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A multiscale model approach for cell growth for lipids and pigments production by Haematococcus pluvialis under different environmental conditions.

机译:不同环境条件下Haematococcus Pluvialis的脂质和颜料的细胞生长的多尺度模型方法。

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The development of new technologies is essential to contrast the increasing global CO2 emissions.Microalgae-based biorefineries present a promising tool to reduce the presence of CO2 in our emissions (Bekirogullari et al 2018, Bekirogullari et al 2017).The development of processes for the simultaneous production of more than one product are essential to increase the possibility of making such biorefineries profitable (Garcia Prieto, Ramos, Estrada, Villar, & Diaz, 2017).Microalgae eukaryotic cells are able to produce pigments and lipids.The production of lipids and pigments could vary depending on the environmental stress conditions such as light intensity, nutrients concentration, medium salinity, and temperature (D'Alessandro & Antoniosi Filho, 2016), Haematococcus pluvialis produces lutein, |3-carotene, and lipids during growth, which makes it a potential candidate for the simultaneous production of high value products.H.pluvialis' division pattern ranges from the formation of two daughters up to 32 cells by multiple-fission (Shah, Liang, Cheng, & Daroch, 2016).New born cells achieve after a dimensional growth step a critical size point, where after that, they are able to keep growing and reproduce without any further input in the system, this point is called commitment point (CP).The achievement of an higher number of CP lead to a higher number of cells in the day/night cycle (Bisova & Zachleder, 2014).The above phenomena reaching one commitment point are described using a population balance model (PBM), in order to evaluate the influence of some environmental conditions on the cell growth.The model was fitted against synchronized experimental data, and then tested on a long duration experiment.
机译:新技术的发展对于对比的全球二氧化碳排放量是至关重要的。基于全球二氧化碳排放物。基于Gloalgae的生物猎物呈现了一个有前途的工具,以减少我们的排放中CO2的存在(Bekirogullari等,2017年Bekirogullari等,2017)。流程的发展同时生产多个产品对于提高盈利(Garcia Prieto,Ramos,Estrada,Villar,Diaz,2017)的可能性是必不可能力的.microalgae真核细胞能够产生颜料和脂质。脂质的产生和脂质颜料可以根据温度,营养素浓度,中盐度等环境压力条件而变化(D'Alessandro&Antoniosi Filho,2016),Haematococcus Pluvialis在生长期间产生叶黄素,| 3 - 胡萝卜素和脂质,这使得它是同时生产高价值产品的潜在候选者.h.pluvialis的划分模式从形成二维的形成范围通过多重裂变最多32个细胞(Shah,Liang,Cheng,Daroch,2016)。新出生的细胞在尺寸增长后实现了一个临界尺寸点,在此之后,他们能够继续生长和再现在系统中进一步输入,这一点称为承诺点(CP)。在白天/夜周期(Bisova&Zachleder,2014)中,较高数量的CP的成就导致了更高数量的细胞。上述现象到达一个使用人口平衡模型(PBM)描述承诺点,以评估一些环境条件对细胞生长的影响。模型针对同步的实验数据,然后在长时间的实验上进行测试。

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