ارزيابي نانوذرات آهن صفرظرفيتي پايدار شده با اسيد آسکوربيک در حذف سرب از محلولهاي آبي به روش سطح پاسخ
Journal Title: آب و فاضلاب - Year 2017, Vol 28, Issue 3
Abstract
Assessment of Pb (II) Removal from Aqueous Solutions by Ascorbic Acid-stabilized Zero-valent Iron Nanoparticles Using Response Surface Methodology (RSM) Abstract The growing pollution of water resources and the limited availability of water supplies have led to a growing interest by researchers to develop novel methods of water remediation and reuse. One such method is the use of ascorbic acid-stabilized zero-valent iron nanoparticles (AAS-ZVIN) for the removal of lead (Pb) from aqueous solutions. Using zero-valent iron nanoparticles stabilized with acid ascorbic under aerobic conditions, the present study was conducted to assess the efficiency of Pb removal from aqueous solutions and its optimization by the response surface methodology (RSM). For this purpose, use was made of the central composite design and the response surface methodology with the four input variables of ASS- ZVIN dose (0.5, 1, and 2 g L-1), pH (2, 5, and 7), contact time (5, 20, and 60 min), and initial Pb concentration (5, 10, and 20 mg L-1) to determine the optimal conditions for the process. Numerical optimization revealed that the optimum conditions for Pb removal (97.93%) included an ASS-ZVIN dose of 2 g L-1, an initial Pb (II) concentration of 25 mg L-1, a contact time of 60 min, and an initial solution pH of 7. The results also imply that not only does ASS-ZVIN offer a good potential for the remediation of water bodies contaminated with Pb, given its high reactivity for Pb removal, but that the RSM optimization process can be successfully employed for the optimization of the process in question.
Authors and Affiliations
M. Savasari, M. A. Bahmanyar, P. Biparva
تدوين مدل تخصيص عادلانه کمّي و کيفي آب در سيستمهاي رودخانه-مخزن: کاربرد روش بهينهسازي سناريوها
Developing a Water Quantity-Quality Equitable Allocation Model in River-Reservoir Systems: Application of Scenario Optimization Technique Water quantity-quality equitable allocation model in river-reservoir systems prov...
Mercury Removal from Contaminated Water Resources Using Modified Multi Walled Carbon Nanotubes
Abstract Mercury is one of the heavy metals that is toxic to humans, animals and the environment. The contribution of mercury in the water resources are from various sources including the discharge from industry and mun...
Leak Detection in Viscoelastic Pipeline Using Inverse Transient Analysis نشتيابي در خطوط لوله ويسکوالاستيک با استفاده از حل معکوس جريان گذرا
Abstract Leakage in water transmission systems and distribution networks in addition to waste of water and energy, can cause a declined water quality due to exposure to contaminants at low pressure conditions as well as...
Evaluation of Urban Water Distribution Network Under the Combined Hydraulic and Mechanical Reliabilities برآورد عملکرد شبکه توزيع آب شهري با تلفيق قابليت اعتماد هيدروليکي و مکانيکي
Abstract Network reliability is one of the most important parameter when evaluating the efficiency of water distribution networks (WDNs). WDN reliability is calculated based on the mechanical, hydraulic and water qualit...
تأثير زمان ماند هيدروليکي بر عملکرد بيوراکتور غشايي در تصفيه فاضلاب شهري Effects of Hydraulic Retention Time on the Performance of a Membrane Bioreactor Treating Municipal Wastewater
Effects of Hydraulic Retention Time on the Performance of a Membrane Bioreactor Treating Municipal Wastewater H. Falahati Marvast1 , A. Karimi Jashni2, Gh.R. Rakhshandehroo3 1. PhD Student of Civil and Environmental En...