With the increasing global demand for precise and efficient pharmaceuticals and the biopharma industry moving towards Industry 4.0, the need for advanced process integration, automation, and modeling has increased as well. In this work, a method for automatic modeling and calibration of an integrated preparative chromatographic system for pharmaceutical development and production is presented. Based on a user-defined system description, a system model was automatically generated and then calibrated using a sequence of experiments. The system description and model was implemented in the Python-based preparative chromatography control software Orbit
Automated information flow is an important way of optimizing the time used for analyzing processes. ...
This paper presents a model-based method to aid in the process validation for the purification of ph...
This paper describes the use of a laboratory robot as an automated tool for preparing multi-level ca...
This contribution presents a novel process analytical technology (PAT) software interface for online...
Preparative chromatography is one of the prevailing processes in academia and industry to extract or...
Preparative chromatography is one of the prevailing processes in academia and industry to extract or...
To design efficient and safe biopharmaceutical production processes, understanding the process and h...
A framework is introduced for the systematic development of preparative chromatographic processes. I...
The application of mechanistic models for chromatography requires accurate model parameters. Especia...
This work presents a methodology for analyzing and optimizing preparative chromatographic processes....
This work describes the development of a model-based high-throughput design (MHD) tool for the opera...
This work describes the development of a model-based high-throughput design (MHD) tool for the opera...
AbstractAn integrated experimental and modeling approach for the design of high productivity protein...
This work describes the development of a model-based high-throughput design (MHD) tool for the opera...
This work describes the development of a model-based high-throughput design (MHD) tool for the opera...
Automated information flow is an important way of optimizing the time used for analyzing processes. ...
This paper presents a model-based method to aid in the process validation for the purification of ph...
This paper describes the use of a laboratory robot as an automated tool for preparing multi-level ca...
This contribution presents a novel process analytical technology (PAT) software interface for online...
Preparative chromatography is one of the prevailing processes in academia and industry to extract or...
Preparative chromatography is one of the prevailing processes in academia and industry to extract or...
To design efficient and safe biopharmaceutical production processes, understanding the process and h...
A framework is introduced for the systematic development of preparative chromatographic processes. I...
The application of mechanistic models for chromatography requires accurate model parameters. Especia...
This work presents a methodology for analyzing and optimizing preparative chromatographic processes....
This work describes the development of a model-based high-throughput design (MHD) tool for the opera...
This work describes the development of a model-based high-throughput design (MHD) tool for the opera...
AbstractAn integrated experimental and modeling approach for the design of high productivity protein...
This work describes the development of a model-based high-throughput design (MHD) tool for the opera...
This work describes the development of a model-based high-throughput design (MHD) tool for the opera...
Automated information flow is an important way of optimizing the time used for analyzing processes. ...
This paper presents a model-based method to aid in the process validation for the purification of ph...
This paper describes the use of a laboratory robot as an automated tool for preparing multi-level ca...