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Biotechnological strategies to produce levan: Mass transfer and techno-economical evaluation

机译:生物技术策略生产莱曼:大规模转移与技术经济评价

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Levan is a fructose polysaccharide with potential as a carrier for drug delivery systems due to its ability to form nanoparticles in water by a self-assembly phenomenon. In order to overcome drawbacks concerning its production by fermentative processes (long time for growing bacteria and downstreaming and purification steps), different enzymatic processes are studied. Specifically, a packed bed reactor with the enzyme in alginate beads, a monolithic reactor (with the immobilized enzyme) and a homogenous batch stirred tank (without enzyme immobilization) are proposed. The last one is used to determine the kinetics and to compare the efficacy of the heterogeneous reactors. Techno-economical evaluations show that, for packed bed reactor and monolithic reactor, fixed capital costs (around 500,000 (sic)) and production costs are similar (around 6000 (sic)/kg) in spite of the processes differences. Nanoparticles obtained by levan from alginate beads (2 mm) have a size around 230 nm whereas nanoparticles of 150 nm were obtained from the monolithic reactor and from the batch reactor. Finally, mass transfer models for those heterogeneous reactors highlight that monolithic reactor provides a low resistance to mass transport (0.031 s(-1)), whereas packed bed reactor increases that resistance (0.301 s(-1)) due to tortuosity and internal transport through beads.
机译:Levan是一种果糖多糖,具有作为药物递送系统的载体的载体,因为它通过自组装现象在水中形成纳米颗粒的能力。为了克服通过发酵方法产生的缺点(长时间生长细菌和下游和纯化步骤),研究了不同的酶法。具体地,提出了一种填充床反应器,其在藻酸盐珠粒中,一种整体反应器(用固定化酶)和均匀的批料搅拌罐(不含酶固定)。最后一个用于确定动力学并比较异质反应器的功效。技术经济评估表明,对于包装床反应器和单片反应堆,固定资本成本(约500,000(SIC))和生产成本类似(左右6000(SIC)/ kg),尽管流程差异。由藻酸盐珠(2mm)得到的纳米颗粒(2mM)的尺寸约为230nm,而从整体反应器和批量反应器获得150nm的纳米颗粒。最后,对于那些非均相反应器的传质模型突出显示整体反应器提供低耐受质量转运(0.031秒(-1)),而填充床反应器由于曲折和内部运输而增加阻力(0.301秒)(0.301秒(-1))通过珠子。

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