Operating lignocellulosic fermentation processes to produce fuels and chemicals is challenging due to the inherent complexity and variability of the fermentation media. Real-time monitoring is necessary to compensate for these challenges, but the traditional process monitoring methods fail to deliver actionable information that can be used to implement advanced control strategies. In this study, a hybrid-modeling approach is presented to monitor cellulose-to-ethanol (EtOH) fermentations in real-time. The hybrid approach uses a continuous-discrete extended Kalman filter to reconciliate the predictions of a data-driven model and a kinetic model and to estimate the concentration of glucose (Glu), xylose (Xyl), and EtOH. The data-driven model i...
Biomass, substrate or metabolite concentrations are difficult to measure online in fermentation proc...
Batch bioreactor cultivations using <i>Saccharomyces cerevisiae</i> at high (190-305 g l<sup>-1</sup...
In a decade when Industry 4.0 and quality by design are major technology drivers of biopharma, autom...
Operating lignocellulosic fermentation processes to produce fuels and chemicals is challenging due t...
The high substrate variability and complexity of fermentation media derived from lignocellulosic fee...
Online monitoring of fermentation processes is a necessary task to determine concentrations of key b...
The goal of this paper is to review and critically assess different methods to monitor key process v...
It is acknowledged that to significantly improve biochemical system performance control should be im...
The monitoring and optimization of hybridoma cell fed-batch cultures depend on the availability of a...
International audienceIn this paper, a new adaptive control of glucose concentration is proposed. Th...
Fossil fuel combustion produces around 98% of coal emissions. Therefore, liquid and gaseous biofuels...
Batch bioreactor cultivations using Saccharomyces cerevisiae at high (190-305 g l-1 glucose) or low ...
Thesis (Ph.D.)--University of Washington, 2015Production of fuels and chemicals from lignocellulosic...
In monitoring biological processes, measurement of key variables is often impeded by the lack of rel...
Estimation and control of non-linear variables in a continuous fermentation process using sliding mo...
Biomass, substrate or metabolite concentrations are difficult to measure online in fermentation proc...
Batch bioreactor cultivations using <i>Saccharomyces cerevisiae</i> at high (190-305 g l<sup>-1</sup...
In a decade when Industry 4.0 and quality by design are major technology drivers of biopharma, autom...
Operating lignocellulosic fermentation processes to produce fuels and chemicals is challenging due t...
The high substrate variability and complexity of fermentation media derived from lignocellulosic fee...
Online monitoring of fermentation processes is a necessary task to determine concentrations of key b...
The goal of this paper is to review and critically assess different methods to monitor key process v...
It is acknowledged that to significantly improve biochemical system performance control should be im...
The monitoring and optimization of hybridoma cell fed-batch cultures depend on the availability of a...
International audienceIn this paper, a new adaptive control of glucose concentration is proposed. Th...
Fossil fuel combustion produces around 98% of coal emissions. Therefore, liquid and gaseous biofuels...
Batch bioreactor cultivations using Saccharomyces cerevisiae at high (190-305 g l-1 glucose) or low ...
Thesis (Ph.D.)--University of Washington, 2015Production of fuels and chemicals from lignocellulosic...
In monitoring biological processes, measurement of key variables is often impeded by the lack of rel...
Estimation and control of non-linear variables in a continuous fermentation process using sliding mo...
Biomass, substrate or metabolite concentrations are difficult to measure online in fermentation proc...
Batch bioreactor cultivations using <i>Saccharomyces cerevisiae</i> at high (190-305 g l<sup>-1</sup...
In a decade when Industry 4.0 and quality by design are major technology drivers of biopharma, autom...