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    Extraction of Anthocyanins and Total Phenolics from Dried Red Grape Skin by Super Heated Solvent and Production of NanoPparticle by Super Critical Fluid

    , M.Sc. Thesis Sharif University of Technology Shahmahmoodi, Mohammad (Author) ; Goodarznia, Iraj (Supervisor)
    Abstract
    Red grape skin has a lot of antioxidant that called Anthocyanins. In this research this material has been studied and amount of extraction of them have been studied by changing the operational parameter and particle size in taguchi procedure. Pressurized liquid extraction (PLE) was used to extract Anthocyanins from Dried Red Grape Skin (DRGS) with acidified Ethanol solvent (1 %( v/v) of HCl) in 90-120°C, 10-40 bar, and 30 min extraction time. In this study, effect of particle size distribution of DRGS was considered and the results showed that with increasing the temperature (from 90 to 120 °C in 10 °C increments) and decreasing the pressure and particle size the extraction of Anthocyanins... 

    Produse of whey Membrane with Super Critical Methods

    , M.Sc. Thesis Sharif University of Technology Milani Hosseini, Mohammad Sadegh (Author) ; Goodarznia, Iraj (Supervisor)
    Abstract
    Milk is One of the most important source s of protein in the world. during the process of cheese the most of these protein remain in whey. There are different methods to separate these protein from whey. The one of advanced method is ultrafiltartion, this method is based on a permeable membranes, with different pore size. There are many research works in this field. In this project we have tried to study the effect ofpressure, temperature, concentration and resistance time on membrane porosity. In order to design the experiment and analyze the results tagochi L 16 methods is used. The PVC membranes were prepaid by gas anti solvent method, experiment showed that changes of temperature and... 

    Synthesis Deuterated Aromatic Compunds by Supercritical Method

    , M.Sc. Thesis Sharif University of Technology Shadjirati, Yasamin (Author) ; Outokesh, Mohammad (Supervisor) ; Sajadi, Soudeh (Supervisor)
    Abstract
    Green chemistry seeks to reduce or eliminate the use of hazardous substances in the chemical industry through the development of new products and processes .The replacement of harmful, widely used solvents and reagents is a key part of this approach. Supercritical fluid such as CO2 or water are good solvent for replaceement Exchange reactions involving the displacement of hydrogen bonded to carbon by deuterium are of interest in a broad variety of disciplines, such as the preparative chemistry of isotopically labeled materials, fundamental studies of carbonehydrogen bond activation processes, and studies of the nature of catalysts. The low cost of water and its environmental friendliness... 

    Investigation of the Solvation of CO2-philic Compounds in the Super Critical CO2 by Monte Carlo Simulations

    , Ph.D. Dissertation Sharif University of Technology Khanlarkhani, Ali (Author) ; Tafazzoli, Mohsen (Supervisor)
    Abstract
    Although CO2 is an environmentally benign solvent, many organic solutes are only sparingly soluble in CO2. We use Monte Carlo simulations in the context of statistical perturbation theory, Widom’s particle insertion and expanded ensemble techniques in order to investigate the molecular properties involved in enhancing the solubility of materials in CO2. Our Monte Carlo simulation of diluted methane and its fluorinated forms showed that substitution of H atom with F atom, results in more favorable solvation, but with further increase of F atom (after CH2F2) due to small size of solute it is impossible for all CO2 molecules in the first solvation shell (FSS) to have a good orientation against... 

    Supercritical Carbon Dioxide Extraction of Catechins from Green Tea Leaves

    , M.Sc. Thesis Sharif University of Technology Hassan Kashi, Sima (Author) ; Goodarznia, Iraj (Supervisor)
    Abstract
    Green tea has been receiving significant attention in recent years due to its high content of catechins; Epicatechin (EC), epicatechin gallate (ECG), epigallocatechin (EGC) and especially epigallocatechin gallate (EGCG). As powerful antioxidants, these compounds are believed to have several health benefits. In this study, we used supercritical CO2 with ethanol as co-solvent to extract catechin derivatives from green tea and we investigated the effects of experiment parameters on the extraction. Experiments, designed according to Taguchi algorithm, were conducted with green tea particles of four average diameters of 1500, 855, 605 and 427.5 µm, in an interval of 35- 55 ̊C for temperature and... 

    Extraction of Pigment from Walnut Husk by Supercritical CO2

    , M.Sc. Thesis Sharif University of Technology Ramezani, Nima (Author) ; Goodarznia, Iraj (Supervisor) ; Molaei Dehkordi, Asghar (Supervisor)
    Abstract
    Juglone is a naphthoquinone compound which is found in all parts of a walnut tree; including the leaf, root, walnut green husk, and bark. It is mostly used in dyeing industries. In this study, Juglone pigment is extracted from walnut husk by using the supercritical CO2 and Ethanol as a co-solvent, and the effects of parameters such as temperature, pressure, and size of husk particles on extraction efficiency are studied. The experiments have been designed based on Taguchi algorithm. Temperature and pressure range are chosen to be 35-50°C and 90-150 bar respectively. Walnut husk particles have been prepared dry from the city of Torbat Heidarieh in different average diameters; 1500, 855, 605... 

    Production of Uranium Dioxide Nano Powder With Hydrothermal Method in Supercritical Water Reactor

    , M.Sc. Thesis Sharif University of Technology Golzary, Abooali (Author) ; Outokesh, Mohammad (Supervisor) ; Ahmadi, Javad (Supervisor) ; Karimi Sabet, Javad (Co-Advisor)
    Abstract
    Hydrothermal supercritical method is one of the most suitable methods for metal oxide nano powder, ceramics and mineral catalyst synthesis. Metal oxides nanopowder in its pure or mixed form has wide potential application as chemical industrial catalyst, hot Superconductors, magnetic material, gas sensors and car catalyst convertors. One of the most important metal oxides aspects of application is uranium oxide as nuclear reactor fuel is used. In addition, UO2 is selective catalyst for converting methane to methanol process and Decomposition of organic Chlorine material. In Supercritical hydrothermal method done in high pressure reactor with critical to fluid, is new method for the... 

    Synthesis and Characterization of Graphene-based Material and Investigation of its Adsorption Properties for Radioactive Waste

    , Ph.D. Dissertation Sharif University of Technology Tayyebi, Ahmad (Author) ; Outokesh, Mohammad (Supervisor)
    Abstract
    Nuclear power is a prominent alternative of fossil fuels that can effectively solve global warming, acid rains and other consequences of air pollutions, caused by combustion. Despite such obvious advantage, this highly compact form of energy suffers from a big problem corresponding to its nuclear waste. Graphene oxide (GO), a lamellar material with wide range of surface functional groups such as epoxy (C-O-C), hydroxyl, and carboxyl offers large surface area as well as high sorption capacity for the metallic cations. This thesis study presents a supercritical, and co-precipitation synthesis of magnetite- graphene oxide (M-GO) in which Fe3O4 nanoparticles are simultaneously formed, surface... 

    , M.Sc. Thesis Sharif University of Technology Ghodarzi, Abbas (Author) ; Ghodarznia, Iraj (Supervisor) ; Soltanieh, Mohammad (Supervisor)
    Abstract
    In this study the kinetics of extraction of various hydrocarbons from crude oil using supercritical CO2 has been studied experimentally. The effect of parameters such as temperature (35, 45, 55, 65 °C), pressure (90, 110, 130, 150 bar), initial volume of crude oil (16, 19, 22, 25 mL) were investigated. Flow rate of gas has been recorded dynamically. QUALITECH 4 and MATLAB neural network softwares have been used for designing the experiments and modeling the final results, respectively. Pressure has a direct effect on extraction yield and by increasing it, heavier fractions could be obtained. On the other hand, the effect of temperature is more complicated, by increasing the temperature, the... 

    Extraction of Omega-3 from Fish Oil by Supercritical CO2

    , M.Sc. Thesis Sharif University of Technology Tavakoli, Mohammad Hesam (Author) ; Farhadi, Fathallah (Supervisor) ; Vafa, Ehsan (Supervisor)
    Abstract
    Study on fish oil Supercritical Fluid Fractionation (SFF) is still an open issue with the objective of large scale production. A fundamental issue for scaling up the process is the knowledge of phase behaviour of the mixtures involved in SFF. So, development of reliable models to describe phase behaviour of the mixtures is crucial. Some thermodynamic models have been suggested which is able to predict solubility of fatty acid ethyl esters in supercritical phase. Some relevant experimental data is necessary to fit and validate the models. In this work, the experiments are designed to collect equilibrium data in the FeyeCon pilot plant. A validated model becomes a fundamental tool for the... 

    Experimental and Theoretical Study of Biomass Conversion to Green Fuel by Using Supercritical Fluid

    , M.Sc. Thesis Sharif University of Technology Mohamadzadeh Shirazi, Hamed (Author) ; Ghotbi, Cyrus (Supervisor) ; Karimi Sabet, Javad (Supervisor)
    Abstract
    Nowadays, one of the most basic human problem is how to manage energy resources for sustainable development and how to deal with problems caused by growing energy consumption. Various scenarios are being discussd that the most important of them can be considered research on finding alternative energy sources that are renewable and do not have common pollution. Thus, according to researches carried out until now, using sources such as wind, water, solar biomass, etc. have been proposed. However, due to problems in the development of each of these sources, biomass as the primary option has been introduced. because biomass has several subsidiaries, research shows microalgaes (as a subset) are... 

    Turbulence Equation-of-State Interaction Modeling in Large Eddy Simulation

    , M.Sc. Thesis Sharif University of Technology Ghayour, Amir Mohammad (Author) ; Salehi, Mohammad Mahdi (Supervisor)
    Abstract
    In most real combustion systems, flow is turbulent (e.g., diesel engines). Therefore, a reliable turbulence modeling approach is necessary to design and analyze a system with turbulent flow. Direct numerical simulation (DNS), Large eddy simulation (LES), and Reynolds-averaged Navier-Stokes (RANS) are the three most mature Computational fluid dynamics (CFD) methods for turbulent flow simulations. Because of LES’s good accuracy and acceptable computational cost. In this project, LES is chosen to simulate the turbulent flow field.Modeled turbulence subgrid scales' interaction with nonlinear flow parameters, needs modeling. In supercritical and transcritical conditions, Equation-of-state is a... 

    Niosomal formulation for antibacterial applications

    , Article Journal of Drug Targeting ; Volume 30, Issue 5 , 2022 , Pages 476-493 ; 1061186X (ISSN) Mehrarya, M ; Gharehchelou, B ; Haghighi Poodeh, S ; Jamshidifar, E ; Karimifard, S ; Farasati Far, B ; Akbarzadeh, I ; Seifalian, A ; Sharif University of Technology
    Taylor and Francis Ltd  2022
    Abstract
    Infection is a disease that is mainly caused by different Gram-negative and Gram-positive bacteria. Treatment of infections requires a considerable amount of antibiotics, which can cause serious damage to the patient's body. Delivering the antibiotic only to the site of infection can prevent these destructive effects, such as the destruction of the normal intestinal flora. The drug delivery system through carriers will take antibiotics into a part of the body involved in the disease. Niosome nanoparticles, which have been made from non-ionic surfactants, have been emerging as ideal drug/antibiotics delivery vehicles. Recently, niosome formulations have been targeted to reduce toxicity and... 

    An analytical expression for the fugacity coefficient of supercritical fluids

    , Article High Temperatures - High Pressures ; Volume 35-36, Issue 5 , 2003 , Pages 529-539 ; 00181544 (ISSN) Parsafar, G. A ; Madani, F ; Sharif University of Technology
    Old City Publishing  2003
    Abstract
    An analytical expression for the fugacity coefficient of supercritical fluids has been derived from the equation of state. Here, the equation of state known as the linear isotherm regularity, LIR, is used to obtain this expression. We have inverted the LIR equation of state to obtain an appropriate expression for fugacity calculation. The inverted LIR (ILIR) works well at high pressures; but at high temperatures, Tr = T/Tc ≥2, ILIR is valid for the entire pressure range. ILIR is valid over a wide temperature range. Unlike LIR, ILIR is also valid at temperatures above twice the Boyle temperature. Like LIR, the inverted equation is a general equation of state which is valid for all types of... 

    Physicochemical properties of hybrid graphene–lead sulfide quantum dots prepared by supercritical ethanol

    , Article Journal of Nanoparticle Research ; Volume 17, Issue 1 , January , 2015 ; 13880764 (ISSN) Tavakoli, M. M ; Tayyebi, A ; Simchi, A ; Aashuri, H ; Outokesh, M ; Fan, Z ; Sharif University of Technology
    Kluwer Academic Publishers  2015
    Abstract
    Recently, hybrid graphene–quantum dot systems have attracted increasing attention for the next-generation optoelectronic devices such as ultrafast photo-detectors and solar energy harvesting. In this paper, a novel, one-step, reproducible, and solution-processed method is introduced to prepare hybrid graphene–PbS colloids by employing supercritical ethanol. In the hybrid nanocomposite, PbS quantum dots (~3 nm) are decorated on the reduced graphene oxide (rGO) nanosheets (~1 nm thickness and less than 1 micron lengths). By employing X-ray photoelectron and Raman and infrared spectroscopy techniques, it is shown that the rGO nanosheets are bonded to PbS nanocrystals through carboxylic bonds.... 

    Supercritical synthesis and in situ deposition of PbS nanocrystals with oleic acid passivation for quantum dot solar cells

    , Article Materials Chemistry and Physics ; Volume 156 , 2015 , Pages 163-169 ; 02540584 (ISSN) Tavakoli, M. M ; Simchi, A ; Aashuri, H ; Sharif University of Technology
    Elsevier Ltd  2015
    Abstract
    Colloidal quantum dot solar cells have recently attracted significant attention due to their low-processing cost and surging photovoltaic performance. In this paper, a novel, reproducible, and simple solution-based process based on supercritical fluid toluene is presented for in situ growth and deposition PbS nanocrystals with oleic-acid passivation. A lead precursor containing sulfur was mixed with oleic acid in toluene and processed in a supercritical fluid condition at different temperatures of 140, 270 and 330 °C for 20 min. The quantum dots were deposited on a fluorine-doped tin oxide glass substrate inside the supercritical reactor. Transmission electron microscopy, X-ray diffraction,... 

    Supercritical carbon dioxide utilization in drug delivery: Experimental study and modeling of paracetamol solubility

    , Article European Journal of Pharmaceutical Sciences ; Volume 177 , 2022 ; 09280987 (ISSN) Bagheri, H ; Notej, B ; Shahsavari, S ; Hashemipour, H ; Sharif University of Technology
    Elsevier B.V  2022
    Abstract
    In the present study, the solubility of paracetamol in supercritical CO2 is measured at temperatures between 311 and 358 K and pressures between 95 and 265 bar. It was shown that the solubility of paracetamol through a static solubility measurement method was between 0.3055 × 10−6 to 16.3582 × 10−6 based on mole fraction. The obtained experimental solubility data revealed the direct effect of pressure on the paracetamol experimental data, while the temperature has a dual effect of both increasing and decreasing effect considering the shifting point known as crossover pressure which was measured to be around 110 bar for paracetamol. Besides, two theoretical approaches were applied to predict... 

    Optimization of supercritical carbon dioxide extraction of essential oil from Dracocephalum kotschyi Boiss: An endangered medicinal plant in Iran

    , Article Journal of Chromatography A ; Volume 1422 , 2015 , Pages 73-81 ; 00219673 (ISSN) Nejad Sadeghi, M ; Taji, S ; Goodarznia, I ; Sharif University of Technology
    Elsevier  2015
    Abstract
    Extraction of the essential oil from a medicinal plant called Dracocephalum kotschyi Boiss was performed by green technology of supercritical carbon dioxide (SC-CO2) extraction. A Taguchi orthogonal array design with an OA16 (45) matrix was used to evaluate the effects of five extraction variables: pressure of 150-310bar, temperature of 40-60°C, average particle size of 250-1000μm, CO2 flow rate of 2-10ml/s and dynamic extraction time of 30-100min. The optimal conditions to obtain the maximum extraction yield were at 240bar, 60°C, 500μm, 10ml/s and 100min. The extraction yield under the above conditions was 2.72% (w/w) which is more than two times the maximum extraction yield that has been... 

    Experimental investigation of the influence of supercritical carbon dioxide and supercritical nitrogen injection on tertiary live-oil recovery

    , Article Journal of Supercritical Fluids ; Volume 117 , 2016 , Pages 260-269 ; 08968446 (ISSN) Lashkarbolooki, M ; Vaezian, A ; Zeinolabedini Hezave, A ; Ayatollahi, S ; Riazi, M ; Sharif University of Technology
    Elsevier  2016
    Abstract
    Generally, there are different enhanced oil recovery (EOR) methods. One of the most promising EOR method is the gas injection especially carbon dioxide (CO2) injection since it introduce several unique characteristic desired for higher tertiary oil recovery. In this study, the performance and feasibility of supercritical carbon dioxide (SC-CO2) and supercritical nitrogen (SC-N2) injection to enhanced oil recovery was investigated. In this regard, swelling tests and core flooding experiments were performed to find out whether the injections of these gases are efficient to recover trapped oil in the reservoir. Based on the experimental results, the possible active mechanisms were discussed on... 

    Linear yukawa isotherm regularity for dense fluids derived based on the perturbation theory

    , Article Fluid Phase Equilibria ; Volume 409 , 2016 , Pages 105-112 ; 03783812 (ISSN) Sohrabi Mahboub, M ; Farrokhpour, H ; Parsafar, G. A ; Sharif University of Technology
    Elsevier  2016
    Abstract
    In the present work, the thermodynamic of dense fluids, both compressed liquids and dense supercritical fluids, has been modeled, solely, based on the contribution of attraction of effective pair potential. The intermolecular interaction is modeled by the hard-core Yukawa potential (HCY) as an effective pair potential (EPP) with temperature dependent hard-core diameter. Using this EPP in the exact thermodynamic relations, an equation of state (EoS) for the compressibility factor of dense fluid has been derived. This EoS shows that (Z - ZCS) as function of ρ1/3 must be linear for each isotherm of fluid where ZCS is the compressibility factor of the reference fluid (Carnahan-Starling (CS) EoS)...