Purity and structural composition of lignin isolated from Miscanthus x giganteus by sub-critical water extraction with associated modifiers

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引用次数: 4

Abstract

Lignin is an industrial by-product produced from the pulping and paper industry, where the process generates lignin in the form of lignosulphonates. While there are many applications for lignin, there are all low value and attempts to add value to lignin are hindered by its complex physicochemical nature and the presence of sulphur. Adopting the biorefining concept, the study evaluates the impact of direct (DE) and sequential extraction (SE) of Miscanthus x giganteus using sub-critical water with associated modifiers; ethanol and carbon dioxide on the physical and chemical properties of the extracted lignin. Isolated lignins were characterised by a Fourier Transform Infrared Spectroscopy (FTIR). Although higher delignification was achieved by DE and SE about 81.5% and 58.0%, respectively, the lignin recovered from the SE process showed remarkably higher purity with 91.5%. Lignin recovery did not differ considerably for either processing method. FTIR revealed a qualitative reduction in the intensity of bonds corresponding to hydroxyl groups for the lignin derived from DE rather than SE processing routes. These indicated that the lignin derived from SE had potential for subsequent preparation in lignin value-added bio-based materials.
亚临界水萃取及相关改性剂对芒草木质素纯度及结构组成的影响
木质素是制浆和造纸工业产生的工业副产品,该过程产生木质素磺酸盐形式的木质素。虽然木质素有许多应用,但都是低价值的,并且由于其复杂的物理化学性质和硫的存在,木质素的增值尝试受到阻碍。采用生物精制的概念,对亚临界水和相关改性剂对芒草直接提取(DE)和顺序提取(SE)的影响进行了评价;乙醇和二氧化碳对提取木质素的理化性质的影响。用傅里叶变换红外光谱(FTIR)对分离的木质素进行了表征。虽然DE法和SE法的脱木质素率分别为81.5%和58.0%,但SE法回收的木质素纯度明显高于91.5%。两种处理方法的木质素回收率差异不大。FTIR显示,从DE而不是SE加工路线中获得的木质素的羟基对应的键强度定性降低。这表明SE衍生的木质素具有后续制备木质素增值生物基材料的潜力。
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