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Solvent fractionation of softwood and hardwood kraft lignins for more efficient uses: Compositional, structural, thermal, antioxidant and adsorption properties

机译:软木和硬木牛皮纸的溶剂分馏用于更有效的用途:组成,结构,热,抗氧化剂和吸附性能

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摘要

This work summarizes the impact of solvent fractionation on the chemical structure, antioxidant activity, heating values, and thermal and adsorption properties of industrial hardwood and softwood kraft lignins. The aim of the research was to develop a simple approach for obtaining lignin fractions with tailored properties for applications in certain materials. Four common industrial solvents, namely, ethyl acetate, ethanol, methanol and acetone, in various combinations, were found to be efficient for separating spruce and eucalyptus kraft lignins into fractions with low polydispersities. The ethanol fraction of spruce and the ethyl acetate fraction of eucalyptus afforded the highest yields. Gel-permeation chromatography analysis was used to evaluate the efficiency of the chosen solvent combination for lignin fractionation. The composition and structure of the lignin material was characterized by elemental analysis, analytical pyrolysis (Py-GC/MS/FID) and P-31 NMR spectro-scopy. The thermal properties of the lignin samples were studied using thermogravimetric analysis. Proximate analysis data (ash, volatile components, organic matter and fixed carbon) was obtained through the direct measurement of weight changes in each experimental curve, and the high heating values (in MJ/kg) were calculated according to equations suggested in the literature. The adsorption properties of fractionated kraft lignins were studied using methylene blue dye. The correlations observed between molecular weight, composition and functionality and the thermal, radical scavenging and adsorption properties of the lignin fractions provides useful information for selecting the appropriate solvent combinations for specific applications of lignin raw materials (including their use as antioxidants, biofuels or sorbents in water treatment processes).
机译:这项工作总结了溶剂分馏对工业硬木和软木牛皮纸的化学结构,抗氧化活性,加热值和热和吸附性能的影响。该研究的目的是开发一种简单的方法,可以在某些材料中为木质素分数获得具有量身定制的应用。发现四种常见的产业溶剂,即乙酸乙酯,乙醇,甲醇和丙酮,以各种组合被发现有效地将云杉和桉树牛皮甘链分离成具有低多分散性的级分。肺血管的乙醇分数和桉树的乙酸乙酯级分提供了最高收率。使用凝胶渗透色谱分析来评估所选择的溶剂组合对木质素分馏的效率。通过元素分析,分析热解(Py-GC / MS / FID)和P-31 NMR光谱 - Scopy的特征在于木质素材料的组成和结构。使用热重分析研究了木质素样品的热性质。通过直接测量每个实验曲线的重量变化获得近似分析数据(灰,挥发性组分,有机物和固定碳),并且根据文献中提出的等式计算高加热值(在MJ / kg中)。使用亚甲基蓝色染料研究分级牛皮纸的吸附性能。分子量,组成和官能度和热性,自由基清除和吸附性之间观察到的木质素级分的相关性提供了用于选择适当的木质素原料的特定应用的适当溶剂组合(包括它们作为抗氧化剂,生物燃料或吸附剂的用途水处理过程)。

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