کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
687021 | 1460101 | 2014 | 10 صفحه PDF | دانلود رایگان |
عنوان انگلیسی مقاله ISI
Evaluation of commercial PTFE membranes in desalination by direct contact membrane distillation
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کلمات کلیدی
AGMDPTFEHDPEDCMDVMDSGMDLEPMSPsReverse Osmosis - اسمز معکوسUltrafiltration - اولترافیلتراسیونDirect contact membrane distillation - تقسیم مستقیم غشای تماسMembrane distillation - تقطیر غشاییVacuum membrane distillation - تقطیر غشایی خلاءDirect contact membrane distillation (DCMD) - تقطیر غشایی مستقیم تماس (DCMD)Air-gap membrane distillation - تقطیر غشایی هواپیماSweeping Gas Membrane Distillation - تقطیر غشایی گاز پاششMembrane characteristics - خصوصیات غشاءLiquid entry pressure - فشار ورودی مایعSupport layer - لایه پشتیبانیMicrofiltration - میکروفیفتراسیونdesalination - نمکزدایی یا شیرین کردنPET - پتMembrane separation processes - پروسه جداسازی غشاءHigh density polyethylene - پلی اتیلن چگالی بالاpolytetrafluoroethylene - پلی تترافلورو اتیلنPolypropylene - پلی پروپیلن
موضوعات مرتبط
مهندسی و علوم پایه
مهندسی شیمی
تکنولوژی و شیمی فرآیندی
پیش نمایش صفحه اول مقاله

چکیده انگلیسی
In this study, nine flat-sheet commercially available hydrophobic PTFE membranes were used in desalination by direct contact membrane distillation and their characteristics were investigated under different operating conditions including feed temperature, feed flow rate, cold stream flow rate, and feed concentration. Membrane properties, i.e. pore size, thickness, support layer, and salt rejection were also studied. Moreover, membrane module designs including flow arrangements (co-current, counter-current and tangential) for process liquid and depth both on hot and cold sides were tested experimentally. Finally, the long-term performance of the selected membranes for direct contact membrane distillation as a stand-alone desalination process was investigated. The results indicated that increasing feed temperature, hot feed flow rate, and module depth on the cold side led to increase permeate flux. On the other hand, increasing membrane thickness and module depth on the hot side (at constant flow rate) had negative effects on the flux. The highest permeation flux and salt rejection was achieved when the membranes with a pore size of 0.22 μm were used in the cross-current follow arrangement of hot and cold streams. In addition, the requirements for support layer for a successful DCMD process has been extensively discussed.
ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Chemical Engineering and Processing: Process Intensification - Volume 76, February 2014, Pages 16-25
Journal: Chemical Engineering and Processing: Process Intensification - Volume 76, February 2014, Pages 16-25
نویسندگان
Mohammad Mahdi A. Shirazi, Ali Kargari, Meisam Tabatabaei,