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利用富含生物乙醇木质素的橄榄石残渣开发电纺纳米结构和蓖麻油结构。

Bioethanol lignin-rich residue from olive stones for electrospun nanostructures development and castor oil structuring.

机构信息

Pro(2)TecS - Chemical Product and Process Technology Research Center, Department of Chemical Engineering and Materials Science, Universidad de Huelva, ETSI, Campus de "El Carmen", Huelva 21071, Spain.

Instituto de Ciencias Forestales (ICIFOR-INIA, CSIC), Ctra de la Coruña Km 7.5, Madrid 28040, Spain.

出版信息

Int J Biol Macromol. 2024 Jan;255:128042. doi: 10.1016/j.ijbiomac.2023.128042. Epub 2023 Nov 17.

Abstract

This work describes the chemical and structural characterization of a lignin-rich residue from the bioethanol production of olive stones and its use for nanostructures development by electrospinning and castor oil structuring. The olive stones were treated by sequential acid/steam explosion pretreatment, further pre-saccharification using a hydrolytic enzyme, and simultaneous saccharification and fermentation (PSSF). The chemical composition of olive stone lignin-rich residue (OSL) was evaluated by standard analytical methods, showing a high lignin content (81.3 %). Moreover, the structural properties were determined by Fourier-transform infrared spectroscopy, nuclear magnetic resonance, and size exclusion chromatography. OSL showed a predominance of β-β' resinol, followed by β-O-4' alkyl aryl ethers and β-5' phenylcoumaran substructures, high molecular weight, and low S/G ratio. Subsequently, electrospun nanostructures were obtained from solutions containing 20 wt% OSL and cellulose triacetate with variable weight ratios in N, N-Dimethylformamide/Acetone blends and characterized by scanning electron microscopy. Their morphologies were highly dependent on the rheological properties of polymeric solutions. Gel-like dispersions can be obtained by dispersing the electrospun OSL/CT bead nanofibers and uniform nanofiber mats in castor oil. The rheological properties were influenced by the membrane concentration and the OSL:CT weight ratio, as well as the morphology of the electrospun nanostructures.

摘要

这项工作描述了橄榄石生物乙醇生产中富含木质素的残渣的化学和结构特性,并利用其通过静电纺丝和蓖麻油结构开发纳米结构。橄榄石经过顺序酸/蒸汽爆破预处理、使用水解酶进行预糖化,以及同时糖化和发酵(PSSF)处理。通过标准分析方法评估了橄榄石木质素丰富残渣(OSL)的化学成分,结果表明其木质素含量很高(81.3%)。此外,通过傅里叶变换红外光谱、核磁共振和尺寸排阻色谱法确定了其结构特性。OSL 以β-β'树脂醇为主,其次是β-O-4'烷基芳基醚和β-5'苯基香豆烷亚结构,具有高分子量和低 S/G 比。随后,从含有 20wt% OSL 和纤维素三醋酸酯的溶液中通过静电纺丝获得纳米结构,其在 N,N-二甲基甲酰胺/丙酮混合物中的重量比可变,并通过扫描电子显微镜进行了表征。它们的形态高度依赖于聚合物溶液的流变性能。通过在蓖麻油中分散静电纺丝的 OSL/CT 珠状纳米纤维和均匀的纳米纤维垫,可以获得凝胶状分散体。流变性能受到膜浓度、OSL:CT 重量比以及静电纺纳米结构形态的影响。

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