کد مقاله کد نشریه سال انتشار مقاله انگلیسی نسخه تمام متن
7019836 1455942 2018 32 صفحه PDF دانلود رایگان
عنوان انگلیسی مقاله ISI
The influence of sulfonated hyperbranched polyethersulfone-modified halloysite nanotubes on the compatibility and water separation performance of polyethersulfone hybrid ultrafiltration membranes
ترجمه فارسی عنوان
اثر نفوذ نانولوله های هالوویستیک اصلاح شده با پلیت های سولفون سولفونیک بر عملکرد سازگاری و جداسازی آب غشاهای فوق العاده تصفیه پلیت های سولفون هیبرید
کلمات کلیدی
نانو لوله های هالوئیزیت، سازگاری، غشاء اولترافیلتراسیون ترکیبی، عملکرد جداسازی غشاء،
موضوعات مرتبط
مهندسی و علوم پایه مهندسی شیمی تصفیه و جداسازی
چکیده انگلیسی
Sulfonated hyperbranched polyethersulfone (SHBPES)-modified halloysite nanotubes (HNTs), HNT-SHBPES, were synthesized and mixed with polyethersulfone (PES) to prepare hybrid ultrafiltration (UF) membranes via the phase inversion method. Pure PES and PES hybrid membranes mixed with SHBPES and HNTs were also prepared. The HNT-SHBPES showed good compatibility with the PES membrane matrix, and a series of PES/HNT-SHBPES hybrid membranes offered improved porosity, surface mean pore size, hydrophilicity, permeability, and anti-fouling properties. These were mainly attributed to the synergistic effects of hydrophilic -SO3H of SHBPES, porous HNTs, and the tiny interspace between HNT-SHBPES and PES matrix. When 8% HNT-SHBPES was doped into PES casting solution (MHS-8), its pure water flux reached 351.6 L/m2 h-this was nearly 2.2 times that of the pure PES membrane (M-0); its rejection rate remained high primarily due to the occurrence of delayed phase separation in the solidification process and the good compatibility between HNT-SHBPES and PES matrix. This resulted in a relatively dense, uniform, and defect-free surface. Additionally, bovine serum albumin (BSA) and humic acid (HA) were chosen as model contaminants to evaluate the anti-fouling properties of all prepared membranes. After multi-cycles UF experiments, MHS-8 retained a higher flux recovery rate and rejection rate than the other membranes confirming its excellent anti-fouling properties and stable overall performance. This work offers a new possibility for hyperbranched polymer-modified nanomaterials to enhance their compatibility with membrane matrix and improve membrane separation performance.
ناشر
Database: Elsevier - ScienceDirect (ساینس دایرکت)
Journal: Journal of Membrane Science - Volume 557, 1 July 2018, Pages 13-23
نویسندگان
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