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Multi-component extraction process of high added value compounds from microalgae with supercritical CO2: A technical and economic study

机译:超临界CO2微藻高附加值化合物的多组分提取过程:技术和经济研究

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摘要

In this work a multicomponent extraction process of high added value compounds (principally omega-3 fatty acids and carotenoids) from a microalgal matrix (Chiorella vulgaris), using supercritical CO2, was studied. Chlorella's metabolites were analyzed singularly, not as a pseudocomponent, and their affinities to the solvent were explored. The Simplified Broken and Intact Cell model was implemented in order to represent the extraction yields and to define the best conditions in terms of operative variables, ensuring the preservation of the bioactive and thermolabile properties of the extracted metabolites. Moreover, these conditions were chosen also for keeping carotenoids' solubility in supercritical CO2 very low, in order to separate them (residue stream) from fatty acids (extract stream) without further purification steps. All of these informations were used to implement a simulation of the process, optimizing the daily cycles and increasing the productivity. As last step, calculations of the energy and utilities' consumption for the estimation of the Operating Expense (OPEX) and Capital Expenditure (CAPEX), as starter point for a future industrial implementation of the process, were carried out. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在该工作中,研究了使用超临界CO2的微藻基质(主要ω-3脂肪酸和类胡萝卜素)的多组分提取过程,使用超临界CO2。单独分析小球藻的代谢物,不作为假致伪组分,并探讨它们对溶剂的亲和力。实现了简化的破裂和完整的细胞模型,以表示提取产率并在手术变量方面定义最佳条件,确保保存提取的代谢物的生物活性和热成像性质。此外,选择这些条件也被选择用于将类胡萝卜素的溶解度保持在超临界CO 2上非常低,以便在不进一步纯化步骤的情况下将它们(残留物流)分离(萃取物流)。所有这些信息都用于实施过程的模拟,优化日常周期并提高生产率。作为最后一步,进行了估计业务费用(OPEX)和资本支出(CAPEX)的能源和公用事业消费的计算,作为未来工程工艺的入学点。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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