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Biogenic silica-based microparticles obtained as a sub-product of the nanocellulose extraction process from pineapple peels

机译:从菠萝果皮中提取纳米纤维素作为纳米纤维素提取工艺的副产品

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摘要

Silica in plant tissues has been suggested as a component for enhancing mechanical properties, and as a physical barrier. Pineapples present in their shell and bracts rosette-like microparticles that could be associated to biogenic silica. In this study, we show for the first time that silica-based microparticles are co-purified during the extraction process of nanocellulose from pineapple (Ananas comosus). This shows that vegetable biomass could be an underappreciated source, not only for nanocellulose, but also for a highly valuable sub-product, like 10 µm biogenic rosette-like silica-based microparticles. The recovery yield obtained was 7.2 wt.%; based on the dried initial solid. Due to their size and morphology, the microparticles have potential applications as reinforcement in adhesives, polymer composites, in the biomedical field, and even as a source of silica for fertilizers.
机译:已经提出了植物组织中的二氧化硅作为增强机械性能的成分和物理屏障。菠萝存在于它们的壳和and片状的玫瑰花状微粒中,这些微粒可能与生物硅有关。在这项研究中,我们首次展示了在从菠萝(Ananas comosus)提取纳米纤维素的过程中,共纯化了基于二氧化硅的微粒。这表明,蔬菜生物质可能是一种未被充分认识的来源,不仅用于纳米纤维素,而且对于一种高价值的副产品,如10μm的类似生物的玫瑰花状硅基微粒,都可能是一种未被重视的来源。所获得的回收率为7.2重量%。基于干燥的初始固体。由于其尺寸和形态,这些微粒具有潜在的用途,可作为粘合剂,聚合物复合材料,生物医学领域的增强材料,甚至可用作肥料的二氧化硅来源。

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