MATHEMATICAL MODELING FOR RAPID EXPANSION OF SUPERCRITICAL SOLUTION TO PRODUCE NANO AND MICRO NABUTEMON PARTICLES

A new model is proposed for production of fine particles of Nabutemon by rapid expansion of supercritical solutions (RESS). A mathematical model is used for prediction of particle size and particle size distribution of RESS produced particles. In this model the effect of various operating parameters...

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Main Authors: hadi Baseri, lotfollahi Lotfollahi
Format: Article
Language:fas
Published: Semnan University 2014-02-01
Series:مجله مدل سازی در مهندسی
Subjects:
Online Access:https://modelling.semnan.ac.ir/article_1656_a0a66b4e093d68699fda36cc3c8c7d0a.pdf
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author hadi Baseri
lotfollahi Lotfollahi
author_facet hadi Baseri
lotfollahi Lotfollahi
author_sort hadi Baseri
collection DOAJ
description A new model is proposed for production of fine particles of Nabutemon by rapid expansion of supercritical solutions (RESS). A mathematical model is used for prediction of particle size and particle size distribution of RESS produced particles. In this model the effect of various operating parameters such as pressure and temperature of extraction and temperature and pressure of expansion on the characteristics of products were studied. The calculation results showed good agreement between the calculation results and the experimental data for Nabutemon particles.
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spelling doaj.art-3383e20aac924f72ba5009f8487a71b22024-02-23T18:58:22ZfasSemnan Universityمجله مدل سازی در مهندسی2008-48542783-25382014-02-011135253810.22075/jme.2017.16561656MATHEMATICAL MODELING FOR RAPID EXPANSION OF SUPERCRITICAL SOLUTION TO PRODUCE NANO AND MICRO NABUTEMON PARTICLEShadi Baseri0lotfollahi Lotfollahi1semnan universitysemnan universityA new model is proposed for production of fine particles of Nabutemon by rapid expansion of supercritical solutions (RESS). A mathematical model is used for prediction of particle size and particle size distribution of RESS produced particles. In this model the effect of various operating parameters such as pressure and temperature of extraction and temperature and pressure of expansion on the characteristics of products were studied. The calculation results showed good agreement between the calculation results and the experimental data for Nabutemon particles.https://modelling.semnan.ac.ir/article_1656_a0a66b4e093d68699fda36cc3c8c7d0a.pdfsupercritical carbon dioxiderapid expansion of supercritical solutionsmicro-particlesnabutemon
spellingShingle hadi Baseri
lotfollahi Lotfollahi
MATHEMATICAL MODELING FOR RAPID EXPANSION OF SUPERCRITICAL SOLUTION TO PRODUCE NANO AND MICRO NABUTEMON PARTICLES
مجله مدل سازی در مهندسی
supercritical carbon dioxide
rapid expansion of supercritical solutions
micro-particles
nabutemon
title MATHEMATICAL MODELING FOR RAPID EXPANSION OF SUPERCRITICAL SOLUTION TO PRODUCE NANO AND MICRO NABUTEMON PARTICLES
title_full MATHEMATICAL MODELING FOR RAPID EXPANSION OF SUPERCRITICAL SOLUTION TO PRODUCE NANO AND MICRO NABUTEMON PARTICLES
title_fullStr MATHEMATICAL MODELING FOR RAPID EXPANSION OF SUPERCRITICAL SOLUTION TO PRODUCE NANO AND MICRO NABUTEMON PARTICLES
title_full_unstemmed MATHEMATICAL MODELING FOR RAPID EXPANSION OF SUPERCRITICAL SOLUTION TO PRODUCE NANO AND MICRO NABUTEMON PARTICLES
title_short MATHEMATICAL MODELING FOR RAPID EXPANSION OF SUPERCRITICAL SOLUTION TO PRODUCE NANO AND MICRO NABUTEMON PARTICLES
title_sort mathematical modeling for rapid expansion of supercritical solution to produce nano and micro nabutemon particles
topic supercritical carbon dioxide
rapid expansion of supercritical solutions
micro-particles
nabutemon
url https://modelling.semnan.ac.ir/article_1656_a0a66b4e093d68699fda36cc3c8c7d0a.pdf
work_keys_str_mv AT hadibaseri mathematicalmodelingforrapidexpansionofsupercriticalsolutiontoproducenanoandmicronabutemonparticles
AT lotfollahilotfollahi mathematicalmodelingforrapidexpansionofsupercriticalsolutiontoproducenanoandmicronabutemonparticles