Application of nano-zero-valent iron supported on activated carbon for phosphorus removal from wastewater / Adel Mohamed Adly Kamal ; Supervised Abdelsalam Ahmed Elawwad , Nagwan Gamal Mostafa
Material type: TextLanguage: English Publication details: Cairo : Adel Mohamed Adly Kamal , 2020Description: 79 P. : charts , facimiles ; 30cmOther title:- استخدام الحديد النانو ذات التكافؤ الصفرى المدعوم من الكربون النشط لإزالة الفوسفورمن مياه الصرف الصحي [Added title page title]
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Thesis | قاعة الرسائل الجامعية - الدور الاول | المكتبة المركزبة الجديدة - جامعة القاهرة | Cai01.13.05.M.Sc.2020.Ad.A (Browse shelf(Opens below)) | Not for loan | 01010110081377000 | |||
CD - Rom | مخـــزن الرســائل الجـــامعية - البدروم | المكتبة المركزبة الجديدة - جامعة القاهرة | Cai01.13.05.M.Sc.2020.Ad.A (Browse shelf(Opens below)) | 81377.CD | Not for loan | 01020110081377000 |
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Cai01.13.05.M.Sc.2020.Ab.N Numerical evaluation of response modification factor for RC structures under the effect of vertical and horizontal ground motions / | Cai01.13.05.M.Sc.2020.Ab.W Wind load analysis of two steel buildings connected with a sky-bridge / | Cai01.13.05.M.Sc.2020.Ab.W Wind load analysis of two steel buildings connected with a sky-bridge / | Cai01.13.05.M.Sc.2020.Ad.A Application of nano-zero-valent iron supported on activated carbon for phosphorus removal from wastewater / | Cai01.13.05.M.Sc.2020.Ad.A Application of nano-zero-valent iron supported on activated carbon for phosphorus removal from wastewater / | Cai01.13.05.M.Sc.2020.Ah.B Behavior of flat slabs with shear reinforcement in punching / | Cai01.13.05.M.Sc.2020.Ah.B Behavior of flat slabs with shear reinforcement in punching / |
Thesis (M.Sc.) - Cairo University - Faculty of Engineering- Department of Civil Engineering
Phosphorus (P) in natural water bodies is a fundamental nutrient for organisms in wide ecosystems. However, it is also one of the most critical elements for causing eutrophication. Hence, it is important to maintain the phosphorus level in the aquatic environments in the acceptable limits through efficient removal technique. In this research, nanoscale zero-valent iron (nZVI) particles supported on activated carbon (AC) were synthesized using the chemical reduction method and utilized in phosphorus removal batches.The characterization of the prepared composite by SEM, EDX, and BET SSA revealed that the nZVI was successfully loaded and well dispersed onto AC surface, and nZVI/AC particles exhibited large specific surface area (72.66 m2/g). XRD and FTIR analysis showed that the formation of nZVI particles with less oxidized iron products (Fe2O3) on the surface of nZVI/AC.Batch experiments were carried out under different conditions to study the effect of parameters such as aerobic and anaerobic conditions, pH value, initial phosphorus concentration, nZVI/AC dose, shaker rotation speed and ambient air temperature
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