首页> 外文会议>World hydrogen energy conference >Modeling And Optimization of Hydrogen Production By The Photosynthetic Bacterium Rhodobacter capsulatus By The Methodology Of Design Of Experiments (DOE): Interaction Between Lactate Concentration And Light Luminosity
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Modeling And Optimization of Hydrogen Production By The Photosynthetic Bacterium Rhodobacter capsulatus By The Methodology Of Design Of Experiments (DOE): Interaction Between Lactate Concentration And Light Luminosity

机译:实验设计方法(DOE)对光合细菌荚膜红细菌产氢的建模和优化:乳酸浓度与光度之间的相互作用

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The methodology of the Design of Experiments was successfully tested for the modeling and the optimization of the hydrogen production by the photosynthetic bacterium Rhodobacter capsulatus. A D-optimal model based on the response surface methodology was established for six parameters. Five continuous parameters, implicated either as light, carbon, nitrogen sources or compounds of nitrogenase and one discrete parameter, the nature of buffer. The range of light intensity, concentrations of lactate, glutamate, iron, and molybdenum solutions varied between 8,000-30,000 lx, 20-120 mM, 7-50 mM, 40-200 μM, and 1.5-50 μM, respectively. The buffers were either the classical phosphate buffer (KHPO_4/KH_2PO_4) or the borax buffer (Kolthof buffer, KHPO_4/Borax). The response concerning the volume of total hydrogen was modeled after transformation in its square root according to a polynomial model including simple, quadratic, and interaction effects. Two main parameters, in the model area, concerned the light intensity and the lactate concentration. The response was analyzed and discussed in terms of their variations in the 3D studied domains.
机译:实验设计的方法已经成功地通过光合细菌荚膜红细菌的建模和优化了产氢的方法进行了测试。针对六个参数,建立了基于响应面方法的D最优模型。五种连续参数,包括光,碳,氮源或固氮酶的化合物,以及一个离散参数,即缓冲液的性质。光强度范围,乳酸盐,谷氨酸盐,铁和钼溶液的浓度分别在8,000-30,000 lx,20-120 mM,7-50 mM,40-200μM和1.5-50μM之间变化。缓冲液是经典磷酸盐缓冲液(KHPO_4 / KH_2PO_4)或硼砂缓冲液(Kolthof缓冲液,KHPO_4 / Borax)。根据包括简单,二次和相互作用效应在内的多项式模型,在其平方根中进行变换后,对涉及总氢量的响应进行建模。在模型区域中,两个主要参数涉及光强度和乳酸浓度。根据响应在3D研究领域中的变化进行了分析和讨论。

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