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材料科学中蛋壳废弃物的研究现状:催化、药物应用及机械化学方面的最新进展

State-of-the-Art of Eggshell Waste in Materials Science: Recent Advances in Catalysis, Pharmaceutical Applications, and Mechanochemistry.

作者信息

Baláž Matej, Boldyreva Elena V, Rybin Dmitry, Pavlović Stefan, Rodríguez-Padrón Daily, Mudrinić Tihana, Luque Rafael

机构信息

Department of Mechanochemistry, Institute of Geotechnics, Slovak Academy of Sciences, Košice, Slovakia.

Department of Solid State Chemistry, Novosibirsk State University, Novosibirsk, Russia.

出版信息

Front Bioeng Biotechnol. 2021 Jan 27;8:612567. doi: 10.3389/fbioe.2020.612567. eCollection 2020.

Abstract

Eggshell waste is among the most abundant waste materials coming from food processing technologies. Despite the unique properties that both its components (eggshell, ES, and eggshell membrane, ESM) possess, it is very often discarded without further use. This review article aims to summarize the recent reports utilizing eggshell waste for very diverse purposes, stressing the need to use a mechanochemical approach to broaden its applications. The most studied field with regards to the potential use of eggshell waste is catalysis. Upon proper treatment, it can be used for turning waste oils into biodiesel and moreover, the catalytic effect of eggshell-based material in organic synthesis is also very beneficial. In inorganic chemistry, the eggshell membrane is very often used as a templating agent for nanoparticles production. Such composites are suitable for application in photocatalysis. These bionanocomposites are also capable of heavy metal ions reduction and can be also used for the ozonation process. The eggshell and its membrane are applicable in electrochemistry as well. Due to the high protein content and the presence of functional groups on the surface, ESM can be easily converted to a high-performance electrode material. Finally, both ES and ESM are suitable for medical applications, as the former can be used as an inexpensive Ca source for the development of medications, particles for drug delivery, organic matrix/mineral nanocomposites as potential tissue scaffolds, food supplements and the latter for the treatment of joint diseases, in reparative medicine and vascular graft producing. For the majority of the above-mentioned applications, the pretreatment of the eggshell waste is necessary. Among other options, the mechanochemical pretreatment has found an inevitable place. Since the publication of the last review paper devoted to the mechanochemical treatment of eggshell waste, a few new works have appeared, which are reviewed here to underline the sustainable character of the proposed methodology. The mechanochemical treatment of eggshell is capable of producing the nanoscale material which can be further used for bioceramics synthesis, dehalogenation processes, wastewater treatment, preparation of hydrophobic filters, lithium-ion batteries, dental materials, and in the building industry as cement.

摘要

蛋壳废料是食品加工技术产生的最丰富的废料之一。尽管其两种成分(蛋壳,ES,和蛋壳膜,ESM)具有独特的性质,但它常常被丢弃而未作进一步利用。这篇综述文章旨在总结近期将蛋壳废料用于多种不同用途的报道,强调需要采用机械化学方法来拓宽其应用范围。关于蛋壳废料潜在用途研究最多的领域是催化。经过适当处理后,它可用于将废油转化为生物柴油,此外,基于蛋壳的材料在有机合成中的催化作用也非常有益。在无机化学中,蛋壳膜常被用作纳米颗粒生产的模板剂。这类复合材料适用于光催化。这些生物纳米复合材料还能够还原重金属离子,也可用于臭氧化过程。蛋壳及其膜在电化学中也有应用。由于蛋白质含量高且表面存在官能团,ESM可轻松转化为高性能电极材料。最后,ES和ESM都适用于医学应用,前者可作为开发药物的廉价钙源、药物递送颗粒、作为潜在组织支架的有机基质/矿物纳米复合材料、食品补充剂,后者可用于治疗关节疾病、再生医学和血管移植物生产。对于上述大多数应用,蛋壳废料的预处理是必要的。在其他选择中,机械化学预处理已占据了不可或缺的地位。自上一篇关于蛋壳废料机械化学处理的综述文章发表以来,出现了一些新的研究成果,在此进行综述以强调所提出方法的可持续性。蛋壳的机械化学处理能够生产纳米级材料,该材料可进一步用于生物陶瓷合成、脱卤过程、废水处理、疏水过滤器制备、锂离子电池、牙科材料以及建筑行业中的水泥。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b68/7873488/53ab70e2e26f/fbioe-08-612567-g0001.jpg

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