
| ACKN No. | Title/Author(s) | Keywords | Style |
|---|---|---|---|
| 37 | [Review lecture] IoT and chemical industry | Internet of Things Big Data Process Systems Engineering | O |
| 38 | [Review lecture] Study on applying dynamic simulation in development of unified system for hydrogen energy carrier production and utilization | Hydrogen Renewable Energy Dynamic Simulation | O |
| 58 | Development of a software to control correctly the management of change | Sustainable Engineering Management Of Change | O |
| 64 | [Review lecture] Integration engineering for the realization of sustainable society | Sustainable society Trans-disciplinarily Integration engineering | O |
| 125 | Activity model of life cycle design of packaging | food packaging activity model environmentally-conscious design | O |
| 197 | Risk evaluation models for the design of parenterals manufacturing processes | pharmaceutical manufacturing risk evaluation single-use technology | O |
| 442 | Improved performance of software iCOSMOS for calculating steady-state sensitivities | Biochemical systems theory Steady-state sensitivity S-system method | O |
| 593 | Integration of distributed information in designing local energy system | Simulation Data acquisition Information modeling | O |
| 614 | business process modeling approach of plant lifecycle engineering from plant alarm system management view | plant alarm system plant lifecycle business process model | O |
| 647 | Wavelength selection method for process analytical technology with infrared spectra | Calibration-minimum approach Infrared spectroscopy Process analytical technology | O |
| 677 | Process Optimization and Design Space Construction by Process System Analysis | global system analysis Quality by Design equation-oriented process modelling | O |
| 692 | A role of modeling for intensification of plant-derived-resources utilization system considering integrated design of agriculture and industry | Biomass Modeling Agriculture | O |
| 818 | Life Cycle GHG Emission Associated with FAEE Produced from Ion-exchange Resin Catalyzed Process using Hydrous Ethanol | Life Cycle GHG Emission FAEE Hydrous Ethanol | O |
| 862 | Design ofing a chemical process considering for local deployment in local regions: A case study of FAME production from waste cooking oil with Ion-exchange resin catalysts | Centralized and decentralized chemical processes Route design by GIS Dynamic vehicle load | O |
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