首页> 外文期刊>Cellulose Chemistry and Technology: International Journal for Physics, Chemistry and Technology of Cellulose and Lignin >LIGNOCELLULOSIC BIOMASS AS A SOURCE OF MICROCRYSTALLINE CELLULOSE - CHEMICAL AND TECHNOLOGICAL CHARACTERIZATION AND FUTURE PERSPECTIVES
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LIGNOCELLULOSIC BIOMASS AS A SOURCE OF MICROCRYSTALLINE CELLULOSE - CHEMICAL AND TECHNOLOGICAL CHARACTERIZATION AND FUTURE PERSPECTIVES

机译:木质纤维素生物量作为微晶纤维素的来源 - 化学和技术特征和未来的观点

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In this paper, agricultural waste (corn stover and wheat straw) was used for isolation of microcrystalline cellulose (MCC). Lignocellulosic biomass is widely available and applying smart technologies to valorise it will have a double benefit through environmental protection and achieving high-performance materials for targeted applications. The obtained MCC showed excellent features in terms of purity, physical-chemical properties and safety, as well. The methods applied for characterizing the materials were as follows: FT-IR, SEM, ICP-AAE and IC. Then, tablets were made by the compression method, using the isolated and purified MCC, as well as its commercially available counterpart. Excellent technological characteristics were confirmed by testing material compaction, compactibility, compressibility and drug release. This was one of the first tests in which Gamlen Tableting D was applied, especially in the case of using biomass, in the first phase, with prospects of application at a large scale, particularly, in the pharmaceutical industry.
机译:本文利用农业废弃物(玉米秸秆和麦秸)分离微晶纤维素(MCC)。木质纤维素生物质可广泛使用,将智能技术应用于valorise将通过环境保护和获得用于目标应用的高性能材料实现双重效益。所得MCC在纯度、理化性能和安全性方面均表现出优异的性能。用于表征材料的方法如下:FT-IR、SEM、ICP-AAE和IC。然后,使用分离纯化的MCC及其市售对应物,通过压缩方法制备片剂。通过测试材料的紧实性、紧实性、可压缩性和药物释放性,证实了其优良的工艺特性。这是第一阶段应用Gamlen片剂D的首批试验之一,尤其是在使用生物质的情况下,具有大规模应用前景,尤其是在制药行业。

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