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一种可扩展且可持续的从鸡毛中溶解和再生角蛋白过程的多尺度概念设计

Multiscale Conceptual Design of a Scalable and Sustainable Process to Dissolve and Regenerate Keratin from Chicken Feathers.

作者信息

Ferro Víctor R, Leiva Héctor, Cadena Erasmo, Valverde José Luis

机构信息

Department of Chemical Engineering, Universidad Autónoma de Madrid, 28049 Madrid, Spain.

Department of Green Chemistry and Technology, Ghent University, 9000 Gent, Belgium.

出版信息

Ind Eng Chem Res. 2023 Aug 16;62(34):13324-13339. doi: 10.1021/acs.iecr.3c01843. eCollection 2023 Aug 30.

Abstract

A multiscale strategy was used to conceptually design and economically analyze a scalable and sustainable process for dissolving and regenerating keratin from chicken feathers by using a sodium acetate-urea deep eutectic solvent as the reacting media. In this study, the recovery and recycling of the solvent were also considered. Moreover, molecular modeling of the solvent, keratin and its derivatives, property estimation of the corresponding mixtures, and simulation of the different process alternatives proposed, including the equipment sizing, estimation of energy needs, and economic analysis were presented. A quasi-planar cluster governed by H-bond interactions resulted in the most stable configuration of the deep eutectic solvent. Molecular models having molecular weights higher than 1.400 g/mol were created to represent the keratin species, where the most abundant amino acids in the feathers were included and conveniently ordered in the chain. Property estimations performed with the conductor-like screening model-real solvent succeeded in describing the main features of the interactions between the keratin derivatives and the solvents used. The process analysis performed on several alternatives showed that the process is technically and economically viable at the industrial scale, the costs being strongly dependent on the excess of both the solvent used to dissolve keratin and the water added for its regeneration. Several options to improve the process and reduce the costs are discussed.

摘要

采用多尺度策略,从概念上设计并对一个可扩展且可持续的工艺进行经济分析,该工艺使用醋酸钠-尿素低共熔溶剂作为反应介质,用于溶解和再生鸡毛中的角蛋白。在本研究中,还考虑了溶剂的回收和循环利用。此外,还介绍了溶剂、角蛋白及其衍生物的分子建模、相应混合物的性质估算,以及对所提出的不同工艺方案的模拟,包括设备选型、能源需求估算和经济分析。由氢键相互作用控制的准平面簇导致了低共熔溶剂最稳定的构型。创建了分子量高于1400 g/mol的分子模型来表示角蛋白物种,其中包含了羽毛中最丰富的氨基酸,并在链中方便地排列。使用导体类筛选模型-真实溶剂进行的性质估算成功地描述了角蛋白衍生物与所用溶剂之间相互作用的主要特征。对几种方案进行的工艺分析表明,该工艺在工业规模上在技术和经济上是可行的,成本强烈依赖于用于溶解角蛋白的溶剂和用于其再生所添加水的过量。讨论了几种改进工艺和降低成本的方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/913e/10863073/cca8f269e8ab/ie3c01843_0001.jpg

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