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Synthesis of a Ni(II) ion imprinted polymer based on macroporous-mesoporous silica with enhanced dynamic adsorption capacity: optimization by response surface methodology

机译:基于大孔介孔二氧化硅的动态吸附能力增强的Ni(II)离子印迹聚合物的合成:通过响应面法进行优化

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In this study, a Ni(II) ion imprinted polymer (Ni(II)-IIP) based on macroporous-mesoporous silica (MMS) was optimally synthesized using a response surface methodology (RSM) approach for enhanced dynamic adsorption capacity. The MMS was prepared via dual-templating routes employing liquid crystalline surfactants and polystyrene beads to improve mass transfer and reduce transport limitations. With dynamic adsorption capacity for Ni(II) as the response, the effects of four variables, i.e. the amount of S,S'-bis(alpha,alpha'-dimethyl-alpha ''-acetic acid) trithiocarbonate (BDAAT), the consumption of acrylamide (AM), the reaction time and the dosage of 2,2'-azobisisobutyronitrile (AIBN), were investigated to solve the complex synthesis process. The predicted appropriate preparation conditions were as follows: BDAAT dose 0.07 g, AM dose 0.029 g, reaction time 6.3 h, and AIBN dose 4.54 mg, under which a Ni(II)-IIP was prepared and used as an adsorbent to remove Ni(II), obtaining the maximum dynamic adsorption capacity (12.96 mg g(-1)). The significance of independent variables and their interactions was studied to explain the specific adsorption question. In addition, the resulting Ni(II)-IIP was performed without any obvious deterioration after five repeated cycles.
机译:在这项研究中,使用响应表面方法(RSM)方法优化合成了基于大孔介孔二氧化硅(MMS)的Ni(II)离子印迹聚合物(Ni(II)-IIP),以增强动态吸附能力。通过使用液晶表面活性剂和聚苯乙烯珠粒的双模板法制备MMS,以改善质量传递并减少运输限制。以对Ni(II)的动态吸附容量为响应,四个变量的影响,即S,S'-双(α,α'-二甲基-α''-乙酸)三硫代碳酸酯(BDAAT)的量,研究了丙烯酰胺(AM)的用量,反应时间和2,2'-偶氮二异丁腈(AIBN)的用量,以解决复杂的合成过程。预测的合适制备条件如下:BDAAT剂量为0.07 g,AM剂量为0.029 g,反应时间6.3 h,AIBN剂量为4.54 mg,在此条件下制备了Ni(II)-IIP并用作吸附剂以去除Ni(II)。 II),获得最大动态吸附容量(12.96 mg g(-1))。研究了自变量及其相互作用的意义,以解释具体的吸附问题。另外,在五个重复循环后,所得的Ni(II)-IIP进行得没有任何明显的劣化。

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