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Hybrid Cellulose–Silica Materials from Renewable Secondary Raw Resources: An Eco‐friendly Method

机译:来自可再生二次原料的纤维素-二氧化硅杂化材料:一种生态友好的方法

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摘要

Hybrid organic–inorganic materials based on cellulose matrix and silica particles are obtained from wastes of the local paper recycling mill and sugarcane mill as renewable secondary raw materials. The performance comparison of these hybrid materials made from secondary raw materials against the materials made from pure, raw sources is discussed. The Fourier transform infrared spectra show that cellulose features prevail even at 43 wt% silica nanoparticles in the hybrid materials. Such a high content of silica originated from sugarcane bagasse ash and hollow glass microspheres contributes to the high thermal stability of the final composites, as seen by thermogravimetric analysis with very low water absorption. This one‐step approach of biobased hybrid materials represents an excellent way to produce high‐performance materials with high content of inorganic nanoparticles for a wide variety of applications like energy efficient building material completely cement‐free.
机译:基于纤维素基体和二氧化硅颗粒的有机-无机杂化材料是从当地造纸回收厂和甘蔗厂的废料中获得的,作为可再生的二级原料。讨论了这些由二级原材料制成的混合材料与由纯原材料制成的材料的性能比较。傅立叶变换红外光谱表明,即使杂化材料中的纳米二氧化硅颗粒含量为43%,纤维素特征仍占主导地位。通过甘蔗渣灰和中空玻璃微球所产生的如此高的二氧化硅含量有助于最终复合材料的高热稳定性,如通过热重分析法所见,其吸水率极低。这种生物基混合材料的一步式方法代表了一种生产具有高含量无机纳米粒子的高性能材料的绝佳方法,可用于多种应用,例如完全不含水泥的节能建筑材料。

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