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Extraction of Nanochitin from Marine Resources and Fabrication of Polymer Nanocomposites: Recent Advances

机译:从海洋资源中提取纳米立素和聚合物纳米复合材料的制备:最近的进展

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摘要

Industrial sea food residues, mainly crab and shrimp shells, are considered to be the most promising and abundant source of chitin. In-depth understanding of the biological properties of chitin and scientific advancements in the field of nanotechnology have enabled the development of high-performance chitin nanomaterials. Nanoscale chitin is of great economic value as an efficient functional and reinforcement material for a wide range of applications ranging from water purification to tissue engineering. The use of polymers and nanochitin to produce (bio) nanocomposites offers a good opportunity to prepare bioplastic materials with enhanced functional and structural properties. Most processes for nanochitin isolation rely on the use of chemical, physical or mechanical methods. Chitin-based nanocomposites are fabricated by various methods, involving electrospinning, freeze drying, etc. This review discusses the progress and new developments in the isolation and physico-chemical characterization of chitin; it also highlights the processing of nanochitin in various composite and functional materials.
机译:工业海洋食品残留物,主要是螃蟹和虾壳,被认为是几丁质的最有前途和丰富的源泉。深入了解纳米技术领域的甲壳素和科学进步的生物学性质,使高性能几丁质纳米材料的发展能够发展。纳米级甲蛋白是一种巨大的经济价值,作为一种高效的功能和加固材料,用于各种应用范围,范围从净水到组织工程。使用聚合物和纳米型蛋白产生(Bio)纳米复合材料提供了制备具有增强功能和结构性能的生物塑料材料的良好机会。大多数纳米型蛋白分离的方法依赖于使用化学,物理或机械方法。基于甲藻的纳米复合材料是通过各种方法制造的,涉及静电纺丝,冷冻干燥等。这篇评论探讨了几丁质的分离和物理化学表征中的进展和新的发展;它还突出了各种复合材料和功能材料中纳米型蛋白的处理。

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