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    Protective smart textiles for sportswear

    , Article Protective Textiles from Natural Resources ; 2022 , Pages 317-345 ; 9780323904773 (ISBN); 9780323904780 (ISBN) Aali Mohammadi, R ; Shirazi, M ; Moaref, R ; Jamalpour, S ; Tamsilian, Y ; Kiasat, A ; Sharif University of Technology
    Elsevier  2022
    Abstract
    With the development of modern sports, the design and production of sportswear play an essential role, especially in many modern difficult and dangerous sports. Selection of fibre fabrics is the most important factor because this influences the performance and efficiency, while ensuring protection and physical comfort. In recent years, the demand for smart materials and textiles has been increasing all around the world. Many investigations have been carried out into developing smart textiles that support the better performance of athletes. A smart textile is an intelligent system that is able to sense environmental conditions and electrical, thermal, mechanical, chemical, and magnetic... 

    Photochemical oxidation of Reactive blue 19 dye (RB19) in textile wastewater by UV/K2S2O8 process

    , Article Iranian Journal of Environmental Health Science and Engineering ; Volume 5, Issue 2 , 2008 , Pages 95-100 ; 17351979 (ISSN) Rezaee, A ; Ghaneian, M. T ; Khavanin, A ; Hashemian, S. J ; Moussavi, G. H ; Ghanizadeh, G. H ; Hajizadeh, E ; Sharif University of Technology
    2008
    Abstract
    In textile industry, advanced oxidation processes are used for degrading and removing color from dye baths which allow wastewater reuse. In this study, photochemical oxidation processes (UV-A/K2S2O8, UV-C/ K2S2O8) and chemical oxidation process (dark/K2S2O8), were investigated in a laboratory scale photoreactor for decolorization of the Reactive blue 19 (RB19) dye from synthetic textile wastewater. The effects of operating parameters such as potassium persulphate dosage, pH, reaction time and UV source, on decolorization have been evaluated. The results of direct chemical oxidation showed that 50% of the dye was been removed using K2S2O8 in dark condition after 5h reaction time and... 

    Applications of stimuli responsive hydrogels: A textile engineering approach

    , Article Journal of the Textile Institute ; Volume 104, Issue 11 , 2013 , Pages 1145-1155 ; 00405000 (ISSN) Bashari, A ; Hemmati Nejad, N ; Pourjavadi, A ; Sharif University of Technology
    2013
    Abstract
    Stimuli responsive hydrogels (SRHs) are smart materials with reversible changes in their properties through the environmental stimulus variations. Although SRHs have been used in various medical applications such as sensors, drug release systems and, etc., they are still being actively researched on other sectors such as functional textiles and smart clothing. One of the best methods to produce textiles with more functionality is smart finishing of textile by surface modifying stimuli responsive hydrogels. In this paper, literatures on SRHs applications, methods and application of some SRHs on textile have been thoroughly discussed  

    Enhanced decolorization of Reactive Blue 19 dye from synthetic textile wastewater through UV photolysis in alkaline conditions

    , Article Environmental Engineering and Management Journal ; Volume 7, Issue 2 , 2008 , Pages 119-123 ; 15829596 (ISSN) Rezaee, A ; Ghaneian, M ; Hashemian, S. J ; Mosavi, G ; Hajizadeh, E ; Sharif University of Technology
    Gh. Asachi Technical University of Iasi  2008
    Abstract
    Laboratory scale experiments were conducted in order to investigate the photolysis of Reactive Blue 19 (RB 19) dye using UV as the irradiation source in alkaline solution. The effects of operating parameters such as, pH, initial dye concentration, UV dosage, hydrogen peroxide and oxygen have been evaluated. The results indicate that the UV photolysis process in alkaline solution is ideal for decolorizing of RB 19 and it can be taken as a starting step to establish the economical feasibility of the method for the decolorization of wastewater from textile industries  

    Effect of stimuli-responsive nano haydrogel finishing on cotton fabric properties

    , Article Indian Journal of Fibre and Textile Research ; Volume 40, Issue 4 , 2015 , Pages 431-436 ; 09710426 (ISSN) Bashari, A ; Hemmati Nejad, N ; Pourjavadi, A ; Sharif University of Technology
    National Institute of Science Communication and Information Resources (NISCAIR)  2015
    Abstract
    Cotton fabrics have been prepared with smart properties by functional finishing with stimuli-responsive nano gel. A biopolymer (chitosan) and a synthetic polymer (poly-NiPAAm) have been used for the synthesis of nano gel through semi-batch surfactant-free dispersion polymerization (SB-SFDP) method. The incorporation of nano gel to textile fabrics is achieved by pad-dry-cure procedure, using an aqueous nano gel dispersion and 1,2,3,4-butantetracarboxylic acid as a crosslinking agent. With this cross linking method, it is possible to integrate the nano gel into the cotton fabric’s structure with good resistance to washing. The changes in physiological comfort parameters of cotton fabric such... 

    Steganography in textiles

    , Article 4th International Symposium on Information Assurance and Security, IAS 2008, Napoli, 8 September 2008 through 10 September 2008 ; 2008 , Pages 56-61 ; 9780769533247 (ISBN) Shirali Shahreza, S ; Shirali Shahreza, M ; Sharif University of Technology
    2008
    Abstract
    Covert exchange of information has been long a significant and highlighted affair. Numerous methods have been devised for the matter of which steganography is a popular one. Already applied in the past, the method has been massive used following the invention of computer. This paper discusses a new application of steganography in textiles in which information is hidden in the images on the clothes. In this way, information is first hidden by computer in images by a special method. Then the provided images are printed on clothes. The related information is extracted after scanning the images by relevant programs. © 2008 IEEE  

    Laser and solar light-induced degradation of pollutant dyes using bi-plasmonic ag-au nanoparticles-decorated magnetic tio2 for textile wastewater treatment

    , Article Journal of Nanostructures ; Volume 12, Issue 1 , 2022 , Pages 45-61 ; 22517871 (ISSN) Nezhadali, A ; Shapouri, M. R ; Amoli-Diva, M ; Sharif University of Technology
    University of Kashan  2022
    Abstract
    Eight eco-friendly, and magnetically-separable heterogeneous photocatalysts including five Au nanoparticles (NPs) modified magnetic TiO2@Fe3O4 NPs and three Ag-Au bi-plasmonic NPs-decorated TiO2@Fe3O4 NPs with enhanced photocatalytic performance under visible light were synthesized and used for photodegradation of methyl orange (MO) as a model pollutant in textile wastewater samples. The photocatalytic activity was assessed using two radiation sources namely, an intense linear 532-nm laser and a continuous solar-simulated xenon lamp. Compared to the TiO2 alone, the prepared photocatalysts revealed efficient photocatalytic activity in visible region due to the presence of two localized... 

    Degradation of Model Textile Dyes in Wastewater using Visible-Light Active Photocatalysts

    , M.Sc. Thesis Sharif University of Technology Heidarpour Chakoli, Hamed (Author) ; Soltanieh, Mohammad (Supervisor) ; Vossoughi, Manouchehr (Co-Supervisor) ; Padervand, Mohsen (Co-Supervisor)
    Abstract
    Textile dyes are a major category of organic pollutants and release of them in the environment causes serious problems. Among the most commonly used methods for colored wastewater, advanced oxidation processes, especially the photocatalytic process, are rapidly developing as a new and effective solution. However, there is still a need for high-level photocatalytic activity and improvement of this process to increase removal efficiency. In this study, we have tried to provide a higher performance for color removal using carbon nitride photocatalyst. Accordingly, two approaches have been proposed to improve the removal of rhodamine b, as one of the common dyes in the textile industries. The... 

    Design and Construction of Photocatalytic Reactor for the Removal of
    Textile Azo-Dye Pollutants

    , M.Sc. Thesis Sharif University of Technology Salimi, Parham (Author) ; Rashtchian, Davood (Supervisor) ; Ghasemi, Shahnaz (Supervisor)
    Abstract
    Population growth and community development has a large role in the demand for fresh water for a variety of uses. In recent decades, over-harvesting and abusing of water resources has led to water crisis. On the other hand, the increase in various pollutants, in addition to environmental hazards, is a threat to groundwater pollution and the existence of valuable fresh water. Due to the potential hazards of emerging pollutants, new treatment technologies such as advanced oxidation and photocatalytic methods are being developed. One of the contaminants resistant to traditional treatment methods is textile contaminants. In this research, by designing and constructing a photocatalytic reactor,... 

    Studies on the properties and structure of electron-beam crosslinked low-density polyethylene/poly[ethylene-co-(vinyl acetate)] blends

    , Article Polymer International ; Volume 54, Issue 4 , 2005 , Pages 686-691 ; 09598103 (ISSN) Dadbin, S ; Frounchi, M ; Sabet, M ; Sharif University of Technology
    2005
    Abstract
    Blends of low-density polyethylene (LDPE) and poly[ethylene-co-(vinyl acetate)] (PEVA), crosslinked by electron-beam (EB) radiation, formed separate crystalline lattices with a homogeneous amorphous phase. The crystallinity of the EB-exposed samples slightly decreased, as verified by a slight reduction in the densities and melting heats and temperatures of the samples. The results obtained from both gel content and hot set tests showed that the degree of crosslinking in the amorphous regions was dependent on the dose and blend composition. The molecular weights between the crosslinks, measured from creep data, showed that an increasing PEVA content resulted in tighter network structures,... 

    Photocatalytic Degradation of Dye in Wastewater Using Nanomaterials Based Zinc-iron

    , M.Sc. Thesis Sharif University of Technology Rezaei, Salar (Author) ; Kazemeini, Mohammad (Supervisor) ; Mahmudi, Niaz Mohammad (Co-Supervisor) ; Baqalha, Morteza (Co-Supervisor)
    Abstract
    Removing pollutants of water and, in general, wastewater treatment is one of the most important issues in the world. In this research, we synthesized a nanophotocatalyst based on znic-iron in the form of a magnetic core-shell Fe3O4@ZIF-8, and used to degrade the malachite green toxic color of wastewater. SEM, XRD and FT-IR analyzes have been taken and analyzed fore all three core, shell and core-shell composite catalysts.Due to the band gap of core-shell nanocomposite and the performance of the malachite green dye, a photocatalytic process under the visible light was obtained, which at an optimum amount of photocatalyst 0.003g, we reach 99.2% dye degradation at the 30ppm concentration. This... 

    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... 

    Metal-organic framework (MIL-100 (Fe)): synthesis, detailed photocatalytic dye degradation ability in colored textile wastewater and recycling

    , Article Materials Research Bulletin ; Volume 100 , April , 2018 , Pages 357-366 ; 00255408 (ISSN) Mahmoodi, N. M ; Abdi, J ; Oveisi, M ; Alinia Asli, M ; Vossoughi, M ; Sharif University of Technology
    Elsevier Ltd  2018
    Abstract
    In this paper, three metal-organic frameworks (Materials of Institut Lavoisier: MILs-100 (Fe)) as porous nanomaterials were synthesized using FeCl3, Fe(NO3)3 and Fe2(SO4)3 and denoted as MIL-100-1, MIL-100-2 and MIL-100-3, respectively. The synthesized MILs-100 (Fe) were characterized by FTIR, SEM, TEM, XRD, UV–vis DRS and zeta potential. Basic Blue 41 (BB41) was used as a model dye to study the photocatalytic dye degradation ability of the synthesized metal organic frameworks. The results showed that the synthesized nanomaterials decolorized BB41. The decolorization kinetics followed first-order kinetic model. The rate constant was 0.0034, 0.0041, 0.0091 and 0.0289 (1/min) for 0.01, 0.02,... 

    Design and Manufacturing a Wearable Measuring System for Trunk Movements

    , M.Sc. Thesis Sharif University of Technology Mokhlespour Esfahani, Mohammad Iman (Author) ; Parnianpour, Mohamad (Supervisor) ; Narimani, Roya (Supervisor) ; Moshiri, Behzad (Co-Advisor) ; Hoviattalab, Maryam (Co-Advisor)
    Abstract
    Measurement of human movement during work, sport as daily activities has important effects for rehabilitation and biomechanics experts.
    Recently, several researches are concentrated on this technology significantly because of new progress in sensors and fusion sensors. In the near future, wearable and ambulatory devices will be used considerably in biomedical applications. In this study, we reviewed some methods about wearable measuring system then introduced and designed innovative wearable clothing for this purpose. Some specifications and advantages of our system in comparison with relevant researches are; using textile sensors that are manufactured through nano electro active polymer... 

    Body Orientation Measurement by Multisensor Data Fusion

    , M.Sc. Thesis Sharif University of Technology Akbari, Ali (Author) ; Vosoughi Vahdat, Bijan (Supervisor) ; Parnianpour, Mohammad (Supervisor)
    Abstract
    The importance of the motion measurement systems is obvious due to survey the number of people who have joint pains through wrong movements. Considering the medical device’s trend toward wearable systems, the necessity of portable measurement instruments which are independent from experimental setup, is undeniable. Motion measurement systems based on MEMS Inertial sensors are widely used these days because they are cheap and portable. However these systems have some defects such as error accumulation and increasing error due to magnetic disturbance or high acceleration motions. Multisensory data fusion along with compensator filters is the best solution in order to reduce these errors.... 

    Organic Pollutants Degradation in Wastewater by Ultraviolet Irradiation Process Using Nano-structured Catalyst in a Batch Reactor

    , M.Sc. Thesis Sharif University of Technology Ahmadi, Shahin (Author) ; Kazemeini, Mohammad (Supervisor) ; Mahmoodi, Niyaz Mohammad (Supervisor) ; Baghalha, Morteza (Supervisor)
    Abstract
    Environmental issues and lack of drinking water had forced researchers to find some alternatives in order to wastewater treatment. Since dyes are used in a variety of industrial application such as textile, pharmaceutical, etc.; therefore, wastewater of these factories makes several environmental problems. Using catalysis under UV- irradiation (photocatalysis) is one of the cases that is used in wastewater treatment which the catalyst stimulated under UV- irradiation and this process degraded dyes. In this work, reactive red 198 degradation is investigated with MIL-53(Fe) and MIL-100(Fe) and in the literature section, the methods that was implemented by other researchers is studied.... 

    Application of Metallic Nanoparticles in Treatment of Wastewater Containing Dyestuffs

    , M.Sc. Thesis Sharif University of Technology Hosseini, Reza (Author) ; Shaygan, Jalalaldin (Supervisor)
    Abstract
    Textile industrial wastewaters are one of the most important sources of environmental contaminants. In the recent years, use of advanced oxidation processes, by producing highly active and reactive components such as hydroxyl radicals has been proposed. The aim of this research is oxidative degradation of methylene blue dye using Cu-nanoparticles immobilized on a polymer support with H2O2 as an oxidant reagent.In general, oxidative degradation of methylene blue with hydrogen proxide in the presence of immobilized CuO nanoparticles on a polymer support as the catalyst was studied. We used polyamidoamine (PAMAM) dendrimer as the polymer support for nanoparticles. fourth generation of PAMAM was... 

    Dyes Adsorption and Removal of Aqueous Solutions with Novel Adsorbents Based on Graphene Oxide

    , M.Sc. Thesis Sharif University of Technology Mohammadi, Esmaeel (Author) ; Borghei, Mahdi (Supervisor) ; Ghasemi, Shahnaz (Co-Supervisor)
    Abstract
    Nowadays, water pollution and water sources decreasion, is one of the important issues of our world. Treatment of polluted water and wastewater and recycling of those to industries and common uses, is very necessary. Dyes, is one of the biggest parts of water pollutants, especially, in textile plants. There are some ways for dye removal, in the industries; including biological, chemical and physical methods. Among of these methods, physical removal of dyes through adsorption (with Activated Carbon or other adsorbents), is very popular. Hydrogels are three-dimensional hydrophilic polymer networks, introducing very good swelling rate, mechanical properties and pollutants adsorption. In this... 

    Producing of Peroxidase Enzymes using Pahnerochaete Chrysosporium for Decolorization of Molasses Wastewater

    , M.Sc. Thesis Sharif University of Technology Alizadeh, Manijheh (Author) ; Alemzadeh, Iran (Supervisor)
    Abstract
    The treatment of water effluent from alcohol industries is among the most challenging industrial wastewater treatments. The challenge mainly arises from the high capacity of organic compounds allowing the growth of microorganisms and pollutants. Brown color of the wastewater also contributes to this phenomenon; it absorbs more sunlight which then reduces the oxygenation of water and thus adversely affecting the aquatic life. Moreover, the acidity of the wastewater decreases the pH level of agricultural soils, so its quality Thus, distillery wastewater, without any treatment can pose a serious threat to the environment. In our study, we investigate the decolorization of molasses wastewater... 

    Dye Removal from Textile Effluent Using Membrane Process

    , M.Sc. Thesis Sharif University of Technology Mohammadpour Mir, Mohammad Hossein (Author) ; Borghei, Mehdi (Supervisor)
    Abstract
    Textile industry is one of the biggest consumers of water in the world. Effluents of textile industry ordinarily have huge rate of dye compounds which are toxic and persistent in environment. In case which they did not treat and discharged in the environment, they can create cancer, poisoning and etc. Finding efficient, economic and fast method for treating of these effluents is an important factor on the management. Combination of ultrafiltration membrane and reverse osmosis processes, has taken into consideration as an efficient and fast method of treatment of textile effluents in recent years. One of the fundamental problems of this process is the high costs of operation and chemical...