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在连续培养中的标度关系的存在:稳态完全由碳和氧摄取率的比率决定。

Existence of a scaling relation in continuous cultures of : the steady states are completely determined by the ratio of carbon and oxygen uptake rates.

作者信息

Maitra Shraddha, Narang Atul

机构信息

Department of Biochemical Engineering and Biotechnology, Indian Institute of Technology Delhi, Hauz Khas, New Delhi, 110016 India.

出版信息

Biotechnol Biofuels. 2019 Jan 28;12:19. doi: 10.1186/s13068-019-1357-3. eCollection 2019.

Abstract

BACKGROUND

Recently, we showed that steady-state continuous cultures of   follow the principles of growth on mixture of two complementary substrates. More precisely, when such cultures are fed with progressively higher concentrations of glucose at fixed dilution rate  = 0.1 h, oxygen mass-transfer coefficient  = 50 h, and oxygen solubility , they transition from glucose- to oxygen-limited growth through an intermediate dual-limited regime in which both glucose and oxygen are limiting, and ethanol is produced without loss of glucose. It is, therefore, of considerable interest to characterize the dual-limited regime. We found that the dual-limited regime occurs precisely when the operating parameters , , and satisfy the relation , where and denote g of glucose consumed per g of oxygen consumed in the carbon- and oxygen-limited regimes. In this work, our goal was to determine if the above characterization of the dual-limited regime holds over a wider range of , , and to understand why the dual-limited regime is determined by the dimensionless ratio .

RESULTS

To this end, we performed the foregoing experiments at three additional dilution rates ( = 0.07, 0.15, and 0.20 h) and one additional mass-transfer coefficient (  = 100 h). We find that the above characterization of the dual-limited regime is valid for these conditions as well. Furthermore, the boundaries of the dual-limited regime are determined by the dimensionless ratio , because the steady-state concentrations are completely determined by this ratio. More precisely, if the steady-state concentrations of biomass, glucose, oxygen, and ethanol are suitably scaled, they collapse into a single curve with as the independent variable.

CONCLUSION

The dual-limited regime is characterized by the relation over the entire range of operating condition 0.07 h ≤  ≤ 0.20 h and . Since the effect of all operating parameters is embedded in the single parameter , the dimensionless plot provides a powerful tool to compare, with only a handful of data, various ethanol-producing strains over a wide range of operating conditions.

摘要

背景

最近,我们发现[具体研究对象]的稳态连续培养遵循在两种互补底物混合物上生长的原理。更确切地说,当以固定稀释率(D = 0.1 h^{-1})、氧气传质系数(k_{L}a = 50 h^{-1})以及氧气溶解度[具体数值],用浓度逐渐升高的葡萄糖对这种培养物进行补料时,它们会从葡萄糖限制生长转变为氧气限制生长,中间经过一个双重限制阶段,在此阶段葡萄糖和氧气均为限制因素,并且在不消耗葡萄糖的情况下产生乙醇。因此,对双重限制阶段进行表征具有相当大的意义。我们发现,当操作参数(D)、(k_{L}a)、[其他参数]和[另一参数]满足关系[具体关系]时,恰好会出现双重限制阶段,其中(Y_{C})和(Y_{O})分别表示在碳限制和氧气限制阶段每消耗一克氧气所消耗的葡萄糖克数。在这项工作中,我们的目标是确定上述对双重限制阶段的表征在更广泛的(D)、(k_{L}a)范围内是否成立,并理解为什么双重限制阶段由无量纲比[具体比值]决定。

结果

为此,我们在另外三个稀释率((D = 0.07)、(0.15)和(0.20 h^{-1}))以及另外一个传质系数((k_{L}a = 100 h^{-1}))下进行了上述实验。我们发现,上述对双重限制阶段的表征在这些条件下同样有效。此外,双重限制阶段的边界由无量纲比[具体比值]决定,因为稳态浓度完全由该比值确定。更确切地说,如果对生物量、葡萄糖、氧气和乙醇的稳态浓度进行适当缩放,它们会塌缩为一条以[具体比值]为自变量的单一曲线。

结论

在整个操作条件范围(0.07 h^{-1} \leq D \leq 0.20 h^{-1})和[其他条件范围]内,双重限制阶段的特征是[具体关系]。由于所有操作参数的影响都包含在单一参数[具体比值]中,无量纲图提供了一个强大的工具,只需少量数据就能在广泛的操作条件下比较各种产乙醇菌株。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77e6/6348663/f51d88768201/13068_2019_1357_Fig1_HTML.jpg

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