> 3‐Hydroxy‐ N , N ‐diethylaniline (HDEA) as a tertiary aromatic amine was introduced onto the surface of chl'/> Preparation of PSSS‐grafted polysulfone microfiltration membrane and its rejection and removal properties towards heavy metal ions
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Preparation of PSSS‐grafted polysulfone microfiltration membrane and its rejection and removal properties towards heavy metal ions

机译:PSS-接枝聚砜微滤膜的制备及其对重金属离子的排斥和去除性能

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> 3‐Hydroxy‐ N , N ‐diethylaniline (HDEA) as a tertiary aromatic amine was introduced onto the surface of chloromethylated polysulfone (CMPSF) microfiltration membrane through modification reaction, resulting in the modified membrane PSF‐DEA. A redox surface‐initiating system (DEA/APS) was constituted by the bonded tertiary aromatic amine group DEA and ammonium persulfate (APS) in aqueous solution, and so, the free radicals formed on the membrane initiated sodium p‐styrenesulfonate (SSS) as an anionic monomer to produce graft polymerization, getting the grafting‐type composite microfiltration membrane, PSF‐ g ‐PSSS membrane. Subsequently, the adsorption property of PSF ‐g ‐PSSS membrane for three heavy metal ions, Pb 2+ , Zn 2+ , and Hg 2+ ions, was fully examined, and the rejection performance of PSF ‐g ‐PSSS membrane towards the three heavy metal ions was emphatically evaluated via permeation experiments. The experimental results show that by the initiating of the surface‐initiating system of DEA/APS, the graft polymerization can smoothly be carried out under mild conditions. PSF ‐g ‐PSSS membrane as a functional microfiltration membrane has strong adsorption ability for heavy metal ions by right of strong electrostatic interaction (or ion exchange action) between the anionic sulfonate ions on the membrane and heavy metal ions. The order of adsorption capacity is Pb 2+ ??Zn 2+ ??Hg 2+ , and the adsorption capacity of Pb 2+ ion gets up to 2.18?μmol/cm 2 . As the volume of permeation solutions, in which the concentrations of the three metal ions are 0.2?mmol/L, are in a range of 50 to 70?mL, the rejection rate of PSF ‐g ‐PSSS membrane for the three heavy metal ions can reach a level of 95%, displaying a fine rejection and removing performance towards heavy metal ions.
机译: > 3-羟基 - n 那 n - 通过改性反应将其作为叔芳族胺(HDEA)作为叔芳族胺引入氯甲基化的聚砜(CMPSF)微滤膜的表面上,得到改性膜PSF-DEA。氧化还原表面引发系统(DEA / AP)由粘合的叔芳族胺基DEA和铵过硫酸铵(APS)在水溶液中构成,因此,在膜上形成的自由基引发了苯乙烯磺酸钠(SSS)作为一种阴离子单体,用于产生接枝聚合,得到接收式复合微滤膜,PSF- g -pssss膜。随后,PSF的吸附性能 -g 用于三个重金属离子,Pb的膜 2 + ,Zn. 2 + 和hg 2 + 完全检查了离子,并抑制PSF的抑制性能 -g 通过渗透实验重点评估朝向三种重金属离子的膜。实验结果表明,通过启动DEA / AP的表面引发系统,接枝聚合可以在温和条件下平滑地进行。 PSF. -g -PSSSSS膜作为功能性微滤膜具有强金属离子在膜和重金属离子上的阴离子磺酸根离子之间的强静电相互作用(或离子交换作用)方面具有强的吸附能力。吸附容量的顺序是PB 2 + ?&?zn 2 + ?&?hg 2 + ,以及Pb的吸附能力 2 + 离子高达2.18?μmol/ cm 2 。作为渗透溶液的体积,其中三个金属离子的浓度为0.2≤mmol/ l,在50至70μm的范围内,PSF的抑制率 -g 用于三个重金属离子的膜可以达到95%的水平,显示出对重金属离子的精细排斥和去除性能。

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