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    H2S sensing properties of added copper oxide in WO3

    , Article Key Engineering Materials ; Volume 543 , March , 2013 , Pages 145-149 Nowrouzi, R. (Rasoul) ; Razi Astaraei, F. (Fatemeh) ; Kashani, Sh. (shima) ; Iraji Zad, A. (Azam) ; Sharif University of Technology
    Abstract
    We study Hydrogen sulfide gas detection properties of pure and 1% copper oxide added WO3 thin films. The spin coated deposits on alumina substrates were annealed at 500 C for 1 hour in order to improve the crystallinity of the films. The sensitivity of pure tungsten oxide is poor even at temperatures of about 100 C but the doped samples exhibit good response to H2S gas. Our data show sensitivity of about 1500 in 10 ppm diluted gas in air at 100 C. The films are sensitive to the gas even at 250 ppb (sensitivity about 2) H2S concentration at 100 C but with rather long recovery time. Crystal structure, morphology and chemical composition of samples were studied by X-Ray diffraction (XRD),... 

    The kinetic study of H2S formation and desorption on the S/Pt(111) surface by computer simulation

    , Article Surface Review and Letters ; Volume 10, Issue 5 , 2003 , Pages 745-750 ; 0218625X (ISSN) Moshfegh, A. Z ; Zakeri, K. H ; Sharif University of Technology
    2003
    Abstract
    In this investigation, we have studied the kinetics and mechanism of formation and desorption of H2S on the Pt(111) surface using a kinetic random walk model. The effect of temperature on the H2S formation was studied in the range of 85-150 K. It was observed that a maximum amount of H2S is formed at 90 K and the amount is reduced at higher temperatures. H2S production yield as a function of time at different initial sulfur coverage ranging from 0.02 to 0.33 ML (1 ML ≃ 1 x 1015 atoms/cm2) was also examined. It was obvious that as the initial S coverage increases, the rate of H2S formation rapidly increases and reaches a maximum value and then declines gradually. Furthermore, according to our... 

    Sensitive and selective room temperature H2S gas sensor based on Au sensitized vertical ZnO nanorods with flower-like structures

    , Article Journal of Alloys and Compounds ; Volume 628 , April , 2015 , Pages 222-229 ; 09258388 (ISSN) Hosseini, Z. S ; Mortezaali, A ; Iraji Zad, A ; Fardindoost, S ; Sharif University of Technology
    Elsevier Ltd  2015
    Abstract
    Pursuing a sensing structure with a large effective surface area, partial ordered arrays of ZnO nanorods with flower-like structures are introduced for gas sensing applications. Room temperature H2S response of the grown structure shows significant enhancement after modification with Au nanoparticles. High response (about 1270 at 6 ppm H2S gas) and selectivity were achieved by depositing an Au layer with nominal thickness ∼6 nm. X-ray photoelectron spectroscopy (XPS) was utilized to describe the H2S sensing mechanism  

    H2S gasochromic effect of mixed ammonium salts of phosphomolybdate nanoparticles synthesized by microwave assisted technique

    , Article Sensors and Actuators, B: Chemical ; Volume 237 , 2016 , Pages 715-723 ; 09254005 (ISSN) Imani, M ; Iraji zad, A ; Tadjarodi, A ; Sharif University of Technology
    Elsevier B.V  2016
    Abstract
    In the present paper, new H2S gasochromic nanomaterial of mixed silver nickel ammonium phosphomolybdate synthesized by microwave assisted technique is reported. The microwave treatment was performed in the solid phase using urea and ammonium nitrate as the promoter and oxidizer agents. The designed process allows rapid synthesis of large amounts of this product in nanosized particulate morphology. Morphological and structural features of the prepared products were studied in detail. Chemical analyses indicated a stoichiometry of (NH4)0.5Ni0.75AgPMo12O40·4H2O revealing a Keggin-type framework with substitution of silver and nickel cations in its secondary structure. A home-made set-up was... 

    Solubility of CO2 and H2S in the ionic liquid 1-ethyl-3-methylimidazolium trifluoromethanesulfonate

    , Article Journal of Natural Gas Science and Engineering ; Volume 30 , Volume 30 , 2016 , Pages 583-591 ; 18755100 (ISSN) Nematpour, M ; Jalili, A. H ; Ghotbi, C ; Rashtchian, D ; Sharif University of Technology
    Elsevier  2016
    Abstract
    The solubility of carbon dioxide and hydrogen sulfide gases in the ionic liquid 1-ethyl-3-methylimidazolium trifluoromethanesulfonate ([C2mim][OTf]) was measured at temperatures from (303.15-353.15) K and pressures up to about 3.0 MPa. The Henry's law constants were determined from the new experimental data, which in turn were used to derive the change of some thermodynamic functions of dissolution of the gases in that particular ionic liquid. The new experimental data were correlated by a combination of the extended Henry's law and Pitzer's model for the excess Gibbs energy. The average relative percent deviation (ARD%) of correlated molality values from experimental data are within... 

    Origin of working temperature in H2S sensing process of SnO2-CuO thin bilayer: A theoretical macroscopic approach

    , Article Sensors and Actuators, B: Chemical ; Volume 252 , 2017 , Pages 944-950 ; 09254005 (ISSN) Boroun, Z ; Ghorbani, M ; Mohammadpour, R ; Moosavi, A ; Sharif University of Technology
    Elsevier B.V  2017
    Abstract
    Resistive sensors composed of SnO2 and CuO, are known to be highly efficient in detection of detrimental H2S gas in terms of sensitivity, selectivity and speed. Recently, dependency of electrical response of the sensor toward H2S gas concentration has been related to the selective mechanism (formation of CuS) by a theoretical model. Another important factor in design of gas sensors is the working temperature which so far has not been explicitly explained for H2S sensing process of SnO2-CuO system. In present study, origin of this temperature for SnO2-CuO thin bilayer based on the selective mechanism has been theoretically interpreted. For this purpose, Poisson, Laplace and continuity... 

    Optimum operating conditions for direct oxidation of H2S in a fluidized bed reactor

    , Article World Academy of Science, Engineering and Technology ; Volume 77 , 2011 , Pages 411-415 ; 2010376X (ISSN) Golestani, F ; Kazemeini, M ; Fattahi, M ; Amjadia, A ; Sharif University of Technology
    Abstract
    In this research a mathematical model for direct oxidization of hydrogen sulfide into elemental sulfur in a fluidized bed reactor with external circulation was developed. As the catalyst is deactivated in the fluidized bed, it might be placed in a reduction tank in order to remove sulfur through heating above its dew point. The reactor model demonstrated via MATLAB software. It was shown that variations of H 2S conversion as well as; products formed were reasonable in comparison with corresponding results of a fixed bed reactor. Through analyzing results of this model, it became possible to propose the main optimized operating conditions for the process considered. These conditions included;... 

    A highly efficient MIL-101(Cr)–Graphene–molybdenum oxide nano composite for selective oxidation of hydrogen sulfide into elemental sulfur

    , Article Journal of Industrial and Engineering Chemistry ; Volume 71 , 2019 , Pages 308-317 ; 1226086X (ISSN) Pourreza, A ; Askari, S ; Rashidi, A ; Fakhraie, S ; Kooti, M ; Shafiei Alavijeh, M ; Sharif University of Technology
    Korean Society of Industrial Engineering Chemistry  2019
    Abstract
    Hybrid composites of MIL-101(Cr) and Nanoporous Graphene with ratios in the range of 10–50% were prepared via hydrothermal synthesis method. This study deals with an experimental investigation on selective oxidation of H2S into elemental sulfur in the range of 200–270 °C, the catalyst activity and selectivity toward sulfur was studied. High-temperature reactor tests indicated that the MIL-101(Cr)–NPG50–Mo could be a promising candidate with conversion and selectivity of 100% and 99.5% at 200 °C. The MIL-101(Cr)–NPG50–Mo stability showed there were not any significant changes in physical properties, the activity was evaluated after 20 h which was completely stable without any changes  

    Photo-Electrochemical application of ZnOG thin film for in situ monitoring of steel sour corrosion

    , Article Surface Engineering and Applied Electrochemistry ; Volume 56, Issue 2 , 2020 , Pages 242-247 Razavizadeh, O ; Ghorbani, M ; Shafiekhani, A ; Sharif University of Technology
    Pleiades Publishing  2020
    Abstract
    Abstract: Further to traditional corrosion monitoring techniques for rated deteriorations, nowadays modern electrochemical monitoring methods are promising for the control of non-rated damage mechanisms. Considering carbon steel as the most commonly used alloy in the oil and gas industry, there are special grades under NACE MR0175 standard which are immune to sour corrosion. However, according to the industry reports, their immunity can be terminated by upset conditions or on site repairs. This issue will impose either a high operational risk or exorbitant maintenance and inspection costs. Hence, in this paper, a new monitoring technology framework is discussed to lessen a catastrophic... 

    N-doped CNT nanocatalyst prepared from camphor and urea for gas phase desulfurization: experimental and DFT study

    , Article Journal of the Taiwan Institute of Chemical Engineers ; Volume 85 , April , 2018 , Pages 121-131 ; 18761070 (ISSN) Ghasemy, E ; Banna Motejadded, H ; Rashidi, A ; Hamzehlouyan, T ; Yousefian, Z
    Taiwan Institute of Chemical Engineers  2018
    Abstract
    In the present work, mesoporous nitrogen-doped carbon nanotubes (N-CNTs) were synthesized by using a low-cost and unique set of precursors (camphor and urea). The CVD method at 1000 °C was used with different camphor/urea ratios, and Co-Mo/MgO nanocatalyst was utilized as growth catalyst. Application of mesoporous N-CNTs in selective oxidation of H2S was studied experimentally and N-CNTs interactions with H2S was also investigated using DFT calculations. The as-synthesized N-CNTs were characterized using FTIR, FE-SEM, elemental analysis, X-ray diffraction (XRD), XPS and nitrogen adsorption/desorption. The N-CNT2 sample with urea to camphor ratio (U/C) of 1 showed the highest sulfur yield at... 

    High yield of CO and synchronous s recovery from the conversion of CO2 and H2S in natural gas based on a novel electrochemical reactor

    , Article Environmental Science and Technology ; Volume 55, Issue 21 , 2021 , Pages 14854-14862 ; 0013936X (ISSN) Bai, J ; Zhang, B ; Zhang, Y ; Zhou, C ; Wang, P ; Zha, L ; Li, J ; Simchi, A ; Zhou, B ; Sharif University of Technology
    American Chemical Society  2021
    Abstract
    H2S and CO2 are the main impurities in raw natural gas, which needs to be purified before use. However, the comprehensive utilization of H2S and CO2 has been ignored. Herein, we proposed a fully resource-based method to convert toxic gas H2S and greenhouse gas CO2 synchronously into CO and elemental S by using a novel electrochemical reactor. The special designs include that, in the anodic chamber, H2S was oxidized rapidly to S based on the I−/I3− cyclic redox system to avoid anode passivation. On the other hand, in the cathodic chamber, CO2 was rapidly and selectively reduced to CO based on a porous carbon gas diffusion electrode (GDE) modified with polytetrafluoroethylene and cobalt... 

    Highly uniform molybdenum oxide loaded N-CNT as a remarkably active and selective nanocatalyst for H2S selective oxidation

    , Article Science of the Total Environment ; Volume 711 , 2020 Ghasemy, E ; Emrooz, H. B. M ; Rashidi, A ; Hamzehlouyan, T ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    Selective oxidation of H2S to elemental sulfur is a low cost and highly efficient process for sulfur removal from H2S-containing hydrocarbon streams in medium scale (i.e. 0.2–10 ton sulfur/day) for environmental protection and prevention of emitting toxic gases to the atmosphere. In this research, in order to prepare a highly active and selective nanocatalyst for selective oxidation of hydrogen sulfide, for the first time, molybdenum oxides were loaded uniformly over nitrogen- doped carbon nanotubes through incipient wetness impregnation. Different metal loadings including 5, 10, and 15 wt% Mo were considered in the synthesis procedure to achieve the optimized performance and provide...