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    Interaction between the electrochemical properties of powdered activated carbon and the biochemical processes within bacteria in Azo dye biodecolorization: an explanatory mechanism

    , Article Process Biochemistry ; Volume 146 , 2024 , Pages 498-508 ; 13595113 (ISSN) Hassanvand, P ; Rajabi, M ; Bagheri Lotfabad, T ; Yaghmaei, S ; Sharif University of Technology
    2024
    Abstract
    Drawing on prior reports highlighting the redox mediator properties of powdered activated carbon (PAC), this study was designed to evaluate these properties to enhance the decolorization of azo dye by Klebsiella quasipneumoniae GT7. It was found that the presence of 0.5 % PAC in the medium increased the biodecolorization rate early in incubation. Chemical analysis revealed that dye conversion into aromatic amines occurred in microbial systems both with and without PAC. However, at initial dye concentrations (Cid) of 2 mM or higher, some dye remained on the PAC surface and in the medium. In contrast, the PAC-free system achieved nearly 100 % biodecolorization at all initial dye... 

    A technical feasibility analysis to apply Pseudomonas aeroginosa MR01 biosurfactant in microbial enhanced oil recovery of low-permeability carbonate reservoirs of Iran

    , Article Scientia Iranica ; Volume 17, Issue 1 C , JANUARY-JUNE , 2010 , Pages 46-54 ; 10263098 (ISSN) Adelzadeh, M. R ; Roostaazad, R ; Kamali, M. R ; Bagheri Lotfabad, T ; Sharif University of Technology
    2010
    Abstract
    The effect of an efficient biosurfactant produced from Pseudomonas aeroginosa MR01, a bacterial strain isolated from oil excavation areas in southern Iran, on the recovery of residual oil trapped within carbonate rocks, was investigated. In a core holder set-up, bearing a number of limestone-and dolomite-containing core samples, biosurfactant flooding resulted in oil recoveries as large as 20% to 28% Residual Oil (R.O). Biosurfactant injection in less permeable rocks in a range of 0.5 to 32 md was more successful, in terms of oil production. In the case of the least oil recovery via biosurfactant flooding, incubation of the core with a biosurfactant solution at reservoir conditions,... 

    Azo dye removal via surfactant-assisted polyvinylidene fluoride membrane

    , Article Environmental Health Engineering and Management ; Volume 8, Issue 1 , 2021 , Pages 25-32 ; 24233765 (ISSN) Darbandi, F ; Mousavi, A ; Bagheri Lotfabad, T ; Heydarinasab, A ; Yaghmaei, S ; Sharif University of Technology
    Kerman University of Medical Sciences  2021
    Abstract
    Background: Recently, concerns have been raised regarding the environmental and public health safety of azo dyes, the most widely used synthetic dyes. The membrane technique has been introduced as one of the efficient methods for dye removal treatments. Polyvinylidene fluoride (PVDF) membrane manipulated by surfactants was studied for removal of the azo dye, carmoisine. Methods: PVDF membrane was prepared via non-solvent-induced phase separation (NIPS) and used to remove the azo dye, carmoisine. Three nonionic surfactants including Tween 20, Tween 60, and Tween 80 were used individually as additives in casting solutions to improve PVDF membrane properties. Results: Fourier-transform infrared... 

    Study on the use of bovine blood protein hydrolysate as a peptone in microbial culture media

    , Article Preparative Biochemistry and Biotechnology ; Volume 53, Issue 6 , 2023 , Pages 622-633 ; 10826068 (ISSN) Rezaee, N ; Hasanvand, P ; Bagheri Lotfabad, T ; Heydarinasab, A ; Khodabandeh, M ; Yaghmaei, S ; Sharif University of Technology
    Taylor and Francis Ltd  2023
    Abstract
    Livestock blood is a protein-rich waste byproduct produced during meat production processes in slaughterhouses. Its utilization through conversion into value-added products is an intriguing management strategy. In this study, bovine blood was used to obtain the protein hydrolysate for use as a peptone for microbial growth medium. Lyophilized bovine blood was heat treated to make it susceptible to enzymic hydrolysis, and then enzymatically treated with trypsin (bovine pancreas protease) to produce protein hydrolysate. Physico-chemical features were determined for protein hydrolysate and compared to commercial Merck peptone from meat. Amino acid compositions of bovine blood and commercial... 

    Kinetic measurements for pseudomonas aeruginosa mr01 during biosurfactant production in two-phase system and developing a double-exponential model for viable cell profile

    , Article World Applied Sciences Journal ; Volume 22, Issue 6 , 2013 , Pages 809-816 ; 18184952 (ISSN) Bagheri Lotfabad, T ; Tayyebi, S ; Roostaazad, R ; Sharif University of Technology
    2013
    Abstract
    Biosurfactants are microbial substances which influence interfacial tension. The kinetic study was carried out for Pseudomonas aeruginosa MR01 during biosurfactant production in a two-phase liquid-liquid batch fermentation system. The maximum rhamnolipid concentration (Pmax) and the yield of biosurfactant per 1 biomass (YP/X) in a 5-L bioreactor containing soybean oil medium were found to be approximately 20.9 g.L and 3.1 g.g-1, respectively. Previously reported kinetic models in aqueous systems, three-parameter Gompertz, 2 Luedeking-Piret and Mercier equations, demonstrated adequate goodness-of-fit (r >0.9) to kinetic data recorded for biomass growth, nitrate consumption and rhamnolipid... 

    Evaluation of a recycling bioreactor for biosurfactant production by Pseudomonas aeruginosa MR01 using soybean oil waste

    , Article Journal of Chemical Technology and Biotechnology ; Volume 91, Issue 5 , 2016 , Pages 1368-1377 ; 02682575 (ISSN) Bagheri Lotfabad, T ; Ebadipour, N ; Roostaazad, R ; Sharif University of Technology
    John Wiley and Sons Ltd  2016
    Abstract
    This study deals with the large-scale production of biosurfactant from soybean oil soapstock by Pseudomonas aeruginosa MR01. The production of biosurfactant was carried out in a newly designed bioreactor equipped with recycling flow under three operational conditions. Kinetic studies were conducted at both shake flask and 5-L bioreactor scales during fermentation in a soapstock medium. Mathematical equations were developed to model the kinetic patterns at both scales. RESULT: Statistical analyses demonstrated the goodness of fit, with regression r-squared, R2, between 0.97and 0.99 for different models. Furthermore, biosurfactant concentration in the bioreactor including the recycling flow,... 

    Degradation of azo dye methyl red by saccharomyces cerevisiae ATCC 9763

    , Article International Biodeterioration and Biodegradation ; Volume 125 , 2017 , Pages 62-72 ; 09648305 (ISSN) Vatandoostarani, S ; Bagheri Lotfabad, T ; Heidarinasab, A ; Yaghmaei, S
    2017
    Abstract
    Azo dyes are common dye groups widely used in different industries. Industrial effluents which contain these dyes pervade water resources and have various known and unknown physiological effects on living organisms. In this study, methyl red (MR) was proposed as a model azo dye to examine the capability of Saccharomyces cerevisiae ATCC 9763 for cleavage of the azo bond leading to decolourization. The spectrophotometry method showed that complete decolourization occurred statically during ≃12 h and this time reduced to several minutes less than 10 min where cell mass increased. Thin layer chromatography (TLC), mass spectroscopy and Fourier transform infrared (FTIR) confirmed degradation of... 

    Two schemes for production of biosurfactant from Pseudomonas aeruginosa MR01: Applying residues from soybean oil industry and silica sol–gel immobilized cells

    , Article Colloids and Surfaces B: Biointerfaces ; Volume 152 , 2017 , Pages 159-168 ; 09277765 (ISSN) Bagheri Lotfabad, T ; Ebadipour, N ; Roostaazad, R ; Partovi, M ; Bahmaei, M ; Sharif University of Technology
    Elsevier B.V  2017
    Abstract
    Rhamnolipids are the most common biosurfactants and P. aeruginosa strains are the most frequently studied microorganisms for the production of rhamnolipids. Eco-friendly advantages and promising applications of rhamnolipids in various industries are the major reasons for pursuing the economic production of these biosurfactants. This study shows that cultivation of P. aeruginosa MR01 in medium contained inexpensive soybean oil refinery wastes which exhibited similar levels and homologues of rhamnolipids. Mass spectrometry indicated that the Rha-C10-C10 and Rha-Rha-C10-C10 constitute the main rhamnolipids in different cultures of MR01 including one of oil carbon source analogues. Moreover,... 

    Evaluation of the Effect of the Presence of Activated Carbon Powder on the Microbial Removal of Azomethyl Red Dye by Klebsiella Bacteria

    , M.Sc. Thesis Sharif University of Technology Rajabi, Masoud (Author) ; Yaghmaei, Soheila (Supervisor) ; Bagheri Lotfabad, Tayebeh (Supervisor)
    Abstract
    Synthetic azo dyes are one of the most common environmental pollutants in wastewater due to their many uses in various industries such as textile, printing, food, cosmetics, etc. In this project, the bacterial removal method is used to remove azo methyl red dye, and according to the functional groups on the surface of activated carbon, its effect on the efficiency and rate of the microbial removal process of azo methyl red dye is investigated. For this purpose, dye removal tests for each dye concentration (0.1 to 6 mM) in three separate series, as (1) dye removal in the presence of bacteria, (2) dye removal in the presence of activated carbon, and (3) dye removal was investigated in the... 

    Enhanced soil remediation via plant-based surfactant compounds from acanthophyllum laxiusculum

    , Article Tenside, Surfactants, Detergents ; Volume 53, Issue 4 , 2016 , Pages 324-331 ; 09323414 (ISSN) Soltaninejad, H ; Bagheri Lotfabad, T ; Yaghmaei, S ; Sharif University of Technology
    Carl Hanser Verlag  2016
    Abstract
    In the present study, an aqueous root-extract of Acanthophyllum laxiusculum (AREAL) was evaluated for phenanthrene removal from two samples of contaminated soil. AREAL showed a linear solubilization enhancement for phenanthrene with a weight solubilization ratio of 0.05. Batch soil washing experiments caused the removal of phenanthrene with efficiencies of 96.7% and 78% from soils with 0.78% and 2.73% organic carbon, respectively. Desorption kinetics of phenanthrene exhibited a twophase pattern, namely, a rapid release as the initial phase and a slower removal as a subsequent phase. A two-compartment exponential model could adequately represent the two phases of the kinetic pattern of... 

    Remediation of Polycyclic Aromatics Hydrocarbons- Containated Soils Using Plant-Derived Biousurfactants

    , M.Sc. Thesis Sharif University of Technology Soltaninejad, Hajar (Author) ; Yaghmaei, Soheila (Supervisor) ; Bagheri Lotfabad, Tayebe (Supervisor)
    Abstract
    Polyaromatic hydrocarbons are toxic compounds generally produced by combustion of explosives and petroleum materials. They cause soil and ground water contamination. PAHs are carcinogenic and lead to serious health problems for human and other living things; hence they should be removed from the environment. Soil washing technique has been one of methods applied for soil treatment during the years and surface active compounds like emulsifiers and surfactants have been introduced into washing process to improve the removal efficiency. On the other hand, synthetic surfactants made of chemicals and petroleum materials are not degradable and remain in the environment. To void this secondary... 

    Bioremoval of Heavy Metals Through the use of an Indigenous Bacterial Isolate

    , M.Sc. Thesis Sharif University of Technology Afghari, Amir Hossein (Author) ; Soheila Yaghmaei (Supervisor) ; Bagheri Lotfabad, Tayebeh (Supervisor)
    Abstract
    In this study, the biosorption process of zinc ions from aqueous solutions by the biomass of a native Bacillus paralicheniformis strain, isolated from the industrial wastewater of a textile factory in the Kashan region, was investigated and optimized. The objective was to develop an effective and eco-friendly biotechnological approach for the removal of heavy metals from industrial effluents. Due to its inherent resistance to harsh environmental conditions and high tolerance to metal ions, this strain was identified as a potent biosorbent. Attributes such as flocculation capability and surface adhesiveness facilitated biomass separation and reduced operational costs. Optimal conditions for... 

    Adsorption of carmoisine and malachite green on silicon dioxide-based stones nanosized by ball milling

    , Article Advances in Environmental Technology ; Volume 10, Issue 2 , 2024 , Pages 142-159 ; 24766674 (ISSN) Bahman, P ; Bagheri Lotfabad, T ; Heydarinasab, A ; Yaghmaei, S ; Sharif University of Technology
    2024
    Abstract
    Industries extensively use synthetic dyes, and it is crucial to eliminate them from effluents to prevent their accumulation in nature. The elimination of synthetic dyes is effectively achieved through the well-established method of adsorption; previous researchers have developed a range of materials dedicated to the adsorption of such dyes. In this regard, natural materials have received much attention as environmentally friendly. This study examined the ability of SiO2-based stone samples, including silica, zeolite, pumice, and scoria, to adsorb carmoisine and malachite green dyes from water. The ball-milling method was utilized to prepare the nanosized adsorbents. Physicochemical... 

    Integrated system of multiple batches to evaluate the continuous performance of microbial cells in decolourization processes

    , Article Journal of Environmental Chemical Engineering ; Volume 6, Issue 1 , February , 2018 , Pages 728-735 ; 22133437 (ISSN) Vatandoostarani, S ; Bagheri Lotfabad, T ; Heidarinasab, A ; Ebadipour, N ; Yaghmaei, S ; Sharif University of Technology
    Elsevier Ltd  2018
    Abstract
    Azo dye degradation in wastewater treatment is a subject which has garnered the attention of many research studies. In this study, an innovative approach, namely, an integrated system of five batches (ISFB), was developed to investigate the capability of Saccharomyces cerevisiae ATCC 9763 for continuous degradation of methyl red as a representative azo dye. Toward this end, an expanded immobilized microbial bed (EIMB) reactor was established with a bed of encapsulated yeast cells in sodium alginate. EIMB reactor was run in two modes, single batch and ISFB. Moreover, durability of the microbial cells was evaluated by repeating the continuous decolourization eight sequential times in EIMB at... 

    An efficient biosurfactant-producing bacterium pseudomonas aeruginosa MR01, isolated from oil excavation areas in south of Iran

    , Article Colloids and Surfaces B: Biointerfaces ; Volume 69, Issue 2 , 2009 , Pages 183-193 ; 09277765 (ISSN) Bagheri Lotfabad, T ; Shourian, M ; Roostaazad, R ; Rouholamini Najafabadi, A ; Adelzadeh, M. R ; Akbari Noghabi, K ; Sharif University of Technology
    2009
    Abstract
    A bacterial strain was isolated and cultured from the oil excavation areas in tropical zone in southern Iran. It was affiliated with Pseudomonas. The biochemical characteristics and partial sequenced 16S rRNA gene of isolate, MR01, was identical to those of cultured representatives of the species Pseudomonas aeruginosa. This bacterium was able to produce a type of biosurfactant with excessive foam-forming properties. Compositional analysis revealed that the extracted biosurfactant was composed of high percentages lipid (∼65%, w/w) and carbohydrate (∼30%, w/w) in addition to a minor fraction of protein (∼4%, w/w). The best production of 2.1 g/l was obtained when the cells were grown on... 

    Biological activated carbon process for biotransformation of azo dye Carmoisine by Klebsiella spp

    , Article Environmental Technology (United Kingdom) ; 2021 ; 09593330 (ISSN) Poorasadollah, D ; Bagheri Lotfabad, T ; Heydarinasab, A ; Yaghmaei, S ; Mohseni, F. A ; Sharif University of Technology
    Taylor and Francis Ltd  2021
    Abstract
    The feasibility of employing the biological activated carbon (BAC) process to debilitate azo dye Carmoisine by Klebsiella spp. was investigated. Plate assay revealed the capability of Klebsiella spp. for removal of Carmoisine via degradation. Kinetic parameters were measured for Carmoisine debilitation by Klebsiella spp. using the suspended anaerobic process. Two types of granular and rod-shaped activated carbon were used to form the biological beds in order to study the Carmoisine debilitation in batch processes. Scanning electron microscopy (SEM) and confocal laser scanning microscopy (CLSM) were used to indicate the colonization and biofilm formation of bacteria grown on activated carbon... 

    Biological activated carbon process for biotransformation of azo dye carmoisine by klebsiella spp

    , Article Environmental Technology (United Kingdom) ; Volume 43, Issue 18 , 2022 , Pages 2713-2729 ; 09593330 (ISSN) Poorasadollah, D ; Bagheri Lotfabad, T ; Heydarinasab, A ; Yaghmaei, S ; Mohseni, F. A ; Sharif University of Technology
    Taylor and Francis Ltd  2022
    Abstract
    The feasibility of employing the biological activated carbon (BAC) process to debilitate azo dye Carmoisine by Klebsiella spp. was investigated. Plate assay revealed the capability of Klebsiella spp. for removal of Carmoisine via degradation. Kinetic parameters were measured for Carmoisine debilitation by Klebsiella spp. using the suspended anaerobic process. Two types of granular and rod-shaped activated carbon were used to form the biological beds in order to study the Carmoisine debilitation in batch processes. Scanning electron microscopy (SEM) and confocal laser scanning microscopy (CLSM) were used to indicate the colonization and biofilm formation of bacteria grown on activated carbon... 

    Rubber-toughened epoxies: A critical review

    , Article Polymer Reviews ; Volume 49, Issue 3 , 2009 , Pages 201-225 ; 15583724 (ISSN) Bagheri, R ; Marouf, B. T ; Pearson, R. A
    2009
    Abstract
    Epoxy resins have been used as structural materials since the late 1940s. Despite their desirable properties such as high strength, excellent creep resistance, and good adhesion, they suffer from low fracture energy. Rubber modification as a major toughening approach to overcome the inherent brittleness of epoxy polymers was introduced during the early 1970s. Since then, a large number of investigations have been conducted to elucidate different aspects of rubber-toughened epoxies. The present work is a critical review of the field focusing on the important parameters affecting rubber-toughening. The studies reviewed are classified in five categories including roles of matrix ductility,... 

    Comparative approach for detection of biosurfactant-producing bacteria isolated from Ahvaz petroleum excavation areas in south of Iran

    , Article Annals of Microbiology ; Volume 58, Issue 3 , 2008 , Pages 555-559 ; 15904261 (ISSN) Afshar, S ; Bagheri Lotfabad, T ; Roostaazad, R ; Rouholamini Najafabadi, A ; Akbari Noghabi, K ; Sharif University of Technology
    University of Milan  2008
    Abstract
    The current study was undertaken to compare four analytical methods including drop collapse, oil spreading, surface tension (SFT) measurements, and blood agar lysis tests for detection of biosurfactant-producing bacteria. Among 32 biosurfactant-producing bacteria isolated from Ahvaz oil fields, in south of Iran, 16 isolates (50%) exhibited highest biosurfactant production. Eleven isolates (MASH.1 to MASH.11) demonstrated a reduction in surface tension from 65 mN/m to less than 41 mN/m. The results showed that about 91% of these highly biosurfactant producers had the same response levels of "++++" and "+++" in the case of both SFT and oil spreading methods. Among these, seven isolates had the... 

    An efficient public key encryption scheme based on QC-MDPC lattices

    , Article IEEE Access ; 2017 ; 21693536 (ISSN) Bagheri, K ; Sadeghi, M ; Eghlidos, T ; Sharif University of Technology
    2017
    Abstract
    In this paper, we introduce a new family of lattices, namely QC-MDPC lattices which are a special case of LDPC lattices, and an improved bit flipping algorithm for decoding of these lattices. Encoding and decoding implementations of QC-MDPC lattices are practical in high dimensions. Indeed, to take advantage of practical decoding we use "Construction-A" lattices which makes a tight connection between the structure of lattices and codes. Using these features we design a lattice-based public key encryption scheme enjoying linear encryption and decryption complexities. The proposed scheme has a reasonable key size due to the sparseness of the parity-check matrix and the quasi cyclic structure...