DocumentCode :
3580856
Title :
A system analysis and design for sorghum based nano-composite film production
Author :
Lovely, Belladini ; Djatna, Taufik
Author_Institution :
Grad. Program of Agro-Ind. Technol., Bogor Agric. Univ., Bogor, Indonesia
fYear :
2014
Firstpage :
145
Lastpage :
150
Abstract :
The existence of process complexity and higher inter-dependency within production system of biodegradable sorghum-based nanocomposite film are obviously required for system analysis and design. In this paper, nanocomposite film production was simulated in Business Process Modeling Notation (BPMN) model to assist researchers in decision making. The system was designed by using 2 processing variables as the model input, namely hydrolysis time and plasticizer ratio. Then by modifying and controlling value of these variables, researcher would determine their influences on 3 nanocomposite film crucial physical and thermal properties, such as Water Vapor Permeability (WVP), X-Ray Diffraction (XRD) and Derivative Thermo-gravimetric (DTG). Numerical examples were implemented in order to illustrate the related issues. Model verification result showed that the model succeeded conducting an improvement for all film properties compared to other various composites. Therefore this system is potentially possible to simulate sorghum-based nanocomposite film production in a simpler and fully controllable model.
Keywords :
X-ray diffraction; biodegradable materials; design for environment; filled polymers; nanocomposites; nanotechnology; thermal analysis; BPMN model; DTG; X-ray diffraction; XRD; biodegradable film; business process modeling notation model; decision making; derivative thermogravimetric method; hydrolysis time; plasticizer ratio; sorghum based nanocomposite film production; system analysis; system design; water vapor permeability; Analytical models; Business; Films; Packaging; Production systems; X-ray scattering; Business Process Modeling and Notation (BPMN); System analysis and design; biodegradable; nanocomposite film; sorghum biomass;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced Computer Science and Information Systems (ICACSIS), 2014 International Conference on
Type :
conf
DOI :
10.1109/ICACSIS.2014.7065870
Filename :
7065870
Link To Document :
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