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Adsorption of phosphate ions from water using a novel cellulose-based adsorbent

机译:使用新型纤维素基吸附剂从水中吸附磷酸根离子

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A novel cellulose-based adsorbent, iron(III)-coordinated amino-functionalised poly(glycidylmethacrylate)-grafted cellulose [Fe(III)-AM-PGMACell] was developed for the removal of phosphate from water and wastewater. The scanning electron micrograph showed that AM-PGMACell has a rougher surface than cellulose and the adsorption of Fe(III) on AM-PGMACell made the surface even rougher. Infrared spectroscopy revealed that amino groups on the surface of AM-PGMACell completed with Fe(III) played an important role in the removal of phosphate from solutions. X-Ray diffraction patterns showed a decrease in crystallinity after graft copolymerisation onto cellulose. The effects of contact time, initial sorbate concentration, pH, agitation speed, dose of adsorbent and temperature on the removal process were investigated. Maximum removal of 99.1% was observed for an initial concentration of 25 mg · L~(-1) at pH 6.0 and an adsorbent dose of 2.0 g · L~(-1). A two-step pseudo-first-order kinetic model and Sips isotherm model represented the measured data very well. Complete removal of 11.6mg · L~(-1) phosphate from fertiliser industry wastewater was achieved by 1.6 g · L~(-1) Fe(III)-AM-PGMACell. The adsorbent exhibited very high reusability for several cycles. Overall, the study demonstrated that Fe(III)-AM-PGMACell can be used as an efficient adsorbent for the removal and recovery of phosphate from water and wastewater.
机译:开发了一种新型的纤维素基吸附剂,铁(III)配位的氨基官能化的聚甲基丙烯酸缩水甘油酯接枝的纤维素[Fe(III)-AM-PGMACell],用于去除水中和废水中的磷酸盐。扫描电子显微镜照片显示,AM-PGMACell具有比纤维素更粗糙的表面,并且Fe(III)在AM-PGMACell上的吸附使表面更加粗糙。红外光谱显示,用Fe(III)完成的AM-PGMACell表面的氨基在从溶液中去除磷酸盐方面起着重要作用。 X-射线衍射图表明接枝共聚到纤维素上后结晶度降低。研究了接触时间,初始吸附物浓度,pH,搅拌速度,吸附剂剂量和温度对去除过程的影响。在pH 6.0时初始浓度为25 mg·L〜(-1),吸附剂量为2.0 g·L〜(-1)时,最大去除量为99.1%。两步伪一阶动力学模型和Sips等温模型很好地表示了测量数据。通过1.6 g·L〜(-1)Fe(III)-AM-PGMACell,可完全去除化肥工业废水中的11.6mg·L〜(-1)磷酸盐。吸附剂在几个循环中显示出很高的可重复使用性。总的来说,该研究表明Fe(III)-AM-PGMACell可以用作从水中和废水中去除和回收磷酸盐的有效吸附剂。

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