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    Manufacturing and Evaluation of Carbon Dioxide Hydrogenation Reaction Catalyst for Methanol Production

    , M.Sc. Thesis Sharif University of Technology Esmaeili, Mohammad (Author) ; Fotovat, Farzam (Supervisor) ; Zamaniyan, Akbar (Supervisor) ; Zamani, Yahya (Co-Supervisor) ; Rashidzadeh, Mehdi (Co-Supervisor)
    Abstract
    The hydrogenation of carbon dioxide to methanol represents a promising route for the efficient use of an anthropogenic greenhouse gas, in which catalysts play a key role in carbon dioxide conversion and methanol selectivity. In this study, firstly, CuO-ZnO-Al2O3, CuO-ZnO-ZrO2, CuO-ZnO-ZrO2-Al2O3, CuO-ZnO-Al2O3-CeO2 and CuO-ZnO-ZrO2-CeO2 catalysts were made using co-precipitation method, then these catalysts were characterized by inductively coupled plasma optical emission spectrometry, specific surface area and pore size distribution, X-ray diffraction, Field Emission Scanning Electron Microscopy, temperature programmed reduction. Finally, in order to compare the performance of the catalysts... 

    Effect of synthesis conditions on performance of a hydrogen selective nano-composite ceramic membrane

    , Article International Journal of Hydrogen Energy ; Volume 37, Issue 20 , October , 2012 , Pages 15359-15366 ; 03603199 (ISSN) Amanipour, M ; Safekordi, A ; Ganji Babakhani, E ; Zamaniyan, A ; Heidari, M ; Sharif University of Technology
    Elsevier  2012
    Abstract
    A hydrogen-selective nano-composite ceramic membrane was prepared by depositing a dense layer composed of SiO2 and Al2O 3 on top of a graded multilayer substrate using co-current chemical vapor deposition (CVD) method. The multilayer substrate was made by dip-coating a macroporous α-alumina tubular support by a series of boehmite solutions to get a graded structure. Using DLS analysis, it was concluded that decreasing hydrolysis time and increasing acid concentration lead to smaller particle size of boehmite sols. XRD analysis was carried out to investigate the structure of intermediate layer and an optimized calcination temperature of 973 K was obtained. SEM images indicated the formation... 

    Effect of CVD parameters on hydrogen permeation properties in a nano-composite SiO 2-Al 2O 3 membrane

    , Article Journal of Membrane Science ; Volume 423-424 , 2012 , Pages 530-535 ; 03767388 (ISSN) Amanipour, M ; Ganji Babakhani, E ; Safekordi, A ; Zamaniyan, A ; Heidari, M ; Sharif University of Technology
    2012
    Abstract
    Tubular ceramic membranes were synthesized by depositing a dense layer of silica-alumina on top of a multilayer substrate using co-current chemical vapor deposition (CVD) method. The multilayer substrate was prepared by coating with a series of bohemite sols with certain particle sizes. Cross-sectional and surface images obtained from high resolution FESEM showed that the intermediate layer had a thickness of about 1μm and the top selective layer was uniform and dense with a thickness of less than 100nm. Permeance tests, which were carried out with H 2, CO 2, N 2 and CH 4 at a high temperature range of 923-1073K, indicated that gas permeation took place via different mechanisms through... 

    Dopant properties of the BaCeO3-based proton conductor for hydrogen separation

    , Article CHISA 2012 - 20th International Congress of Chemical and Process Engineering and PRES 2012 - 15th Conference PRES 2012 ; 2012 Heidari, M ; Safekordi, A ; Zamaniyan, A ; Babakhani, E. G ; Amanipour, M ; Sharif University of Technology
    2012
    Abstract
    As the demand for hydrogen increases, a practical way of separating pure hydrogen from a gas mixture, e.g., synthesis gas, is becoming more important. Among the various separation techniques, dense membranes with mixed protonic-electronic conductors offer a simple way for obtaining hydrogen from gas streams at high temperatures. The hydrogen permeation and stability of BaCe0.8Y0.1M0.1O3-δ (M= Fe, Ni, Co, Yb) perovskite-type membranes were studied at high temperatures. A single phase perovskite structure with orthorhombic configuration for all membranes was observed. For BaCe0.8Y0.1M0.1O3-δ (M = Ni, Yb) membrane, the permeation flux increased by increasing temperature due to the higher... 

    Comparison of microstructure and hydrogen permeability of perovskite type ACe0.9Y0.1O3-δ (A is Sr, Ba, La, and BaSr) membranes

    , Article International Journal of Hydrogen Energy ; Volume 40, Issue 20 , 2015 , Pages 6559-6565 ; 03603199 (ISSN) Heidari, M ; Safekordi, A ; Zamaniyan, A ; Ganji Babakhani, E ; Amanipour, M ; Sharif University of Technology
    2015
    Abstract
    Hydrogen permeation through ACe0.9Y0.1O3-δ (A = Sr, Ba, La, and BaSr) perovskite-type membranes was studied at high temperatures. X-ray diffraction (XRD) and thermogravimetric analysis (TGA) were used to characterize phase structure and phase stability of the membrane. The XRD results showed the formation of a single phase of perovskite structure with configuration orthorhombic for BCY and BSCY membranes. Based on the TGA results, it was found that the phase stability increases in the order of LCY < SCY < BCY < BSCY. The microstructure examinations of the synthesized membranes studied by scanning electron microscopy (SEM) showed the formation of a dense-like... 

    Performance of a nickel-alumina catalytic layer for simultaneous production and purification of hydrogen in a tubular membrane reactor

    , Article RSC Advances ; Volume 6, Issue 79 , 2016 , Pages 75686-75692 ; 20462069 (ISSN) Amanipour, M ; Towfighi, J ; Zamaniyan, A ; Ganji Babakhani, E ; Heidari, M ; Sharif University of Technology
    Royal Society of Chemistry  2016
    Abstract
    A catalytic membrane reactor was synthesized by coating a 4-5 micron thick Ni/γ-Al2O3 layer on top of a hydrogen selective SiO2/Al2O3 composite membrane using a sol-gel method. Mercury intrusion and BET analysis indicated a uniform size distribution with an average pore size of 285 nm and average surface area of 279 m2 g-1. Single-component permeation tests were carried out for H2, CH4 and CO2 in the temperature range of 650-800 °C and the results showed the same permeance and selectivity values for hydrogen as the composite membrane without a catalytic layer. Performance of the catalytic membrane was evaluated by using as a membrane reactor for the methane steam reforming reaction with a... 

    Bioactivity of Surface Modified Titanium Alloy Ti-6Al-4V ELI by Pack Siliconizing in Simulated Body Fluid

    , M.Sc. Thesis Sharif University of Technology Rezvani, Alireza (Author) ; Ekrami, Ali Akbar (Supervisor) ; Ziaei Moayyed, Ali Akbar (Supervisor)
    Abstract
    Titanium alloy Ti-6Al-4V ELI with high biocompatibility and corrosion resistance, has a lot of applications in biomedical engineering. Disadvantage of this alloy is it’s disability to create a fast and good contact with the host/bone environment, after implanting in the body. Beside that it has low wear resistance. Nowadays to optimize the wear resistance, bioactivity and osteoconduction of surface of implants which are made from this alloy, the surface morphology are optimized in size and distribution. Different surface treatments are used for producing rough and porous surfaces to improve bioactivity along with wear resistance. In this study, surface modification of Ti-6Al-4V ELI was done... 

    Characterization of Metallurgical and Geometrical Parameters on Fracture Behavior of Pure Titanium thin Sheets

    , M.Sc. Thesis Sharif University of Technology Nasiri, Hamid (Author) ; Ekrami, Ali Akbar (Supervisor) ; Ziaei Moayyed, Ali Akbar (Supervisor)
    Abstract
    Commercially pure titanium (CP-Ti) is an important groups of titanium family and because of high strength, low density, high corrosion resistance and biocompatibility, this group of titanium is a suitable choice for application at chemical, petrochemical and medicine industry. Nowadays surgeons have a tendency toward use of CP-Ti instead of Ti-6Al-4V alloy. Moreover, because of body anatomy limitation, use of thick sheets result in high volume and damage soft tissue. Therefore, for sheet thickness reduction, study of the effects of metallurgical and geometrical parameter on fracture behavior of thin sheets is important. In this study, the fracture behavior of CP-Ti thin sheets investigated.... 

    Investigation of the Role of Fiber Reinforcement on the Performance of Rubber Based Friction Material

    , M.Sc. Thesis Sharif University of Technology Arjmand, Mohammad (Author) ; Shojaei, Akbar (Supervisor)
    Abstract
    Friction composites, as a part of vehicle safety system, should hold some characteristics such as high wear resistance, low weight, durability, low noise, stable friction coefficient, availability and low price. It is very interested to use mixture of rubber and resin in friction materials to reach good properties of both rubber and resin simultaneously. This mixture is especially used in railway’s brake pads. Fibrous reinforcement is another important ingredient in friction composites. Asbestos used to be the most significant fibrous reinforcement due to its appropriate tribological specifications but the recent ban on asbestos by environmental protection agency has forced the friction... 

    Experimental and Theoretical Investigation on the Frictional Performance of Friction Materials of Brake System

    , M.Sc. Thesis Sharif University of Technology Saffar, Amir (Author) ; Shojaei, Akbar (Supervisor)
    Abstract
    Various composite friction materials containing 40 vol.% organic binder (phenolic resin plus styrene-butadiene-rubber (SBR)) with varying phenolic-resin/SBR ratio were prepared. The content of phenolic resin in each composite was indicated by the resin value (RV) index ranging between 0-100%. The composites with RVs greater than 50% form resin-based friction materials in which the primary binder is the phenolic resin. For RVs less than 50%, the composites become the rubber-based materials where the primary binder is the SBR. The analysis of mechanical properties exhibited that the conformability of the composites increases upon incorporation of SBR. The frictional analysis revealed that type... 

    Neutral Spin Collective Mode in Carbon Nanotubes

    , M.Sc. Thesis Sharif University of Technology Sayyad, Sharareh (Author) ; Jafari, Akbar (Supervisor)
    Abstract
    In 2002 Baskaran and Jafari published an article that was about a spin-1 collective mode. Similarity between carbon nanotubes and graphene was a motivation for working on this project, in order to find another spin mode by considering random phase approximation as a simple way of finding collective motion of a physical systems. Moreover rolling graphene sheet induce diffrent physical properties as a result of chiral axis . In this project we focus only on achiral nanotubes and at last find two collective modes in this structures  

    Investigation on the Effect of MWCNT on the Properties of NR/SBR Rubber Blend and the Comparison with Conventional and High Structure Carbon Blacks

    , M.Sc. Thesis Sharif University of Technology Ahmadi, Morteza (Author) ; Shojaei, Akbar (Supervisor)
    Abstract
    In recent years, using the nanoparticles has caused a great revolution and development into the materials structure and the polymer science developed corresponding to important role of it in consumer goods. So Carbon Nano Tubes (CNTs) belonging to the precious physical, Mechanical and thermal properties has been studied. The CNT is mixed by mechanical and solution methods with elastomeric matrix. In this research the mechanical method used, because of industrial applications. Although, there are many challenges against dispersion owing to weak cohesion between CNTs and matrix in the mechanical method. The progress in rubber composites reinforced by CNTs and other reinforcement and as well as... 

    Evaluating and Improving the Reliability of Reversible Adiabatic Logic Styles

    , M.Sc. Thesis Sharif University of Technology Akbar, Reza (Author) ; Ejlali, Alireza (Supervisor)
    Abstract
    Adiabatic logic families are a group of logic circuits which operate based on adiabatic principles to tremendously reduce power consumption. These families have basic difference with common logic families in transistor level structure and there signals are not quadrangular but trapezoidal. Also, in these systems the source lines and clock pulse are the same. Research on Adiabatic families needs theoretical information in reversible computing. So we will start this project with explaining fundamental information in this field. After that some of these logic families are introduced and three important and widely used of them (SCRL-RERL-2LAL) are chosen to simulate. In each of these families... 

    Fabrication and Characterization of Phenolic Resin/Glass Fiber/Organoclay Nanocomposites

    , M.Sc. Thesis Sharif University of Technology Eesaee, Mostafa (Author) ; Shojaei, Akbar (Supervisor)
    Abstract
    In this research the effects of addition of clay in phenolic glass fiber reinforced composite has been investigated. Layered clay/phenolic nanocomposite resin systems were first prepared with 0.5, 1.5 and 2.5 wt% of Cloisite Na+ (CN) and Cloisite 30B (CB). After that the suspension was hold in an ultrasonic bath for 30 min in order to enhance nanodispersion of the clay platelet within the resin. The phenolic/clay solution was used to impregnate the glass fabric using the solvent impregnation method. After suspension for 2 days in the room with natural condition, the impregnated fabrics were pre-cured at 135 ˚C in an oven for 3.5 min to obtain B-stage prepregs. Seven layers of prepregs (150... 

    Modeling and Optimization of Composite Brake Friction Materials Formulation

    , M.Sc. Thesis Sharif University of Technology Khazaei, Ali (Author) ; Shojaei, Akbar (Supervisor)
    Abstract
    Automotive brake pad is one of the most widely used composites. Commonly, more than 10 components are applied to make these materials and due to the large number of components and interactions between them, choice, explaination of the behavior and optimization of brake friction materials are some industry's challenges. Until now, some methods have been presented to design and optimization of these materials, but due to different complexities, there is lack of practical method that could be used for explaining the tribological behavior, engineering calculation and optimization of brake friction materials. Today, formulation of the current brake pads in the industry has mainly come from trial... 

    An Investigation on the Behavior of Nanoparticle Filled Brake Friction Materialls

    , M.Sc. Thesis Sharif University of Technology Jahanmard, Parisa (Author) ; Shojaei, Akbar (Supervisor)
    Abstract
    The most common type of polymer based composite friction materials are usually in vehicles as the brake pads are used and must characteristics such as high wear resistance, low weight, durability, low noise and stable friction coefficient. Polymer matrix, in addition to providing other material suitable for storage, the final properties, including mechanical properties, heat, friction and wear is also effective. Thermoset resin polymer matrixes (usually phenolic resin) are used in the brake pads which used for automotive and in some cases, rubber particles as powder formulations may be entered, in order to achieve good properties of rubber and resin simultaneously. Nanofillers because of... 

    Investigation on the Role of Curing System on the Cure Kinetics and Network Structure of NR/SBR Blend Filled with Nanodiamond

    , M.Sc. Thesis Sharif University of Technology Rabiei, Sima (Author) ; Shojaei, Akbar (Supervisor)
    Abstract
    Vulcanization is one the most crucial process in elastomer manufacturing products. It has been shown that network structure and curing kinetic are strongly dependent on curing system formulation. In addition reinforcing fillers in elastomers can affect them as well. By commencement of nanofillers in rubber domain, effects of nanofiller presence on rubber behavior have been investigated by reaserchers.
    In this Project the effect of different curing system formulations on vulcanization kinetic and network structure of NR/SBR elastomeric matrice filled by nanodiamond is investigated. Different ingredients and nanodiamond were added to matrix by mechanical mixing in two roll mill. The... 

    Collaborative Design and Manufacturing - a Platform for Collaborative Management of Product Development Using Cloud Computing Infrastructure within Small and Medium-Sized Enterprises

    , M.Sc. Thesis Sharif University of Technology Akbar, Fatemeh (Author) ; Houshmand, Mahmoud (Supervisor)
    Abstract
    This study reviews the platforms developed in the context of collaborative product design by using cloud computing infrastructures in the field of small and medium-sized enterprises (SMEs), and proposes some criteria to evaluate these platforms. Considering the limitations of these platforms, a network has been designed for collaboration between the engineering, procurement, and construction companies as well as the employers. In this network, by registering a project by the employer, the bidding process begins. The member firms in the network, by controlling the timing and through a proper allocation of labour forces, propose their preliminary designs as well as their bid prices to the... 

    Preparation and Characterization of Morphology and Mechanical Properties of PA6/Nanodiamond Composites

    , M.Sc. Thesis Sharif University of Technology Karami, Pooria (Author) ; Shojaei, Akbar (Supervisor)
    Abstract
    Polyamide or Nylon, due to its remarkable mechanical and tribological properties, has many engineering applications. Hence, improving the properties can develop the polyamide applications. In this study, Polyamide 6 (PA6) has been used as matrix with nanodiamond (ND) reinforcement. Spherical shape, chemically active surface as well as remarkable mechanical properties make nanodiamond an ideal candidate for improving polymers properties. Poor dispersion and agglomeration are present however major problems in achieving improved properties in nanocomposites. To deal with this problem, nanodiamonds were surface modified using Ethylenediamine (EDA) and Hexamethylenediamine (HMD). Nanocomposite... 

    Anderson Impurity Model in Dirac Matter

    , Ph.D. Dissertation Sharif University of Technology Mashkoori, Mahdi (Author) ; Jafari, Akbar (Supervisor)
    Abstract
    In this thesis we have been mainly interested in studying Single Impurity Anderson model (SIAM) in Dirac fermions. Although this model seems to be simple, the rich physics of SIAM can not be underestimated. In this thesis we were interested in Dirac materials, systems which their low energy excitations are described by Dirac equation.Therefore, considering Dirac material in two dimensions(2D), we briefly review the distinct features of one atom thick layer of carbon. In addition, we will explain the effective Hamiltonian of Bismuth near L point which is considered a three dimensional(3D) Dirac material. Because of very strong spin-orbit interaction, bismuth is a key element in topological...