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    Numerical investigations of hepatic spheroids metabolic reactions in a perfusion bioreactor

    , Article Frontiers in Bioengineering and Biotechnology ; Volume 7 , 2019 ; 22964185 (ISSN) Sharifi, F ; Firoozabadi, B ; Firoozbakhsh, K ; Sharif University of Technology
    Frontiers Media S.A  2019
    Abstract
    Miniaturized culture systems of hepatic cells are emerging as a strong tool facilitating studies related to liver diseases and drug discovery. However, the experimental optimization of various parameters involved in the operation of these systems is time-consuming and expensive. Hence, developing numerical tools predicting the function of such systems can significantly reduce the associated cost. In this paper, a perfusion-based three dimensional (3D) bioreactor comprising encapsulated human liver hepatocellular carcinoma (HepG2) spheroids are analyzed. The flow and mass transfer equations for oxygen as well as different metabolites such as albumin, glucose, glutamine, ammonia, and urea were... 

    X-ray photo-emission studies of Cu1-xTlxBa2Ca3Cu4 O12-y superconductor thin films

    , Article Physica C: Superconductivity and its Applications ; Volume 449, Issue 1 , 2006 , Pages 47-52 ; 09214534 (ISSN) Khan, N. A ; Mumtaz, M ; Ahadian, M. M ; Iraji zad, A ; Sharif University of Technology
    2006
    Abstract
    X-ray photo-emission spectroscopy (XPS) studies of Cu1-xTlxBa2Ca3Cu4 O12-y superconductor thin films have been carried out for understanding the mechanism of superconductivity and to find out the reasons for the increase of zero resistivity critical temperature Tc(R = 0) with post-annealing in a nitrogen atmosphere. It is observed from these studies that reduction of charge state of thallium is a source of doping of carriers to the CuO2 planes. The reduced charge state of thallium (i.e. Tl1+) promotes lower oxygen concentration in the charge reservoir layer, which possibly results in movement of electrons to the conducting CuO2 planes. The higher density of electrons in the CuO2 planes... 

    Prediction of necrotic core and hypoxic zone of multicellular spheroids in a microbioreactor with a U-shaped barrier

    , Article Micromachines ; Volume 9, Issue 3 , 2018 ; 2072666X (ISSN) Barisam, M ; Saidi, M. S ; Kashaninejad, N ; Nguyen, N. T ; Sharif University of Technology
    MDPI AG  2018
    Abstract
    Microfluidic devices have been widely used for biological and cellular studies. Microbioreactors for three-dimensional (3D) multicellular spheroid culture are now considered as the next generation in in vitro diagnostic tools. The feasibility of using 3D cell aggregates to form multicellular spheroids in a microbioreactor with U-shaped barriers has been demonstrated experimentally. A barrier array is an alternative to commonly used microwell traps. The present study investigates oxygen and glucose concentration distributions as key parameters in a U-shaped array microbioreactor using finite element simulation. The effect of spheroid diameter, inlet concentration and flow rate of the medium... 

    Structural analysis of Y3Ba5Cu8O 19-δ high-Tc superconductor by ab initio density functional theory

    , Article Physica C: Superconductivity and its Applications ; Volume 497 , 15 February , 2014 , 2014, Pages 84-88 ; ISSN: 09214534 Khosroabadi, H ; Rasti, M ; Akhavan, M ; Sharif University of Technology
    Abstract
    The details of the crystal structure of the recently discovered Y 3Ba5Cu8O18+δ (Y358) superconductor have been determined by ab initio density functional theory. Total energy calculation has been performed for three different suggested structures with different oxygen content. The structure with a center of inversion symmetry and the highest oxygen concentration has the lowest total energy. Thus, it is the best choice for the Y358 crystal structure. By investigating the detailed structure, it is seen that this compound is arranged either of YBa2Cu3O7 and YBaCu2O 5 or YBaCu2O5 and BaCuO2 substructural blocks in the c direction. The difference between the total energy of Y358 compound and the... 

    NO x formation in H 2-CH 4 blended flame under MILD conditions

    , Article Combustion Science and Technology ; Volume 184, Issue 7-8 , Aug , 2012 , Pages 995-1010 ; 00102202 (ISSN) Mardani, A ; Tabejamaat, S ; Sharif University of Technology
    2012
    Abstract
    In this article, NO production mechanisms for CH 4-H 2 combustion under MILD (moderate or intense low-oxygen dilution) conditions are studied using CDF and also zero-dimensional well stirred reactor (WSR) analysis. A H 2/CH 4 jet into a heated and diluted coflow is modeled in CFD analysis. The RANS equations with modified k equations are solved in an axisymmetric 2D computational domain. The GRI2.11 full mechanism is considered to represent the chemical reactions. The effects of oxidizer oxygen concentration, fuel hydrogen content, and fuel jet Reynolds number are studied on NO formation reactions. Results show that the measurements are predicted with an acceptable accuracy. The NNH and N 2O... 

    Modeling water content distribution in the polymer electrolyte membrane of pem fuel cell

    , Article ASME 2011 9th International Conference on Fuel Cell Science, Engineering and Technology. Collocated with ASME 2011 5th International Conference on Energy Sustainability, FUELCELL 2011, 7 August 2011 through 10 August 2011, Washington, DC ; 2011 , Pages 851-858 ; 9780791854693 (ISBN) Tavakoli, B. A ; Roshandel, R ; Sharif University of Technology
    Abstract
    Models play an important role in fuel cell design and development. One of the critical problems to overcome in the proton exchange membrane (PEM) fuel cells is the water management. In this work a steady state, two dimensional, isothermal model in a single PEM fuel cell using individual computational fluid dynamics code was presented. Special attention was devoted to the water transport through the membrane which is assumed to be combined effect of diffusion, electro osmotic drag and convection. The effect of current density variation distribution on the Water content (λ) in membrane/electrode assembly (MEA) was determined. After that detailed distribution of oxygen concentration, water... 

    Selection and simulation of a proper microfluidic for hepatocyte culture

    , Article 2015 22nd Iranian Conference on Biomedical Engineering, ICBME 2015, 25 November 2015 through 28 November 2015 ; 2015 , Pages 65-69 ; 9781467393515 (ISBN) Nejadnasrollah, F ; Firoozabadi, B ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2015
    Abstract
    The advent of microfluidics as suitable environments for culturing cells is associated with some challenges as shear stresses applied on the cells. Moreover, among all factors needed for cell viability, feeding hepatocytes with adequate oxygen is of great importance due to their high demand for oxygen compared the other cell types. In this paper three kinds of geometries has been studied in order that shear stresses would be in allowed range and provision of hepatocytes with sufficient oxygen concentrations has been ensured as well. In addition to supplying hepatocytes with oxygen, the range of its concentration has been adjusted in physiologic value so that it would be practical for further... 

    Beneficial Role of oxygen in co and propylene oxidation over a pt-pd-based wiremesh catalyst as a retrofit emission control device for four-stroke gasoline spark-ignited motorcycles

    , Article Energy and Fuels ; Volume 35, Issue 12 , 2021 , Pages 10122-10133 ; 08870624 (ISSN) Lotfollahzade Moghaddam, A ; Hamzehlouyan, T ; Hosseini, V ; Mayer, A ; Sharif University of Technology
    American Chemical Society  2021
    Abstract
    Over 200 million motorcycles in use worldwide account for a substantial portion of global mobile source total hydrocarbons (THC) and carbon monoxide (CO) emissions. In Tehran, capital of Iran, ultrarich inefficient combustion in gasoline-fueled motorcycles results in significantly high CO and THC emissions. Motorcycle catalysts can reduce CO and C3H6(as a representative hydrocarbon) emission factors by 60-80%. In the present work, CO and propylene oxidation over a commercial Pt-Pd-based wiremesh catalyst is studied in a flow reactor setup under simulated conditions relevant to 125 cc four-stroke gasoline carburetor motorcycles. Steady-state individual and co-oxidation tests for CO and... 

    An experimental study on kerosene spray combustion under conventional and hot-diluted conditions

    , Article Combustion Science and Technology ; 2021 ; 00102202 (ISSN) Mardani, A ; Azimi, A ; Karimi Motaalegh Mahalegi, H ; Sharif University of Technology
    Bellwether Publishing, Ltd  2021
    Abstract
    The combustion of kerosene spray under hot-diluted conditions and conventional conditions was experimentally investigated. By examining flame photographs, chemiluminescence images, and in-field temperature measurements, the separate effect of different variables including oxygen concentration, temperature and velocity of the co-flowing air, fuel flow rate and injection pressure, and eventually the type of spray nozzle on multiple parameters such as flame stability, structure, luminosity, temperature field, and qualitative CH radical distribution, as well as HCO and NO2 with lower precision, in the reaction region, have been studied. It was observed that an increment in injection pressure and... 

    Structure of the ethanol spray flame under conventional and MILD conditions

    , Article Fuel ; Volume 321 , 2022 ; 00162361 (ISSN) Karimi Motaalegh Mahalegi, H ; Mardani, A ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    A numerical examination is carried out on the experimental MILD turbulent spray burner of Delft Spray in Hot Co-flow, DSHC. The RANS approach is combined with the Lagrangian tracking of droplets for modeling the pressure-swirl atomizer. The EDC combustion model is employed, to take into account detailed chemical mechanisms. Predictions show that the structure of the triple-flame of liquid fuel in the atmospheric condition is different from the conventional gaseous triple-flames. Furthermore, the structure of the MILD spray flame is compared to the non-MILD spray flame. The flame index shows that the triple-flame structure in the conventional spray flame that consists of two outer and middle... 

    Analyses of mass and heat transport interactions in a direct methanol fuel cell

    , Article International Journal of Hydrogen Energy ; Vol. 39, issue. 21 , July , 2014 , p. 11224-11240 ; ISSN: 03603199 Kalantari, H ; Baghalha, M ; Sharif University of Technology
    Abstract
    In this paper, a two-dimensional, two-phase, non-isothermal model is presented to predict the electrochemical, mass transfer and heat transfer behaviors in a direct methanol fuel cell (DMFC). Governing equations including the momentum, continuity, heat transfer, proton and electron transport, species transport for water, methanol, and all the gas species (carbon dioxide, methanol vapor, water vapor, oxygen, and nitrogen) and the auxiliary equations are coupled to studying the various phenomena in DMFC. The modeling results agree well with the four different experimental data in an extensive range of operation conditions. A parametric study is also performed to examine the effects of the cell... 

    Effects of microhydrophobic porous layer on water distribution in polymer electrolyte membrane fuel cells

    , Article Journal of Fuel Cell Science and Technology ; Vol. 11, Issue. 1 , 2014 ; ISSN: 1550-624X Ahmadi, F ; Roshandel, R ; Sharif University of Technology
    Abstract
    Performance of polymer electrolyte membrane fuel cells (PEMFC) at high current densities is limited to transport reactants and products. Furthermore, large amounts of water are generated and may be condensed due to the low temperature of the PEMFC. Development of a two-phase flow model is necessary in order to predict water flooding and its effects on the PEMFC performance. In this paper, a multiphase mixture model (M2) is used, accurately, to model two-phase transport in porous media of a PEMFC. The cathode side, which includes channel, gas diffusion layer (GDL), microporous layer (MPL), and catalyst layer (CL), is considered as the computational domain. A multidomain approach has been used... 

    Numerical study of CO and CO2 formation in CH4/H2 blended flame under MILD condition

    , Article Combustion and Flame ; Volume 160, Issue 9 , September , 2013 , Pages 1636-1649 ; 00102180 (ISSN) Mardani, A ; Tabejamaat, S ; Hassanpour, S ; Sharif University of Technology
    2013
    Abstract
    Reduction of air pollutants formation from hydrocarbon combustion process requires improvements in combustion systems. The moderate and intense low oxygen dilution (MILD) combustion technique is an opportunity to achieve such a goal. MILD combustion is a combustion regime which can be attained by high temperature preheating and high level dilution. In this paper, the mechanism of CO and CO2 formation for a CH4/H2 fuel mixture is studied under MILD combustion condition of a jet in hot coflow (JHC) burner. This investigation is done using the computational fluid dynamics (CFD) and also zero dimensional well-stirred reactor (WSR) analysis. The RANS equations with modified k-ε equations are... 

    Modeling and control of dissolved oxygen concentration in the fermentation of glucose to gluconic acid

    , Article Periodica Polytechnica: Chemical Engineering ; Volume 57, Issue 1-2 , 2013 , Pages 63-70 ; 03245853 (ISSN) Kazemi, M. A ; Bamdad, H ; Papari, S ; Yaghmaei, S ; Sharif University of Technology
    2013
    Abstract
    Fermentation systems are often highly nonlinear, with poorly understood dynamic behaviour of the reactor. In this work, mathematical modeling of the fermentation process based on aeration rate control was performed in a semi-batch airlift loop bioreactor. The bioconversion of glucose to gluconic acid by the Aspergillus niger strain was considered in an oxygen consuming system in the liquid phase. The proper kinetic model for the bioconversion of glucose to gluconic acid was investigated using experimental data from a 40 dm3reactor. Kinetic parameter estimation was used from the literature. The model was validated by experimental data and was compared with the Monod kinetic model. The... 

    Developing a mathematical model for the oxidative dehydrogenation of propane in a fluidized bed reactor

    , Article Asia-Pacific Journal of Chemical Engineering ; Volume 11, Issue 3 , 2016 , Pages 448-459 ; 19322135 (ISSN) Torabi, A ; Kazemeini, M ; Fattahi, M ; Sharif University of Technology
    John Wiley and Sons Ltd 
    Abstract
    In this research, a mathematical model to simulate a two-phase fluidized bed reactor for oxidative dehydrogenation of propane to propylene was developed. The developed model was solved numerically using the matlab software. Moreover, effects of the reaction temperature, operating pressure, feed composition, particle's size and gas superficial velocity on the reactant conversion, product selectivity and desired product's yield were understudied. The model was validated using previously published experimental data for simulation of the case at the exit of the circulating fluidized bed reactor. The results revealed that, as the temperature raised from 783 to 823 K, the propane conversion... 

    Numerical assessment of MILD combustion enhancement through plasma actuator

    , Article Energy ; Volume 183 , 2019 , Pages 172-184 ; 03605442 (ISSN) Mardani, A ; Khanehzar, A ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    One promising solution to achieve moderate or intense low-oxygen dilution (MILD) combustion under lower temperatures may be using non-equilibrium plasma discharge. Plasma assisted combustion can extend the flammability limits by reducing the auto-ignition temperature of the reactants and can be a great approach to achieve steady MILD combustion under extreme conditions through decreasing ignition delay time. In particular, the influence of the outlet flows from a co-flowing cylindrical dielectric barrier discharge (DBD) on the CH4/N2 combustion under MILD combustion has been investigated numerically through some simplifications on plasma discharge. A three streams coaxial burner are modeled... 

    Effect of oxygen enrichment in spectral thermal radiation in an unconfined turbulent bluff-body flame

    , Article Journal of Quantitative Spectroscopy and Radiative Transfer ; Volume 247 , 2020 Darbandi, M ; Barezban, M. B ; Fatin, A ; Bordbar, H ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Oxy-fuel combustion is a modern carbon capture and storage (CCS) technique that improves the combustion process and reduces the environmental penalty of many combustion systems. Evidently, the accurate radiative calculation of oxy-fuel combustion is very important to obtain more improved combustion system designs with less environmental drawbacks. In the present study, a small scale unconfined turbulent bluff-body flame is numerically simulated to calculate the gas radiative properties using three different approaches of ignoring radiation, applying a modified version of the weighted sum of gray gases (WSGG) model, and employing the spectral line based weighted sum of gray gases (SLW) model.... 

    An experimental study on kerosene spray combustion under conventional and hot-diluted conditions

    , Article Combustion Science and Technology ; Volume 194, Issue 13 , 2022 , Pages 2712-2751 ; 00102202 (ISSN) Mardani, A ; Azimi, A ; Karimi Motaalegh Mahalegi, H ; Sharif University of Technology
    Taylor and Francis Ltd  2022
    Abstract
    The combustion of kerosene spray under hot-diluted conditions and conventional conditions was experimentally investigated. By examining flame photographs, chemiluminescence images, and in-field temperature measurements, the separate effect of different variables including oxygen concentration, temperature and velocity of the co-flowing air, fuel flow rate and injection pressure, and eventually the type of spray nozzle on multiple parameters such as flame stability, structure, luminosity, temperature field, and qualitative CH radical distribution, as well as HCO and NO2 with lower precision, in the reaction region, have been studied. It was observed that an increment in injection pressure and... 

    Gas phase synthesis of SnOx nanoparticles and characterization

    , Article Journal of Alloys and Compounds ; Volume 470, Issue 1-2 , 2009 , Pages 289-293 ; 09258388 (ISSN) Khakpash, N ; Simchi, A ; Kohi, P ; Sharif University of Technology
    2009
    Abstract
    Tin oxide nanoparticles with an average size ranging from 4 to 80 nm were synthesized by oxidation of tin vapor in a low vacuum (10-40 mbar) reactor containing an Ar/O2 gas mixture. The effect of oxygen and argon partial pressure on the phase formation, size characteristics and morphology of the particles was studied by transmission electron microscopy (TEM) and X-ray diffraction (XRD) method. Electron spectroscopy chemical analysis (ESCA) was used to study the state of the particle surfaces. It was shown that with increasing the oxygen partial pressure, coarser SnOx particles were synthesized. The ESCA shift for the tin 3d5/2 line was 2 eV and the separation between this line and the oxygen... 

    Optimized bioleaching of copper by indigenous cyanogenic bacteria isolated from the landfill of e-waste

    , Article Journal of Environmental Management ; Volume 261 , 2020 Arab, B ; Hassanpour, F ; Arshadi, M ; Yaghmaei, S ; Hamedi, J ; Sharif University of Technology
    Academic Press  2020
    Abstract
    In this study, indigenous cyanogenic bacterial strains were isolated on nutrient, minimal salt, and soil extract media at various culture conditions from two distinct landfills of e-waste, Iran. Based on their cyanide formation profiles, five most potent isolates were selected for optimization and to this end, the influence of the most effective factors on cyanide production including pH, glycine concentration and temperature were assessed using one-factor at a time method (OFAT). Initial pH of 7, glycine concentration of 2 g/L and temperature of 30°C were obtained as optimal conditions for most of the isolates. Additionally, two bioleaching processes were applied for each bacteria to detect...