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    Experimental Study on the Efficiency of Memberane Bioreactor (MBR) in Removal of Trace Persistent Pollutants

    , M.Sc. Thesis Sharif University of Technology Fouladi Ghale, Hosnie (Author) ; Borghei, Mahdi (Supervisor) ; Vosoughi, Manuchehr (Supervisor) ; Hesampour, Mehrdad (Supervisor)
    Abstract
    The removal of glyphosate, one of the most widely used herbicide, with membrane bioreactor (MBR) was studied. Beside of glyphosate, the synthetic wastewater contained molasses and other salts as nutrient source. The membrane was made from polypropylene and was immersed in the bioreactor. The COD of the feed was adjusted by varying the ratio of glyphosate to molasses. The total COD was 500, 750 and 1000 mg/L. The resulted showed that when the bioreactor coupled with membrane the removal efficiency increased. The increase was attributed to higher concentration of biomass or MLSS in the MBR. The average of MLSS in the MBR was 8500 mg/L while in bioreactor without cell recycling and in batch... 

    Experimental Study on the Efficiency of Moving Bed Biofilm Reactor in Treating Ethylene Glycol

    , M.Sc. Thesis Sharif University of Technology Esmaeili Rad, Nasim (Author) ; Borghei, Mehdi (Supervisor) ; Vossoughi, Manoochehr (Supervisor)
    Abstract
    The removal of ethylene glycol, one of the most widely used antifreez, with moving bed biofilm reactor (MBBR) was studied. Beside of ethylene glycol, the synthetic wastewater contained molasses and other salts as nutrient source. The packings were composed of polyethylene and shaped like small cylinders with a surface area of 500 m2 per m3 bulk volume of carriers(KMT). The COD of the feed was adjusted by varying the ratio of ethylene glycol to molasses. The total COD was 1252.5, 1345 and 1500 mg/L. The resulted showed that when the biofilm grows on the packings and its thickness is good enough, the removal efficiency increased. The increase was attributed to higher concentration of biomass... 

    Performance Evaluation of Membrane Bioreactors in Treating Municipal Wastewater

    , M.Sc. Thesis Sharif University of Technology Hatami Bahman Beyglou, Elnaz (Author) ; Torkian, Ayoub (Supervisor)
    Abstract
    Membrane bioreactors can replace the activated sludge process and the final clarification step in municipal wastewater treatment. The combination of bioreactor and crossflow microfiltration allows for a high chemical oxygen demand (COD) reduction of synthetic wastewater. In this study, experimental data from a laboratory scale membrane bioreactor are presented. In order to investigate the influence of various operating parameters such as hydraulic retention time (HRT), biomass concentration and organic loading rate on organic pollutant removal, the pilot scale submerged membrane bioreactor (SMBR) with a Polyvinylidene Fluoride (PVDF) hollow fiber membrane module was conducted using synthetic... 

    Investigation of Nanoparticles Removal from Industrial Wastewater

    , M.Sc. Thesis Sharif University of Technology Mahzoon, Elmira (Author) ; Shaygan Salek, Jalaloddin (Supervisor)
    Abstract
    Nanotechnology as an interdisciplinary science is used in many fields. The use of nanomaterial, make new opportunities in the industry. However, safety issues and environmental risks of the consequences of their use in various applications are the matters of concern. Because of the new emergence of this technology, it is essential that all aspects including possible harmful effects on the environment will also be considered. One way to remove the nanoparticles, is electrocoagulation method, assemble nanoparticles into larger particles with an electric current. In this study, the removal of titanium dioxide nanoparticles, due to its high use in the industry, with electrocoagulation method and... 

    Investigation and Controlling of Sludge Bulking in Wastewater Treatment Plant with Synthetic Wastewater

    , M.Sc. Thesis Sharif University of Technology Gholami, Mohsen (Author) ; Shayegan, Jalaleddin (Supervisor)
    Abstract
    Biological treatment is an essential part of wastewater treatment. One of the major problems of the biological treatment systems is a solid separation. Filamentous bulking is a type of solid separation problem that settled sludge volume and the turbidity of the effluent will be increase in bulking condition. The presence of excessive Filamentous bacteria causes filamentous bulking. In this thesis, filamentous bulking were studied to understand this phenomena better and tried to control that with the different methods. This research was conducted in laboratory scale Sequencing Batch Reactor (SBR), conventional activated sludge and conventional activated sludge with anaerobic selector with... 

    Microalgae Cultivation for Simultaneous Treatment of Municipal Wastewater and Biofuel Feedstock Production

    , M.Sc. Thesis Sharif University of Technology Ebrahimian Kafshaei, Atefeh (Author) ; Vossoughi, Manoochehr (Supervisor) ; Kariminia, Hamid Reza (Supervisor)
    Abstract
    Depletion of fossil fuels and their price increase, world is going to face critical energy challenges in the near future. Thereforefinding proper replacements for fossil fuels is inevitable. On the other hand, releasing of huge amount of wastewater into environment imposes serious nvironmental threats. Microalgae can be a potential alternative for biological wastewater treatment as well as fuel production. Microalgae grown in wastewater can eliminate remaining nitrogen and phosphorous. The gorwn biomass can be used for biofuel production afterward. Microalgae can also decrease the amount of greenhouse gas through the consumption of CO2 as energy sources. In this study, nutrient removal from... 

    Reduction of Electrical Conductivity of urbun Wastewater by Vermifilter

    , M.Sc. Thesis Sharif University of Technology Shahnemati, Razieh (Author) ; Hashemian, Jamaloddin (Supervisor)
    Abstract
    Deficiency of water leads to extensive researches on alternative water resources. recycling of wastewater for non-drinking purposes such as irrigation, industrial, green belts, forestry and streets and drainage channels washing is One of the existing methods. Therefore, sewage treatment with the purpose of reducing its electrical conductivity has been done in the current research using a real scale vermifilter. Hence, the effluent from a septic tank with a daily loading of 2 (m3/day) was pumped into the vermifilter during 45 days through a pumping system.Then, the effluent from the vermifilter by another pump entered on the surface of the substrate. The results showed that electrical... 

    Development of a Multi Generation Energy System Based on Biotechnologies

    , M.Sc. Thesis Sharif University of Technology Taheri, Neda (Author) ; Roshandel, Ramin (Supervisor)
    Abstract
    In recent years, the issue of sustainability in the energy systems has attracted the attention of energy researchers. Using fossil fuels in common energy conversion systems cause environmental pollution, declining reserves of fossil resources and increase their prices because of the scarcity of fossil resources. Therefore, achieving the goals of sustainability necessitate using high efficiency energy conversion technology. Bio-inspired energy systems are one of the main candidates to improve energy conversion systems. The main target of this study is developing an optimal multi-generation energy system model, dynamically. MFC, Septic tank and Algae culture are integrated and produced power,... 

    Field Performance of a Mechanical Spray Evaporator in Wastewater Minimization & Disposal

    , M.Sc. Thesis Sharif University of Technology Zamani Froutageh, Leili (Author) ; Alamolhoda, Ali Asghar (Supervisor) ; Hashemian, Jamaledin (Co-Advisor)
    Abstract
    The mechanical spray evaporator (MSE) is a method of enhanced evaporation technology, normally designed to reduce the particle size of a wastewater droplet to volatilize water content of it as quickly as possible. A model of MSE has been built at the Institute of Water and Energy at Sharif University of technology. The aim of this research is to study the efficiency of enhanced evaporation technology for waste disposal. To achieve the accurate results, the required pumping rates and power consumption, sustained evaporation rates while operating the fans, and the performance during various temperature, wind speed and relative humidity, are required. Mechanical Spray Evaporator technique... 

    The Advanced Exergy Analysis of Green Hydrogen Production System and its Application in Green Steel Production: A Case Study for Butia Iranian Steel Company

    , M.Sc. Thesis Sharif University of Technology Bayat, Delaram (Author) ; Khajehpour, Hossein (Supervisor)
    Abstract
    In recent years, the significant growth of the population has led to an increase in energy demand and subsequent rise in waste production. A substantial share of the energy demand and consumption in the industrial sector, particularly in steel production, requires the utilization of renewable technologies for energy and clean fuel production, such as hydrogen, to address this growing demand and mitigate environmental impact. This study focuses on a waste-to-energy technique as a viable solution to facilitate the transition towards green steel production in the industrial sector of Kerman province, primarily targeting the decarbonization of utility generation in steel production process.... 

    Preparation of Polycarbonate Membrane for Industrial Wastewater Treatment in Membrane Bioreator

    , M.Sc. Thesis Sharif University of Technology Nazemi Dashtarjandi, Saeed (Author) ; Mousavi, Abbas (Supervisor) ; Bastani, Dariush (Supervisor)
    Abstract
    Today, membrane bioreactors (MBRs) process is one of the most important options in industrial and municipal wastewater treatment. In MBRs, membrane has an essential influence on their performance. In this study, polycarbonate was exploited as membrane to evaluate its performance in MBR since it has excellent mechanical properties. However, polycarbonate is brittle and breaks at low elongation at room temperature. Solution blending was utilized to improve polycarbonate’s properties. Blending membrane was characterized and assessed by scanning electron microscopy (SEM) and tensile strength. Polycarbonate solution blending with polyurehatne which has excellent toughness and flexibility enhance... 

    Effect of slow biodegradable substrate addition on biofilm structure and reactor performance in two MBBRs filled with different support media

    , Article Environmental Technology (United Kingdom) ; Volume 41, Issue 21 , 2020 , Pages 2750-2759 Ashrafi, E ; Allahyari, E ; Torresi, E ; Andersen, H. R ; Sharif University of Technology
    Taylor and Francis Ltd  2020
    Abstract
    In this study, two moving-bed biofilm reactors (MBBR1 and MBBR2) filled with different size of carrier media (Kaldnes K1 and Kaldnes K1 micro, respectively) were subjected to soluble (sugar and sodium acetate (Ac)) substrate and mixture of soluble and particulate (particulate potato starch (PS)) substrate in a very high organic loading rate (12 kgCOD/m3·d) at different temperatures (26 and 15°C, in MBBR1 and MBBR2, respectively). The effects of carrier type and substrate on biofilm structure and reactor performance have been studied. Starch was removed by adsorption at the biofilm surface and hydrolyzed which caused substrate gradient in MBBR1, however, hydrolyzed uniformly within biofilm in... 

    Combined UV-C/H2O2-VUV processes for the treatment of an actual slaughterhouse wastewater

    , Article Journal of Environmental Science and Health - Part B Pesticides, Food Contaminants, and Agricultural Wastes ; Volume 52, Issue 5 , 2017 , Pages 314-325 ; 03601234 (ISSN) Vaezzadeh Naderi, K ; Bustillo Lecompte, C. F ; Mehrvar, M ; Abdekhodaie, M. J ; Sharif University of Technology
    Taylor and Francis Inc  2017
    Abstract
    In this study, a three-factor, three-level Box-Behnken design with response surface methodology were used to maximize the TOC removal and minimize the H2O2 residual in the effluent of the combined UV-C/H2O2-VUV system for the treatment of an actual slaughterhouse wastewater (SWW) collected from one of the meat processing plants in Ontario, Canada. The irradiation time and the initial concentrations of total organic carbon (TOCo) and hydrogen peroxide (H2O2o) were the three predictors, as independent variables, studied in the design of experiments. The multiple response approach was used to obtain desirability response surfaces at the optimum factor settings. Subsequently, the optimum... 

    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... 

    Hydrothermal carbonization of digested sewage sludge coupled with Alkali activation: Integrated approach for sludge handling, optimized production, characterization and Pb(II) adsorption

    , Article Journal of the Taiwan Institute of Chemical Engineers ; Volume 133 , 2022 ; 18761070 (ISSN) Malool, M. E ; KeshavarzMoraveji, M ; Shayegan, J ; Sharif University of Technology
    Taiwan Institute of Chemical Engineers  2022
    Abstract
    Background: Integrated sewage sludge handling and heavy metal management are important issues that scientists are working to solve today. Methods: Hydrothermal carbonization of dewatered digested sewage sludge (DDSS) under various conditions is carried out in this work, followed by alkali activation. The response surface methodology is used to investigate the operating process conditions and optimize them in order to produce hydrochar with the highest modified adsorption capacity (yield and Pb2+ adsorption). Significant Findings: The ideal conditions are 182.4°C, 4.9 hours, 5.025 (w/w) water/DDSS ratio, and 3.5 (w/w) ZnCl2/DDSS ratio. In addition, the Langmuir isotherm (qmax =109.3 mg/g) and... 

    Design and tailoring of one-dimensional ZnO nanomaterials for photocatalytic degradation of organic dyes: a review

    , Article Research on Chemical Intermediates ; Volume 45, Issue 4 , 2019 , Pages 2197-2254 ; 09226168 (ISSN) Samadi, M ; Zirak, M ; Naseri, A ; Kheirabadi, M ; Ebrahimi, M ; Moshfegh, A. Z ; Sharif University of Technology
    Springer Netherlands  2019
    Abstract
    Abstract: Photocatalysis using semiconductors has emerged as a promising wastewater treatment process to overcome the major challenges faced by conventional technologies. The advantages of ZnO nanomaterials over other semiconductors, and their structure-dependent properties, make them important building blocks in nanotechnology as multifunctional materials. Moreover, it has been confirmed that ZnO nanomaterials can exhibit high performance in photodegradation of organic dyes for treatment of industrial effluent. The wurtzite structure of ZnO contains polar and nonpolar planes; the low surface energy and thermodynamic stability of the nonpolar planes enable formation of one-dimensional (1D)... 

    Studies on the recovery of uranium from nuclear industrial effluent using nanoporous silica adsorbent

    , Article International Journal of Environmental Science and Technology ; Volume 9, Issue 4 , October , 2012 , Pages 629-636 ; 17351472 (ISSN) Sepehrian, H ; Samadfam, M ; Asadi, Z ; Sharif University of Technology
    Springer  2012
    Abstract
    In this paper, the sorption of uranium onto nanoporous silica adsorbent in the presence of nitrate, sulfate, chloride, fluoride and phosphate was studied. The effect of contact time between the nanoporous sorbent and aqueous solution, pH and initial concentration of uranium was also investigated. Uranium sorption onto nanoporous silica adsorbent is a very fast process as sorption rate increases with pH increment. Optimum pH for uranium sorption was 4-8. Experimental sorption isotherm is successfully described by Langmuir and Freundlich models. The results obtained by batch experiments showed that the presence of high concentration of nitrate, sulfate, chloride and phosphate anions alone had... 

    Comparative assessment of sewage sludge disposal alternatives in Mashhad: a life cycle perspective

    , Article Environmental Science and Pollution Research ; Volume 27, Issue 1 , 2020 , Pages 315-333 Rostami, F ; Tafazzoli, S. M ; Aminian, S. T ; Avami, A ; Sharif University of Technology
    Springer  2020
    Abstract
    Municipal wastewater treatment facilities produce a lot of sludge which is concentrated with different pollutants. The sustainable design of the sludge disposal alternatives is of crucial importance for touristic cities like Mashhad in Iran. Increasing sludge generation and its accumulation in the city and more stringent legislations highlight the challenge of sludge disposal, recently. This study compares different alternatives to reach maximum possible environmental benefits as well as the most cost-effective technologies. In this study, life cycle analysis (LCA) assesses different scenarios for disposal of sewage sludge which is aerobically treated and dewatered for two real case studies.... 

    Biological removal of nutrients (N & P) from urban wastewater with a modified integrated fixed-film activated sludge-oxic settling anoxic system using an anoxic sludge holding tank

    , Article Water and Environment Journal ; Volume 35, Issue 2 , 2021 , Pages 830-846 ; 17476585 (ISSN) Fazelipour, M ; Takdastan, A ; Borghei, S. M ; Sharif University of Technology
    John Wiley and Sons Inc  2021
    Abstract
    In this research, the efficiency of the integrated fixed-film activated sludge-oxic settling anoxic (IFAS-OSA) system in biological nutrient removal was studied. The oxic-settling anoxic (OSA) process is known as a cost effective way to reduce the nutrients (nitrogen and Phosphorus). According to the results, the percentages of total nitrogen removal efficiency in the IFAS, IFAS-OSA2h and IFAS-OSA4h systems were 78.56 ± 2.46, 83.60 ± 0.92 and 85.03 ± 1.69, respectively, while the percentages of phosphorus removal efficiency in these systems were 32.69 ± 8.25, 36.35 ± 6.73 and 39.87 ± 3.61, respectively. The PCR-RFLP method showed that C. albicans had the greatest prevalence (n = 36, 90%).... 

    Nitrogen removal from high organic loading wastewater in modified Ludzack-Ettinger configuration MBBR system

    , Article Water Science and Technology ; Volume 72, Issue 8 , October , 2015 , Pages 1274-1282 ; 02731223 (ISSN) Torkaman, M ; Borghei, S. M ; Tahmasebian, S ; Andalibi, M. R ; Sharif University of Technology
    IWA Publishing  2015
    Abstract
    A moving bed biofilm reactor with pre-denitrification configuration was fed with a synthetic wastewater containing high chemical oxygen demand (COD) and ammonia. By changing different variables including ammonium and COD loading, nitrification rate in the aerobic reactor and denitrification rate in the anoxic reactor were monitored. Changing the influent loading was achieved via adjusting the inlet COD (956-2,096 mg/L), inlet ammonium (183-438 mg/L), and hydraulic retention time of the aerobic reactor (8, 12, and 18 hours). The overall organic loading rate was in the range of 3.60-17.37 gCOD/m2·day, of which 18.5-91% was removed in the anoxic reactor depending on the operational conditions....