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    Comparison of ozonation and aeration methods in removal of naphthalene from aqueous solution

    , Article Asian Journal of Chemistry ; Volume 25, Issue 16 , 2013 , Pages 9135-9137 ; 09707077 (ISSN) Derikvand, E ; Borghei, S. M ; Hassani, A. H ; Mirbagheri, S. A ; Javid, A. H ; Sharif University of Technology
    2013
    Abstract
    High molecular mass of naphthalene make it non-biodegradable and the biological methods for treated the pollutant are much time consuming. In this paper, two methods of ozonation and aeration are used to remove naphthalene. Because of the industrial wastewater has a great range of pH, in this study different concentrations of soluble naphthalene are placed in variable pH conditions, different contact times and changes in amount of aeration and ozonation. ANOVA results indicated a significant difference between two methods. The average removal of naphthalene by use of ozonation is 55 % and 37 % for aeration. As results, the best conditions that naphthalene are removed is in acidic environment... 

    Removal of Cr(VI) by modified brown algae Sargassum bevanom from aqueous solution and industrial wastewater

    , Article Journal of the Taiwan Institute of Chemical Engineers ; Volume 44, Issue 6 , 2013 , Pages 977-989 ; 18761070 (ISSN) Javadian, H ; Ahmadi, M ; Ghiasvand, M ; Kahrizi, S ; Katal, R ; Sharif University of Technology
    2013
    Abstract
    The aim of this research work is to investigate sorption characteristic of acid treated brown algae Sargassum bevanom (acid treated S. bevanom) for the removal of Cr(VI) ions from aqueous solutions. The acid-treated alga was prepared by transferring the S. bevanom into 0.5. M HCl and then stirring the mixture at 300. rpm for 6. h at room temperature. The sorption of Cr(VI) ions by batch method is carried out. The optimum conditions of biosorption were found to be: a biomass dose of 0.7. g in 100. ml of Cr(VI), contact time of 110. min and pH 3, respectively. In optimum condition, removal efficiency was 89.64%. It was found that temperature has a positive effect on the removal efficiency.... 

    Treatment of welding electrode manufacturing plant wastewater using coagulation/flocculationnanofiltration as a hybrid process

    , Article Brazilian Journal of Chemical Engineering ; Volume 28, Issue 1 , Mar , 2011 , Pages 73-79 ; 01046632 (ISSN) Golestani, H. A ; Mousavi, M ; Borghei, M ; Sharif University of Technology
    Abstract
    High water consumption and water scarcity make industrial wastewater reuse necessary, especially in those industries characterized by polluted effluents such as welding electrode manufacturing industries. The present paper investigates the coupling of coagulation-flocculation with nanofiltration (NF) to recycle water and reuse it in the process. First, the effect of different concentrations of a mixture of alum (Al2(SO4) 3.18H2O) and ferric chloride (FeCl3) on the pretreatment process was closely studied. Then the NF process was applied for complementary treatment. The NF results show that, by increasing both flow rate and transmembrane pressure (TMP), permeate flux is increased. The NF... 

    Construction of a New Membrane Bioreactor for Industrial Wastewater Treatment

    , M.Sc. Thesis Sharif University of Technology Anvari, Arezoo (Author) ; Seifkordi, Ali Akbar (Supervisor) ; Hemati, Mohmoud (Co-Advisor) ; Rekabdar, Fatemeh (Co-Advisor)
    Abstract
    In recent years membrane bioreactors (MBR) were widely used as an advanced process for industrial wastewater treatment. But fouling issue causes some restrictions in these systems. So for fouling reduction many researches were done.In this study for fouling improvement, blending of hydrophilic polymer (PAN) with main polymer PVDF was used. Blending membrane in phase inversion process with DMAC as solvent and water as non-solvent was made. For pore-forming in membranes, PVP as hydrophilic additive with three different composition was added and then for more enhancement of antifouling property of membrane, TiO2 nanoparticles with four different composition were added to polymeric... 

    Improve the Structure of Membrane Bioreactor to Reduce Fouling for Industrial Waste Water Purification

    , M.Sc. Thesis Sharif University of Technology Razzaghi, Mohammad Hossein (Author) ; Seifkordi, Ali Akbar (Supervisor) ; Hemati, Mahmood (Co-Advisor)
    Abstract
    In the presence project by using of hydrophilic polymer, Cellulose acetate (CA), we tried to modify the membrane made of Polyvinylidine fluoride (PVDF). The membranes were made by phase inversion method. In five levels, at least 10% and at most 30%, CA was added to casting solution. The hydrophilicity of membranes’ surface and pore size was increased. The permeation of the neat membrane of PVDF was less than 10 , on the other hand the permeation of the membranes, which were made by adding CA, was increased up to 500 . The increment of CA more than 20% reduced the porosity of membrane. In the next step to reduce the irreversibility fouling tried to reduce the pore size by adding some... 

    Investigation of Application of Nano-Photocatalytic Degradation for Industrial Wastewater Treatmen

    , M.Sc. Thesis Sharif University of Technology Falahati, Mohammad (Author) ; Roosta Azad, Reza (Supervisor) ; Vossoughi, Manouchehr (Supervisor)
    Abstract
    The main objective of this project is the deposition of photo-catalysts on cement and concrete blocks with an emphasis on commercialization. We started with an extensive study of common methods introduced in previous literature, and conclude with a number of suggestions for industrialization. First, slurry and sol-gel deposition of the photo-catalysts on blocks of type 2 commercial cement which is one of the most used materials in construction of buildings and waste-water treatment plants has been examined to reach a method of sample formation. Due to the simplicity of common methods and low quality of formed samples (less than 5 percent aging efficiency), the obtained experience was used to... 

    Biosorption of Uranium from Uranium Conversion Waste using Aspergillus Niger Fungus

    , Ph.D. Dissertation Sharif University of Technology Sana, Solat (Author) ; Roosta Azad, Reza (Supervisor) ; Yaghmaei, Soheyla (Co-Advisor)
    Abstract
    Presence of heavy metals in industrial waste has always been a serious environmental problem. One of such metals in uranium that is used in important industries such as nuclear industry. Thus, it must be excluded from industrial waste efficiently. This research aimed to study effect of local strain of aspergillus niger in bioabsoprtion of uranium from industrial waste in which good absorption was reached and absorption of local strain was compared with that of control strain obtained from PTCC. Also, local strain was collected from uranium anomalies of Bandar Abbas Mining Site and was used to identify it with reference strains available at NCBI site using PCR and proliferation of part of... 

    Removal of benzoic acid from industrial wastewater using metal organic frameworks: equilibrium, kinetic and thermodynamic study

    , Article Journal of Porous Materials ; Volume 24, Issue 1 , 2017 , Pages 165-178 ; 13802224 (ISSN) Behvandi, A ; Safekordi, A. A ; Khorasheh, F ; Sharif University of Technology
    Springer New York LLC  2017
    Abstract
    In this work, the adsorption of benzoic acid (BA) over metal organic framework of chromium-benzenedicarboxylates (MIL-101) is reported for the first time. The influences of pH, contact time, initial concentration, and temperature of BA solution on the adsorption behavior were investigated. The Langmuir adsorption isotherm was adequate to represent the experimental data (R2 > 0.99) and the adsorption kinetics was well-represented by a pseudo-second order kinetic model (R2 > 0.96). The zeta potential of MIL-101 decreased with increasing pH confirming the importance of electrostatic interactions between MIL-101 and BA as well as the importance of the large pore volume (1.32 m3/g) and large... 

    Conceptual hydrosalinity model for prediction of salt load from wastewater flows into soil and ground water

    , Article International Journal of Environmental Science and Technology ; Volume 6, Issue 3 , 2009 , Pages 359-368 ; 17351472 (ISSN) Abbaspour, M ; Mirbagheri, S. A ; Monavvari, M ; Javid, A. H ; Zarei, H ; Sharif University of Technology
    2009
    Abstract
    Dynamic hydrosalinity models are available, but are not used extensively on a large scale soil which receives wastewater from industrial areas, partly because adequate database are expensive to be obtained. Thus, for this reason, there is an urgent need to assess the salt and other pollutant loads collected in wastewater flows into the soil and/ or ground water systems. A conceptual hydrosalinity model was used on two major underlying principals of mass balance and steady state. This model was initially tested on the 4,117 km2 plains west of the Yazd-Ardakan district in the central part of Iran. This model was used at a time when the soil and ground water salinity problem was serious due to... 

    Fabrication and characterization of high-branched recyclable PAMAM dendrimer polymers on the modified magnetic nanoparticles for removing naphthalene from aqueous solutions

    , Article Microchemical Journal ; Volume 145 , 2019 , Pages 767-777 ; 0026265X (ISSN) Aliannejadi, S ; Hassani, A. H ; Panahi, H. A ; Borghei, S. M ; Sharif University of Technology
    Elsevier Inc  2019
    Abstract
    In this study, magnetic nanoparticles (MNPs) modified with poly amidoamine (PAMAM) dendrimers - by adding methyl acrylate and ethylenediamine continuously till 10th generation- which further anchored to benzaldehyde ligand through polymeric bonding and studied as a novel method for synthesizing a nano sorbent for removing naphthalene (NAP) from aqueous environments. Synthesized nanopolymer was characterized by Fourier transform infrared spectroscopy (FTIR), Field-Emission Scanning Electron Microscopy (FE-SEM) equipped with EDS, X-ray Diffraction (XRD), Vibrating Sample Magnetometry (VSM), thermal gravimetric analysis (TGA). Based on the obtained analysis results synthesized average... 

    Design & Manufacture of IGF/DGF Plant in Semi Industrial Scale for Wastewater Separation

    , M.Sc. Thesis Sharif University of Technology Hemmati, Amir Hossein (Author) ; Ghotbi, Siroos (Supervisor)
    Abstract
    The increasing demand for energy forced to production of oil as one of the main sources of energy. Along with the increase in oil production, the proportion of water produced with oil is increasing relative to the oil produced. On the other hand, environmental restrictions for the discharge of industrial effluents into the environment are becoming more and more stringent every day. Before discharging the effluent into the environment, petroleum must be removed. The complexity of these issues demonstrates the need to develop new technologies and improve the efficiency of existing technologies. Gas flotation are among the technologies adopted in the field that have been used throughout the... 

    Photocatalytic filtration reactors equipped with bi-plasmonic nanocomposite/poly acrylic acid-modified polyamide membranes for industrial wastewater treatment

    , Article Separation and Purification Technology ; Volume 236 , 2020 Amoli-Diva, M ; Irani, E ; Pourghazi, K ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    In this study, two new composite membranes with antifouling and anti-biofouling properties were prepared through the modification of commercial polyamide (PA) discs using combination of in-situ polymerization of polyacrylic acid (PAA) and grafting of two synthesized bi-plasmonic Au-Ag and Ag-Au photocatalysts. The synthesis and characterization of the photocatalysts in batch mode were discussed in details as primary studies. Two intense 405-nm and 532-nm lasers for Ag-Au and Au-Ag photocatalysts, respectively and a solar-simulated xenon lamp for both photocatalysts were applied for photodegradation studies and the results were compared. In addition, the effect of other parameters such as... 

    Energy, exergy, exergoeconomics, and exergoenvironmental assessment of three brine recycle humidification-dehumidification desalination systems applicable for industrial wastewater treatment

    , Article Energy Conversion and Management ; Volume 205 , 2020 Ghofrani, I ; Moosavi, A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Using zero liquid discharge systems is one of the efficient methods to reduce the negative environmental impact of the brines of the desalination systems and also to recycle the industrial wastewaters for reuse. Due to the simple fabrication process, low maintenance cost, intensive to inlet water quality, and the ability to use renewable and low-grade-heat, modified humidification-dehumidification systems may be a proper choice for the zero liquid discharge applications. Thus, in the present study, the energy, exergy, exergoeconomic, and exergoenvironmental assessment of three advanced brine recycle humidification-dehumidification systems for zero liquid discharge operation are... 

    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... 

    Synthesis and Characterization of a Composite of ZIF-8 and TiO2 NPs as a Photocatalyst Material for Water Treatment

    , M.Sc. Thesis Sharif University of Technology Sedighi, Omid (Author) ; Dolati, Abolghasem (Supervisor) ; Abachi, Parvin (Supervisor)
    Abstract
    During the past few years, hexavalent chromium (Cr(VI)) is of environmental concern due to its high toxicity and mobility. Therefore, removing it from industrial wastewater is of chief significance. In this research, efficient photocatalyst materials (xµLTiO2NPs@ZIF-8) for the reduction of Cr(VI) from water resources were firstly synthesized. This composite was prepared by an in situ method with zeolitic imidazolate framework-8 as the matrix. TiO2 and ZIF-8 were selected for their excellent stability in aqueous media, high photoactivity, non-toxicity, and high surface area. The structure of the as-synthesized materials was characterized by X-ray powder diffraction (XRD), scanning electron... 

    Synthesis of TiO2/ZnO electrospun nanofibers coated-sewage sludge carbon for adsorption of Ni(II), Cu(II), and COD from aqueous solutions and industrial wastewaters

    , Article Journal of Dispersion Science and Technology ; Volume 42, Issue 6 , January , 2020 , Pages 802-812 Khosravi, M ; Maddah, A. S ; Mehrdadi, N ; Bidhendi, G. N ; Baghdadi, M ; Sharif University of Technology
    Taylor and Francis Inc  2020
    Abstract
    The nanofibers prepared by electrospinning process have high potential for the removal of toxic matters from wastewaters. In the present study, the titanium dioxide and titanium dioxide/zinc oxide (TiO2/ZnO) nanofibers prepared by electrospinning technique were coated on the sewage sludge carbon (SSC) surface for adsorption of Ni(II), Cu(II), and COD from aqueous solutions and industrial wastewaters of Iran. The synthesized adsorbents were characterized using XRD, SEM and EDX analysis. The effect of adsorbent type, pH, adsorbent dosage, contact time and initial concentrations of Ni(II), Cu(II) and COD on the adsorption capacity of synthesized SSC/TiO2 and SSC/TiO2/ZnO nanofibrous adsorbents... 

    Nanofiltration process on dye removal from simulated textile wastewater

    , Article International Journal of Environmental Science and Technology ; Volume 5, Issue 3 , 2008 , Pages 401-408 ; 17351472 (ISSN) Hassani, H ; Mirzayee, R ; Nasseri, S ; Borghei, M ; Gholami, M ; Torabifar, B ; Sharif University of Technology
    CEERS  2008
    Abstract
    Dyestuffs removal from industrial wastewater requires special advanced technologies, since dyes are usually difficult to remove by biological methods. In this study nanofiltration process was used for removal of different dyestuffs from solutions. The rate of dye removal by spiral wound nanofiltration membrane in film thin composite MWCO=90 Dalton, was evaluated for four classes of dyes acidic, disperse, reactive and direct in red and blue dyes medium. Dye absorbance was measured by spectrophotometric method (2120 Standard Method 1998). Effects of feed concentration, pressure and total dissolved solids concentration were also studied. Results showed that increasing dye concentration lead to... 

    Treatment of beet sugar wastewater by UAFB bioprocess

    , Article Bioresource Technology ; Volume 98, Issue 16 , 2007 , Pages 3080-3083 ; 09608524 (ISSN) Farhadian, M ; Borghei, M ; Umrania, V. V ; Sharif University of Technology
    2007
    Abstract
    The aim of this work was to study the treatment of strong beet sugar wastewater by an upflow anaerobic fixed bed (UAFB) at pilot plant scale. Three fixed bed bioreactors (each 60 L) were filled with standard industrial packing, inoculated with anaerobic culture (chicken manure, cow manure, anaerobic sludge digested from domestic wastewater) and operated at 32-34 °C with 20 h hydraulic retention time (HRT) and influent COD ranging between 2000-8000 mg/L. Under these conditions the maximum efficiency of organic content reduction in the reactor ranged from 75% to 93%. The reactor filled with standard pall rings made of polypropylene with an effective surface area of 206 m2/m3 performed best in... 

    Robust and efficient zero liquid discharge design strategy using four novel desalination systems: A comprehensive 4E assessment

    , Article Journal of Cleaner Production ; Volume 310 , 2021 ; 09596526 (ISSN) Ghofrani, I ; Moosavi, A ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    Discharging unconventional water sources having a high content of inorganic compounds is extremely destructive to the environment. In this research, four novel semi-open-air and closed-air configurations of brine-recycle humidification-dehumidification (BRHDH) systems with zero liquid discharge (ZLD) approach are presented to treat unconventional waters cost-effectively. Bubble-column humidifiers and dehumidifiers are used to have a low initial expenditure, and system multi-staging is implemented to reduce the operating expense of the configurations. The configurations are evaluated for high saline brine treatment using comprehensive energy, exergy, exergoeconomic, and exergoenvironmental... 

    Synthesis of TiO2/ZnO electrospun nanofibers coated-sewage sludge carbon for adsorption of Ni(II), Cu(II), and COD from aqueous solutions and industrial wastewaters

    , Article Journal of Dispersion Science and Technology ; Volume 42, Issue 6 , 2021 , Pages 802-812 ; 01932691 (ISSN) Khosravi, M ; Maddah, A. S ; Mehrdadi, N ; Bidhendi, G. N ; Baghdadi, M ; Sharif University of Technology
    Bellwether Publishing, Ltd  2021
    Abstract
    The nanofibers prepared by electrospinning process have high potential for the removal of toxic matters from wastewaters. In the present study, the titanium dioxide and titanium dioxide/zinc oxide (TiO2/ZnO) nanofibers prepared by electrospinning technique were coated on the sewage sludge carbon (SSC) surface for adsorption of Ni(II), Cu(II), and COD from aqueous solutions and industrial wastewaters of Iran. The synthesized adsorbents were characterized using XRD, SEM and EDX analysis. The effect of adsorbent type, pH, adsorbent dosage, contact time and initial concentrations of Ni(II), Cu(II) and COD on the adsorption capacity of synthesized SSC/TiO2 and SSC/TiO2/ZnO nanofibrous adsorbents...