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Mercury removal from aqueous solutions using silica, polyacrylamide and hybrid silica-polyacrylamide aerogels

机译:使用二氧化硅,聚丙烯酰胺和二氧化硅-聚丙烯酰胺混合气凝胶从水溶液中去除汞

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Mercury(II) ions adsorption from aqueous solutions onto silica, polyacrylamide, and hybrid silica-polyacrylamide aerogels is studied. The aerogels structure was verified by FTIR spectroscopy and their texture by nitrogen adsorption. The adsorbents were tested under different experimental conditions where the effect of temperature, pH, contact time, initial mercury(II) concentration, and aerogels quantity were investigated. The mercury adsorption onto the three aerogels was shown to be very fast, with the fastest being performed at 45 °C onto the hybrid aerogels. pH 11 was revealed optimum indicating a superlative surface interaction between the adsorbent and the adsorbate. The adsorption kinetics follows a pseudo second-order pointing out the co-existence of chemisorption and physisorption with the intra-particle diffusion being the rate controlling step. The mercury(II) adsorption fits well with Lang-muir adsorption isotherms where the polyacrylamide aerogels showed the highest adsorption capacity, followed by the hybrid aerogels. The regeneration of the aerogels at pH 2 and their reuse at pH 11 was conducted for three consecutive reuses where the adsorption capacity was successfully maintained. The hybrid aerogels were found to be the most economically interesting adsorbents due to their noticeable adsorptive capacity after regeneration coupled with their no-swelling behavior.
机译:研究了水溶液中汞(II)离子在二氧化硅,聚丙烯酰胺和二氧化硅-聚丙烯酰胺混合气凝胶上的吸附。通过FTIR光谱验证气凝胶的结构,并通过氮吸附验证其质地。在不同的实验条件下对吸附剂进行了测试,其中研究了温度,pH,接触时间,初始汞(II)浓度和气凝胶数量的影响。汞在三种气凝胶上的吸附速度非常快,最快的是在45°C的混合气凝胶上进行的。最佳pH为11,表明吸附剂和被吸附物之间存在最高级的表面相互作用。吸附动力学遵循伪二级,指出化学吸附和物理吸附并存,其中颗粒内扩散是速率控制步骤。汞(II)吸附与朗缪尔吸附等温线非常吻合,聚丙烯酰胺气凝胶显示出最高的吸附容量,其次是混合气凝胶。气凝胶在pH 2的再生和在pH 11的重复使用进行了连续三次重复使用,并成功地保持了吸附能力。混合气凝胶被发现是最经济有趣的吸附剂,因为它们在再生后具有显着的吸附能力以及无溶胀行为。

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