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首页> 外文期刊>Journal of Colloid and Interface Science >Synthesis of a new thiophenol-thiophene polymer for the removal of mercury from wastewater and liquid hydrocarbons
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Synthesis of a new thiophenol-thiophene polymer for the removal of mercury from wastewater and liquid hydrocarbons

机译:用于从废水和液态烃去除汞的新型噻吩酚 - 噻吩聚合物的合成

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This work reports the synthesis of a novel thiophenol-thiophene polymer (termed KFUPM-Hg) and its suitability as an adsorbent for mercury removal from wastewater and liquid hydrocarbons. KFUPM-Hg was synthesized through a Friedel-Crafts polycondensation reaction of thiophenol and thiophene in the presence of p-formaldehyde as a linker. The crosslinked polymer structure was characterized using solid-state C-13-nuclear magnetic resonance (NMR) and Fourier-transform infrared spectroscopy (FTIR). Thermogravimetric analysis was performed to assess the polymer thermal stability, which indicated that the polymer is thermally stable to over 300 degrees C. A series of batch adsorption studies were used to investigate the effects of different parameters (pH, temperature, concentration, and time) on the mercury removal from aqueous solution as well as from a model liquid hydrocarbon media (decane/toluene mixture). The batch adsorption studies in aqueous media showed near quantitative removal of inorganic mercury (II) at 100 ppm using the thiophenol-thiophene polymer adsorbent. Furthermore, the thiophenol-thiophene polymer demonstrated excellent removal capabilities of methylmercury in a decane/toluene hydrocarbon mixture. Mercury adsorption onto KFUPM-Hg is an exothermic reversible physical process and follows pseudo-second order adsorption kinetics. Remarkably, these removal capabilities were achieved using polymers that directly incorporated thiophenol and thiophene groups during synthesis without the use of thiol-ene post-synthesis modifications. (C) 2020 Elsevier Inc. All rights reserved.
机译:本文报道了一种新型的噻吩-噻吩聚合物(KFUPM-Hg)的合成及其作为废水和液态烃中汞去除吸附剂的适用性。以对甲醛为交联剂,通过噻吩和噻吩的弗里德尔-克拉夫茨缩聚反应合成了KFUPM-Hg。利用固态C-13核磁共振(NMR)和傅里叶变换红外光谱(FTIR)对交联聚合物的结构进行了表征。进行热重分析以评估聚合物的热稳定性,这表明聚合物在300℃以上具有热稳定性。通过一系列间歇吸附研究,研究了不同参数(pH、温度、浓度和时间)对水溶液以及模型液态烃介质(癸烷/甲苯混合物)中汞去除的影响。在水介质中的分批吸附研究表明,使用噻吩-噻吩聚合物吸附剂在100 ppm时几乎可以定量去除无机汞(II)。此外,噻吩-噻吩聚合物在癸烷/甲苯碳氢化合物混合物中表现出优异的甲基汞去除能力。KFUPM-Hg对汞的吸附是一个放热可逆的物理过程,遵循准二级吸附动力学。值得注意的是,这些去除能力是通过在合成过程中直接加入噻吩和噻吩基团的聚合物实现的,而无需使用硫醇烯合成后修饰。(C) 2020爱思唯尔公司版权所有。

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