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    A simple, economical, and highly efficient synthesis of β-hydroxynitriles from epoxide under solvent free conditions

    , Article Journal of Molecular Catalysis A: Chemical ; Volume 247, Issue 1-2 , 2006 , Pages 159-161 ; 13811169 (ISSN) Mirmashhori, B ; Azizi, N ; Saidi, M. R ; Sharif University of Technology
    2006
    Abstract
    A simple, rapid, and highly regioselective green protocols for the synthesis of β-hydroxylnitriles by the direct reaction of epoxides with trimethylsilyl cyanide in the presence of catalytic amount of lithium perchlorate under solvent free conditions in high to quantitative yield is reported. © 2005 Elsevier B.V. All rights reserved  

    A simple, economical, and highly efficient synthesis of β-hydroxynitriles from epoxide under solvent free conditions [electronic resource]

    , Article Journal of Molecular Catalysis A: Chemical ; 2006, Volume 247, Issues 1–2, Pages 159–161 Mirmashhouri, B ; Azizi, N ; Saidi, M. R ; Sharif Univercity of Technology
    Abstract
    A simple, rapid, and highly regioselective green protocols for the synthesis of β-hydroxylnitriles by the direct reaction of epoxides with trimethylsilyl cyanide in the presence of catalytic amount of lithium perchlorate under solvent free conditions in high to quantitative yield is reported  

    Determination of the optimum conditions for recovery of gold from zarshuran refractory gold sulfide ore

    , Article Iranian Journal of Materials Science and Engineering ; Volume 10, Issue 4 , 2013 , Pages 8-17 ; 17350808 (ISSN) Aazami, M ; Yoozbashizadeh, H ; Darban, A. K ; Abdolahi, M ; Sharif University of Technology
    2013
    Abstract
    The orthogonal array design has been used to determine the optimum conditions for gold recovery from Zarshuran refractory gold sulflde ore (Iran) by direct cyanidation and roasting-cyanidation. The Taguchi method was used as the experimental design to determine the optimum conditions of dissolution behavior of gold with cyanidation and roasting-cyanidation from Zarshuran refractory gold ore. The experimental conditions were studied in the range of 10-12 for pH, 20-40 for time(h), 400-1200 for cyanide content (g/ton) and 30 -40 for percent solid(%). Orthogonal array (OA) L9 (34) consisting of four parameters each with three levels, was chosen. From this study for direct cyanidation the total... 

    Biodegradation of cyanide by a new isolated strain under alkaline conditions and optimization by response surface methodology (RSM)

    , Article Journal of Environmental Health Science and Engineering ; Vol. 12, issue. 1 , 2014 Mirizadeh, S ; Yaghmaei, S ; Nejad, Z. G ; Sharif University of Technology
    Abstract
    Background: Biodegradation of free cyanide from industrial wastewaters has been proven as a viable and robust method for treatment of wastewaters containing cyanide. Results: Cyanide degrading bacteria were isolated from a wastewater treatment plant for coke-oven-gas condensate by enrichment culture technique. Five strains were able to use cyanide as the sole nitrogen source under alkaline conditions and among them; one strain (C2) was selected for further studies on the basis of the higher efficiency of cyanide degradation. The bacterium was able to tolerate free cyanide at concentrations of up to 500 ppm which makes it a good potentially candidate for the biological treatment of cyanide... 

    Photocatalytic degradation of methyl orange and cyanide by using TiO2/CuO composite

    , Article Desalination and Water Treatment ; Volume 57, Issue 46 , 2016 , Pages 22029-22038 ; 19443994 (ISSN) Koohestani, H ; Sadrnezhaad, S. K ; Sharif University of Technology
    Taylor and Francis Inc  2016
    Abstract
    In this study, the effect of adding 5–12.5 wt% CuO to TiO2 on photocatalytic properties of the nano-composite TiO2/CuO was investigated. The products were characterized by X-ray diffractometer, SEM, Brunauer–Emmett–Teller (BET), and DRS. BET-specific surface area of the TiO2/CuO composites was lower than that of the pure TiO2. Incorporation of CuO into TiO2 shifted absorption spectra to the visible region. As the CuO content increased from 0 to 12.5%, a clear decrease in optical band gap from 2.95 to 2.30 eV was observed. The photocatalytic performance was determined by methyl orange degradation and cyanide photo-oxidation under ultraviolet irradiation. However, the excessive incorporation... 

    A ligand and palladium-free avenue for cyanation of aryl Halides: The art of samarium powder in C–C coupling reaction

    , Article ChemistrySelect ; Volume 4, Issue 33 , 2019 , Pages 9618-9621 ; 23656549 (ISSN) Matloubi Moghaddam, F ; Pourkaveh, R ; Gholamtajari, M ; Karimi, A ; Sharif University of Technology
    Wiley-Blackwell  2019
    Abstract
    This is the first study of samarium powder catalyzed cyanation reaction of aryl halides, bearing electron-withdrawing and electron-releasing substituents, in the presence of NaCN to afford corresponding benzonitriles in high yields. This protocol takes the advantage of being done in the absence of additive, ligand and precious transition metals such as palladium. © 2019 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim  

    Trimethylsilyl cyanide addition to carbonyl compounds under neutral condition catalyzed by iodine

    , Article Phosphorus, Sulfur and Silicon and the Related Elements ; Volume 178, Issue 10 , 2003 , Pages 2111-2115 ; 10426507 (ISSN) Azizi, N ; Saidi, M. R ; Sharif University of Technology
    Taylor and Francis Ltd  2003
    Abstract
    Reaction of trimethylsilyl cyanide with aliphatic or aromatic aldehydes and ketones in the presence of a catalytic amount of elemental iodine produced the corresponding cyanohydrin trimethylsilyl ethers in very short time and high yields  

    Gold and Gold-Nickel Pulse Electrodeposition

    , M.Sc. Thesis Sharif University of Technology Siavash Moakhar, Roozbeh (Author) ; Dolati, Abolghasem (Supervisor) ; Ghorbani, Mohammad (Supervisor)
    Abstract
    In recent years use of expensive metals plating has taken much interest from decorative state to industry trends. In this research the effect of pulse plating on the structure and properties of pure gold and gold-nickel has been studied.In case of pure gold pulse plating from cyanide bath, it was shown that current efficiency increased by increasing duty cycle up to 30% and decreased, afterwards. By increasing frequency from 1 to 150 Hz current efficiency decreased. By reducing the level of frequency, average grain size was increased, owing to the occurrence of recrystallization. An increase in the value of current density was also shown to be responsible for a reduction in current... 

    Separation of Yttrium - 90 From Radioactive Liquid Wastes by Using Liquid – Membrane Methods

    , M.Sc. Thesis Sharif University of Technology Farahmand Asl, Elmira (Author) ; Samadfam, Mohammad (Supervisor) ; Davarkhah, Reza (Supervisor)
    Abstract
    In this research project, It has been investigated the ability of thenoyltrifluoroacetone (HTTA) as a carrier for selective separation of yttrium ions from aqueous media using bulk liquid membrane (BLM) system as a simple model for selective separation of 90Y from radioactive liquid wastes by the mentioned technique. Thus, a study has been made on carrier-mediated transport of yttrium(III) using a bulk liquid membrane prepared by dissolving thenoyltrifluoroacetone (HTTA) in dichloromethane. It has been observed that the use of n-propylamine (n-PA) in source phase as a synergistic reagent showed a marked enhancement of transport of yttrium ion. The source phase comprised of a solution of ... 

    Biological Treatment of Drug Wastewater with Focus on Cyanide Compound

    , M.Sc. Thesis Sharif University of Technology Moradkhani, Mahboobeh (Author) ; Yaghmaei, Soheyla (Supervisor) ; Rustaazad, Reza (Supervisor)
    Abstract
    HCN is a highly valuable precursor to many chemical compounds ranging from polymers to pharmaceutical. Although cyanide can be destroyed and recovered by several processes, it is still widely discussed and examined due to its potential toxicity and environmental impact. The treatment methods for cyanide in common use today are physicochemical processes which have high operating costs and also produce chemical waste. Recently, biological processes have been studied because they are inexpensive and no effect to the environment. Therefore to achieve this object, Stimulation of indigenous microorganisms for waste degradation is a common technology. The process effluent from the gold extraction... 

    Experimental Study of Biological Removal of Cyanides in the Effluent of Coke Oven of Esfhan Steel Company

    , M.Sc. Thesis Sharif University of Technology Mirizadeh, Shabnam (Author) ; Yaghmaei, Soheila (Supervisor)
    Abstract
    The presence of highly toxic cyanides in the effluent of coke oven of steel industries is considered as a critical problem. Owing to high levels of toxicity, control and removal of cyanide are of great importance in this industry. Biological removal of cyanides by indigenous microorganisms offers inexpensive, safe and environmentally compatible option in comparison with chemical and physical methods. The present study primarily focused on the isolation and purification of the microorganisms which utilize cyanide as the sole source of Nitrogen in alkaline conditions. The isolated bacterial strains were investigated through variety of bacteriological and biochemical reactions as well as... 

    Biodegradation of cyanide under alkaline conditions by a strain of pseudomonas putida isolated from gold mine soil and optimization of process variables through response surface methodology (RSM)

    , Article Periodica Polytechnica Chemical Engineering ; Volume 62, Issue 3 , May , 2018 , Pages 265-273 ; 03245853 (ISSN) Moradkhani, M ; Yaghmaei, S ; Ghobadi Nejad, Z ; Sharif University of Technology
    Budapest University of Technology and Economics  2018
    Abstract
    In regard to highly poisonous effects of cyanide ion, concerns have been focused recently on treatment of such compounds in different ways. Four bacterial strains (C1-C4) capable of using cyanide as nitrogen source were isolated from contaminated gold mine soil samples under alkaline conditions at 30 °C, pH 9.5-10.5, and agitation speed 150 rpm. The gram-negative bacterium C3 (identified as Pseudomonas parafulva NBRC 16636(T) by 16S rRNA gene sequencing) was able to tolerate cyanide up to 500 ppm besides removing 93.5% of 200 ppm cyanide in 13 days which was confirmed by microorganisms growth. The addition of basal salts enhanced the removal efficiency of C3 by 16%. Cyanide removal... 

    Comparing the efficacy of catalytic ozonation and photocatalytical degradation of cyanide in industrial wastewater using ACF-TiO2: catalyst characterisation, degradation kinetics, and degradation mechanism

    , Article International Journal of Environmental Analytical Chemistry ; 18 May , 2020 Goodarzvand Chegini, Z ; Hassani, A. H ; Torabian, A ; Borghei, S. M ; Sharif University of Technology
    Taylor and Francis Ltd  2020
    Abstract
    In the present study, the ACF-TiO2 catalyst was synthesised and used as a catalyst for the destruction of toxic cyanide in both synthetic and real industrial wastewaters. The ACF-TiO2 catalyst was found to be micro-porous with the BET surface area of 163 m2/g. The effect of different operational parameters such as catalyst concentration, cyanide concentration, operation time, and ozone concentration were target parameters in the present study. The findings show that 500 mg/L of catalyst is the optimum value for the photocatalytical process to completely oxidise 25 mg/L of cyanide within 10 min. While it was found that 300 mg/L of catalyst in the presence of 200 mg/h ozone is enough to remove... 

    Experimental Studies on the Application of Biosensor for Detection of Toxic Compound

    , M.Sc. Thesis Sharif University of Technology Ghanavati, Mehdi (Author) ; Roosta Azad, Reza (Supervisor) ; Musavi, Abbas (Co-Advisor)
    Abstract
    In this research, an amperometric inhibition biosensor for the detection of cyanide has been fabricated by immobilization of the horseradish peroxidase (HRP) on the surface of glassy carbone electrode (GCE). Chitosan/acrylamide was applied for immobilization of HRP on the working electrode. All electrochemical measurement were carried out with three electrode: Ag/AgCl electrode as reference electrode, GCE as working electrode and platinium electrode as counter electrode which immersed in phosphate buffer solution. The amperometric measurement was done at an applied potential of -100 mV versus Ag/AgCl with a scan rate of 100 mV in the presence of hydroquinone as electron mediator and... 

    Experimental Study on Biosensors for Detection of Biohazards with Nano-structured Metal Oxides Basis

    , M.Sc. Thesis Sharif University of Technology Dadfarmay, Sajad (Author) ; Mashayekhan, Shohreh (Supervisor) ; Vosoughi, Manouchehr (Supervisor)
    Abstract
    In this research, fabrication of a mediator free nano-biosensor for the detection of cyanide has been studied. This biosensor utilizes 75 nm diameter (nano) ZnO particles synthesized with sol- gel method for modification and immobilization of Horseradish peroxidase (HRP). Cyanide plays inhibitory role in decomposition of H2O2 while HRP plays catalyst role in this reaction. Cyanide inhibits enzyme activity thorough binding with enzyme active sites and result in decreasing electrical current in electrochemical decomposition of H2O2. Amperometery response of biosensor shows linear relation between inhibition percent and cyanide concentration in range of 3µM - 24µM with detection limit of 0.62µM... 

    One-pot Synthesis of α-Aminonitriles by Reusable Co(II) Supported Nanocatalyst under Solvent-Free Conditions

    , M.Sc. Thesis Sharif University of Technology Ghiassian, Sara (Author) ; Saidi, Mohammad Reza (Supervisor) ; Rajabi, Fatemeh (Supervisor)
    Abstract
    Considering the widespread applications of α-aminonitriles, their synthesis is of great importance. The Strecker reaction represents a direct and appealing approach for the preparation of α-aminonitriles. With the aim of developing a mild and convenient approach towards the construction of α-aminonitriles, numerous methods have been reported for this important process over the past few decades. These have been mostly related to the optimization of reaction conditions and the use of more challenging substrates including ketimines and ketiminium salts and design of novel and effective catalytic systems. Due to the various advantages of supported heterogeneous catalysts and in our aim to... 

    Photocatalytic Properties of Heat-treated Carbon Nitride to Reduce Cyanide Pollutant from Aqueous Solution

    , M.Sc. Thesis Sharif University of Technology Mahtabpour, Hossein (Author) ; Sadrnezhad, Khatiboleslam (Supervisor)
    Abstract
    Cyanide ion is one of the materials used in various industries related to metallurgy, the release of which in the environment causes water, air and soil pollution. Numerous researchers have used different methods to remove this pollutant from the environment. Comparing these methods with each other, photocatalytic processes have attracted a lot of attention due to the use of sunlight as a sustainable energy source, good efficiency, low cost, etc. Therefore, in the present study, first the heat-treated graphite carbon-nitride photocatalyst was synthesized and then characterized by X-ray diffraction (XRD) tests, infrared spectroscopy (FT-IR), scattered reflectance spectroscopy (DRS),... 

    Modified CMC: Part1-optimized synthesis of carboxymethyl cellulose-g-polyacrylonitrile

    , Article Iranian Polymer Journal (English Edition) ; Volume 14, Issue 2 , 2005 , Pages 131-138 ; 10261265 (ISSN) Zohuriaan Mehr, M. J ; Pourjavadi, A ; Sadeghi, M ; Sharif University of Technology
    2005
    Abstract
    As the first part of a continued research on conversion of carboxymethyl cellulose-sodium salt (CMC) to useful biopolymer-based materials, large numbers of cyanide functional groups were introduced onto CMC by grafting with polyacrylonitrile (PAN). The graft copolymerization reactions were carried out under nitrogen atmosphere using ceric ammonium nitrate (CAN) as an initiator. Evidence of grafting was obtained by comparing FTIR spectra of CMC and the graft copolymer as well as solubility characteristics of the products. The synthetic conditions were systematically optimized through studying the effective factors including temperature and concentrations of initiator, acrylonitrile monomer,... 

    Use of response surface methodology for evaluation of effective parameters in codeposition of Cu-Sn alloys using non-cyanide electroplating solution

    , Article Transactions of the Institute of Metal Finishing ; Volume 90, Issue 1 , January , 2012 , Pages 38-43 ; 00202967 (ISSN) Asnavandi, M ; Ghorbani, M ; Sharif University of Technology
    2012
    Abstract
    A pyrophosphate based solution, as an acidic electrolyte, was developed for bronze electroplating. By using a statistical experimental design, response surface method, the effects of five factors [copper concentration (Cu), tin concentration (Sn), pyrophosphate concentration (P), current density j and pH] on the composition of the electroplated alloy as well as the process efficiency were evaluated. Statistical analysis indicated that all the parameters were significant and a second order polynomial model was successfully fitted to the data for both the alloy composition and the process efficiency. Based on the results obtained, a solution of Cu(II)8.04 g L -1, Sn(II)=26.36 g L -1, P=113.22... 

    A study on the kinetics of gold nanowire electrodeposition in polycarbonate templates

    , Article Journal of Electroanalytical Chemistry ; Volume 645, Issue 1 , June , 2010 , Pages 28-34 ; 15726657 (ISSN) Soleimany, L ; Dolati, A ; Ghorbani, M ; Sharif University of Technology
    2010
    Abstract
    Electrodeposition of gold nanowires is carried out in cyanide solution in polycarbonate templates with pore diameter of 80 nm. Electrochemical methods are utilized to characterize the gold electrodeposition and to obtain the nucleation and growth mechanism. The analysis of cyclic voltammograms shows that the electrodeposition of gold nanowires takes place under diffusion control. Current transients reveal that nucleation mechanism is instantaneous with a three-dimensional growth process. The transition-time measurements show that the gold elecrodeposition occurs as one-electron valence involved in the reaction mechanism. Charge transfer coefficient is also found to be 0.67 ± 0.01. The value...