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    Rapid removal of heavy metal ions from aqueous solutions by low cost adsorbents

    , Article International Journal of Global Environmental Issues ; Volume 12, Issue 2-4 , 2012 , Pages 318-331 ; 14666650 (ISSN) Ahmadpour, A ; Rohani Bastami, T ; Tahmasbi, M ; Zabihi, M ; Sharif University of Technology
    Interscience  2012
    Abstract
    In the present investigation, different agricultural solid wastes namely: eggplant hull (EH), almond green hull (AGH), and walnut shell (WS), that are introduced as low cost adsorbents, were used for the removal of heavy metals (cobalt, strontium and mercury ions) from aqueous solutions. Activation process and/or chemical treatments using H 2O 2 and NH 3 were performed on these raw materials to increase their adsorption performances. The effectiveness of these adsorbents was studied in batch adsorption mode under a variety of experimental conditions such as: different chemical treatments, various amounts of adsorbents, initial metal-ion concentrations, pH of solutions, contact times, and... 

    A novel sensitive aptamer-based nanosensor using rGQDs and MWCNTs for rapid detection of diazinon pesticide

    , Article Journal of Environmental Chemical Engineering ; Volume 9, Issue 1 , 2021 ; 22133437 (ISSN) Fooladi Talari, F ; Bozorg, A ; Faridbod, F ; Vossoughi, M ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    An optical apta-nanosensor was designed and developed based on reduced graphene quantum dots (rGQDs) and multi-walled carbon nanotubes (MWCNTs) and applied for the selective detection of diazinon as one of the most widely used organophosphorus pesticides. Considering the GQDs and rGQDs high fluorescence emission and optical stability, efficient optical transducers could be designed and precise detection methods could be developed based on such transducers. Herein, by using rGQDs, diazinon specific aptamer, and MWCNTs, a simple economical fluorescence method has been introduced to detect and measure diazinon with the detection limit of 0.4 nM (0.1 μg/L) in the range of 4-31 nM, meeting the... 

    Overview on the separation and removal of Haloaceticacid'S in drinking water

    , Article 4th WSEAS International Conference on Waste Management, Water Pollution, Air Pollution, Indoor Climate, WWAI '10, 3 May 2010 through 6 May 2010, Sousse ; 2010 , Pages 25-31 ; 9789604741908 (ISBN) Tababaee Ghomsheh, S. M ; Soltanieh, M ; Mosavi, M ; Sharif University of Technology
    2010
    Abstract
    The increase of pollution and the expansion of industrial, agricultural wastewater and urban runoff discharges in water sources have intensified the concentration of water pollutants. Considering that in Iran as in other countries the major part of drinking water is obtained from surface waters and due to the importance of disinfection, chlorination is doubtlessly the optimum and most common water treatment method used. However this method produces chlorination by-products (CBPs). Trihalomethanes(THMs) and Haloaceticacids (HAAs) are the main and most important groups of disinfection by-products (DBPs). Separation of THMs has gained a lot of breakthroughs since a lot of time elapses from its...