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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >From Blue Bioeconomy toward Circular Economy through High-Sensitivity Analytical Research on Waste Blue Crab Shells
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From Blue Bioeconomy toward Circular Economy through High-Sensitivity Analytical Research on Waste Blue Crab Shells

机译:从蓝色生物经济到循环经济通过高敏感性分析研究垃圾壳壳

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Unlike calcite from geological origin, biogenic calcite from marine organisms have gained an increasing interest in the field of advanced materials due to their hierarchical three-dimensional (3D) nanostructure populated with a gradually distributed organic fraction and due to their porosity. Within the blue bioeconomy context, certain seafood species featuring residual biomineral mass ranging from 80 to 95% of the fresh body weight (bivalves, crustaceans, etc.) could be turned into added-value byproducts, provided that the ultrastructure and nanomorphology are preserved as in intact, native materials. Little is known about species-specific nanomorphology and its subtle chemistry when crab shells are exposed to thermal or mechanical stress for any potential waste industrial processing. We probed here the morphology and chemistry preservation in biogenic CaCO3 from claw shells of two common crustacean species, Callinectes sapidus and Carcinus aestuarii. We found that mechanical powdering results in their carotenoid preservation in micro- and nanosized porous particles with size distributions characteristic for each original color and that their Bouligand-type (twisted plywood) 3D nanomorphology is preserved during thermal treatment. The results suggest that such a waste biomaterial is suitable for potential industrial design steps toward added-value byproducts following the principles of circular economy for a sustainable society.
机译:与来自地质来源的方解石不同,由于其分层三维(3D)纳米结构,在海洋生物中,来自海洋生物的生物方解石在先进材料领域增加了较高的利益,这是由于它们的分层三维(3D)纳米结构,并且由于它们的孔隙率而填充。在蓝色生物经济背景下,可以将某些海鲜物种,从80-95%的新鲜体重(双甲壳,甲壳类动物等)的含量为10%至95%,所以提供了超微结构和纳米形态的副产品。完整的本土材料。当螃蟹壳暴露于任何潜在的废物工业加工时,螃蟹壳暴露于热或机械应力时,对物种特异性纳米形态及其微妙的化学知之甚少。我们在这里探讨了两种常见甲壳类动物爪壳的生物凝块中的形态和化学保存,Calloinectes Sapidus和癌症Aestuarii。我们发现机械粉末导致其类胡萝卜素保存在微型和纳米型多孔颗粒中,其尺寸分布为每种原始颜色,并且它们在热处理期间保存了它们的伯格兰型(双绞线)3D纳米形态。结果表明,这种废物生物材料适用于可持续社会循环经济原则之后为增加副产品的潜在工业设计步骤。

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