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Highly selective heteroaromatic sulfur containing polyamides for Hg+2 environmental remediation

机译:用于Hg + 2环境修复的高选择性杂芳族含硫聚酰胺

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Environmental remediation concerns about pollution and contamination removal from environmental media, such as soil, air, or surface water. Enormous efforts have been applied in metal removal from surface water. In this study, four novel heteroaromatic sulfur-containing polyamides 6_(a-d) carry both types of aliphatic and aromatic species in their polymer backbones as selective adsorbents for Hg~(+2) metal ion from aqueous solution have been synthesized in considerable amounts. The polycondensation method at low temperature is used as a simple and low coast polymerization technique. This occurred by the interaction of the thiophene-based monomer 5 with different diacid chlorides of both types. Beforehand the polymerization, the structures of monomer 5 were confirmed by spectral and elemental analyses. Also, the structures of the new polymers were investigated by both spectral and elemental analysis; besides their solubility, GPC data, XRD diffraction patterns, thermal analysis, and FE-SEM micrographs. The synthesized polymers were freely soluble in polar protic solvents due to the presence of heteroaromatic sulfur functional groups. Furthermore, the analytical competition of the new polymers has been tested using inductively coupled plasma-optical emission spectrometry (ICP-OES) for its selective extraction across different metal ions. Polymer 6_(c) was the most selective toward Hg~(+2) and considered as a highly selective adsorbent for Hg~(+2) environmental remediation among all derivatives and its adsorption detection and efficiency were also investigated. Polymer 6c showed the most effective adsorption quantity on its surface at pH?=?1. Moreover, the calculated adsorption isotherm showed a typical isotherm to the Langmuir adsorption type. This showed that the adsorption capacity of polymer 6_(c) for Hg~(+2) was 47.95?mg?g~(?1). These novel polymers are serving as simple and inexpensive heavy metal ions adsorbent materials from drinking water and wastewater.
机译:环境修复涉及从土壤,空气或地表水等环境介质中清除污染和污染物的问题。在从地表水中去除金属方面已经进行了巨大的努力。在这项研究中,四种新型的杂芳族含硫聚酰胺6_(a-d)在其聚合物主链中同时具有脂肪族和芳香族两种类型,因为已从水溶液中大量合成了Hg〜(+2)金属离子的选择性吸附剂。低温下的缩聚方法被用作一种简单的低海岸聚合技术。这是由于基于噻吩的单体5与两种类型的不同二酰氯的相互作用而发生的。在聚合之前,通过光谱和元素分析确认单体5的结构。此外,还通过光谱和元素分析研究了新聚合物的结构。除了它们的溶解度,GPC数据,XRD衍射图,热分析和FE-SEM显微照片外。由于存在杂芳族硫官能团,合成的聚合物可自由溶于极性质子溶剂中。此外,已经使用电感耦合等离子体发射光谱法(ICP-OES)测试了新聚合物的分析竞争性,以选择性地提取不同金属离子。聚合物6_(c)对Hg〜(+2)的选择性最高,被认为是所有衍生物中Hg〜(+2)环境修复的高选择性吸附剂,并对其吸附检测和效率进行了研究。聚合物6c在pH≥1时在其表面上显示出最有效的吸附量。此外,计算出的吸附等温线显示出与Langmuir吸附类型相同的等温线。这表明聚合物6_(c)对Hg〜(+2)的吸附容量为47.95?mg?g〜(?1)。这些新型聚合物用作饮用水和废水中的简单且廉价的重金属离子吸附材料。

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