海水淡化
正渗透
卤水
膜
肥料
化学
盐度
核化学
色谱法
反渗透
化学工程
地质学
有机化学
生物化学
工程类
海洋学
作者
Doaa F. Ahmed,Heba Isawi,A. A. El-Bayaa,Nagwa A. Badway,Hosam Shawky
出处
期刊:Journal of Membrane and Separation Technology
[Lifescience Global]
日期:2022-05-23
卷期号:9: 1-14
标识
DOI:10.6000/1929-6037.2020.09.01
摘要
This paper deals with various fertilizer influences to draw solutions to the neat CTA/CA, MA/CTA/CA, and the Al2O3/MA/CTA/CA nanocomposite (NC) modified membrane. Also, the applicability of the neat CTA/CA, MA/CTA/CA, and The Al2O3/MA/CTA/CA nanocomposite (NC) modified membrane display high water flux when it used to desalinate brine water sample collected from the brine mid-stream from Mersa Matruh area, North-Western Coast of Egypt. The salinity of the collected sample is 12760 mg/L and PH (8.5) and used as FS, and 1M from different fertilizer draw solutes (DFDS) include KCl, NH4Cl, (NH4)2SO4, and K2HPO4 used as DS. The results reveal that the flux was KCl and NH4Cl (17.8 L/m2.h) and followed by (NH4)2SO4 (17.1 L/m2.h) and K2HPO4 (16.6 L/m2.h) using the natural saline water as FS using Al2O3/MA/CTA/CA NC modified membrane. The reusability test of the synthesised Al2O3/MA/CTA/CA NC modified membrane showed good sustainability during the 1260 min continuous test. The FO application displayed a great potential to be interested in brine wastewater desalination and enhanced water source sustainability to use in agriculture fertigation.
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