the highest at the lowest alginate concentration (i.e. 0.2 %w/v). Therefore, molecular weight reduction of this concentration after the SPP was more remarkable than the others. The most significant species required for the depolymerization of alginate was the reactive hydrogen species. Molecular weight distributions (MWD) of the obtained low molecular weight alginates (LMALGs) for all concentrations were narrow. Furthermore, reduction trends of molecular weight and viscosity of alginate with varying operation times indicated that the depolymerization of alginate in aqueous solution by the SPP was affected by the combined contribution of two factors: (1) the amount of reactive species generated during the process and (2) the degree of chain entanglement of the polymers.
机译:通过在溶液中进行等离子体处理(称为溶液等离子体工艺(SPP)),首次实现了藻酸盐的解聚。通过向包含藻酸钠水溶液的反应器中施加放电来完成该过程。生产的关键是在液体环境中由等离子体诱导的反应性物种的产生,这可能导致聚合物链断裂。研究了聚合物浓度对SPP工艺参数和解聚效率的影响。制备了三种浓度的藻酸钠溶液,即0.2、0.5和0.9%w / v。结果表明,增加藻酸盐溶液的浓度会降低产生血浆所需的施加电压。光学发射光谱表明,在最低藻酸盐浓度(即0.2%w / v)下,反应物种的产生最高。因此,在SPP之后该浓度的分子量降低比其他的更显着。海藻酸盐解聚所需的最重要的物质是反应性氢物质。所有浓度的所得低分子量藻酸盐(LMALG)的分子量分布(MWD)均较窄。此外,随着操作时间的变化,藻酸盐的分子量和粘度的降低趋势表明,SPP在水溶液中对藻酸盐的解聚受到两个因素的综合影响:(1)在此过程中产生的反应性物种的数量和(2)聚合物的链缠结度。

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