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Process Systems Engineering for Pharmaceutical Manufacturing

- Volume 41

Forfatter: info mangler
Bog
  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

Process Systems Engineering for Pharmaceutical Manufacturing: From Product Design to Enterprise-Wide Decisions, Volume 41, covers the following process systems engineering methods and tools for the modernization of the pharmaceutical industry: computer-aided pharmaceutical product design and pharmaceutical production processes design/synthesis; modeling and simulation of the pharmaceutical processing unit operation, integrated flowsheets and applications for design, analysis, risk assessment, sensitivity analysis, optimization, design space identification and control system design; optimal operation, control and monitoring of pharmaceutical production processes; enterprise-wide optimization and supply chain management for pharmaceutical manufacturing processes. Currently, pharmaceutical companies are going through a paradigm shift, from traditional manufacturing mode to modernized mode, built on cutting edge technology and computer-aided methods and tools. Such shifts can benefit tremendously from the application of methods and tools of process systems engineering.

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Detaljer
  • SprogEngelsk
  • Sidetal698
  • Udgivelsesdato20-03-2018
  • ISBN139780444639639
  • Forlag Elsevier Science Ltd
  • FormatHardback
Størrelse og vægt
  • Vægt1480 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Design Sampling Model Automation Crystallization. Economic analysis Modeling Control Chromatography Process control Granulation Ibuprofen Production planning Artemisinin OPTIMIZATION Computational fluid dynamics Biocatalysis Flow chemistry supply chain Adaptive sampling Control System Implementation Inventory management Pharmaceutical supply chains Process System Engineering Bioprocessing Recycle Pharmaceuticals Partial Least Squares Purity Process Integration Model-predictive control Spectroscopy Surrogate Modeling Continuous Manufacturing Impurities Quality-by-design Pharmaceutical manufacturing OPC Branch and bound Dynamic Modeling Multiobjective optimization Process Intensification Polynomial Chaos Expansion NIR Feasibility analysis Quality by Design (QbD) Process Systems Engineering Uncertain systems Preformulation Model-based Systems Advanced Control PID New Product Development Mathematical Programming Continuous Process design Supervisory Control Multistage Stochastic Program SCADA Endogenous uncertainty MAB Formulation development Pharmaceutical Sensitivity analysis Feedback control QBD Start-up MPC Pilot Plant Flowsheet-Simulation Cog Critical quality attributes Flexible Design 60-day operation Automated direct nucleation control Capacity production Calibration models Continuous pharmaceutical manufacturing (CPM) Continuous processing Biopharmaceutical Manufacturing Continuous pharmaceutical manufacturing Continuous tumble mixing control Batch to continuous Drop on demand diphenhydrAMINE Distributed Control System Fluidized bed granulation End-to-end continuous manufacturing Drug printing End-to-end manufacturing Continuous tumble mixer Flowsheet modeling Data-driven model Decision-dependent uncertainty Hybrid particulate modeling Discrete Element Model E-factor Integrated continuous tumble mixer system Integrated end-to-end continuous pharmaceutical process Low shear mixing Interval partial least squares Level sensor Manufacturing of tablet formulation Materials traceability Loss-in-weight feeding Green metric Pharmaceutical process development Plant-wide dynamic model Powder blending Pharmaceutical clinical trial planning Process systems engineering (PSE) process analytical technology Process analytical technology (PAT) S88 Ibuprofen process Stochastic model predictive control Supersaturation control Solvent Selection Multiway partial least squares surrogate Polymorphic feedback control Process performance monitoring Oral solid dosage Plant-wide Control Plant-wide simulation Population balance model Powder mixing Powder mixing modeling Oral Solid Dosage Form Time to steady state Pharmaceutical process Template processes Wash and filtration PSE methods tools S88 flex Separation design
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