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Posidonia oceanica as a Renewable Lignocellulosic Biomass for the Synthesis of Cellulose Acetate and Glycidyl Methacrylate Grafted Cellulose

机译:大洋波塞德尼作为一种可再生的木质纤维素生物质用于合成乙酸纤维素和甲基丙烯酸缩水甘油酯接枝的纤维素

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摘要

High-grade cellulose (97% α-cellulose content) of 48% crystallinity index was extracted from the renewable marine biomass waste Posidonia oceanica using H2O2 and organic peracids following an environmentally friendly and chlorine-free process. This cellulose appeared as a new high-grade cellulose of waste origin quite similar to the high-grade cellulose extracted from more noble starting materials like wood and cotton linters. The benefits of α-cellulose recovery from P. oceanica were enhanced by its transformation into cellulose acetate >CA and cellulose derivative >GMA-C. Fully acetylated >CA was prepared by conventional acetylation method and easily transformed into a transparent film. >GMA-C with a molar substitution (MS) of 0.72 was produced by quenching Fenton’s reagent (H2O2/FeSO4) generated cellulose radicals with GMA. GMA grafting endowed high-grade cellulose from Posidonia with adsorption capability. >GMA-C removes β-naphthol from water with an efficiency of 47%, as measured by UV-Vis spectroscopy. After hydrolysis of the glycidyl group to glycerol group, the modified >GMA-C was able to remove p-nitrophenol from water with an efficiency of 92%, as measured by UV-Vis spectroscopy. α-cellulose and >GMA-Cs from Posidonia waste can be considered as new materials of potential industrial and environmental interest.
机译:遵循环保和无氯工艺,使用过氧化氢和有机过酸从可再生的海洋生物废料波西多尼亚海洋中提取了结晶度指数为48%的高级纤维素(α-纤维素含量为97%)。这种纤维素似乎是一种新的废旧高级纤维素,与从更贵重的原材料(例如木材和棉短绒)中提取的高级纤维素非常相似。通过转化为醋酸纤维素> CA 和纤维素衍生物> GMA-C ,可以增强从大假疟原虫中回收α-纤维素的好处。通过常规的乙酰化方法可以制备完全乙酰化的> CA ,并易于转化为透明膜。通过用FMA淬灭Fenton试剂(H2O2 / FeSO4)生成的纤维素自由基,制得摩尔取代度(MS)为0.72的> GMA-C 。 GMA接枝赋予了Posidonia高档纤维素以吸附能力。 > GMA-C (通过UV-Vis光谱法测得)从水中去除β-萘酚的效率为47%。缩水甘油基水解为甘油基后,改性的> GMA-C 能够从水中去除对硝基苯酚,效率为92%(通过UV-Vis光谱法测量)。波西多尼亚废物中的α-纤维素和> GMA-Cs 可被视为具有潜在工业和环境意义的新材料。

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