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Carbazole-tagged pyridinic microporous network polymer for CO_2 storage and organic dye removal from aqueous solution

机译:咔唑标记的吡啶基微孔网络聚合物,用于CO_2存储和从水溶液中去除有机染料

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摘要

A microporous organic polymer (Cz-pyr-P) was prepared from a monomer of pyridine-imides, flanked by four carbazoles, and its application as an adsorbent for both CO_2 and methylene blue dye in wastewater was investigated. The polymer was synthesised by oxidative polymerisation facilitated by FeCl_3 and comprehensively characterised using routine spectroscopic, thermal, textural, and morphological analyses. With a high surface area of 1065 m~2/g and a median pore width of 8.06 A, the nitrogen-enriched Cz-pyr-P reversibly adsorbed 19.41 wt% (273 K) and 12.78 wt% (295 K) CO_2 at 1 bar, with a good isosteric heat value of CO_2 adsorption (28.5 kJ/mol). For the removal of methylene blue dye from wastewater, Cz-pyr-P exhibited excellent partition coefficient of 380.10 mg/g uM with an equilibrium time of 6 min which is shorter than previously reported values for other materials. The results indicate that Cz-pyr-P with desirable functionality could be utilised for reaching CO_2 emission reduction targets as well as for wastewater treatment.
机译:由吡啶-酰亚胺的单体制备了一种微孔有机聚合物(Cz-pyr-P),侧接四个咔唑,并研究了其在废水中作为CO_2和亚甲基蓝染料的吸附剂的应用。该聚合物通过FeCl_3促进的氧化聚合反应合成,并使用常规的光谱,热,结构和形态分析进行了全面表征。氮富集的Cz-pyr-P在1065 m〜2 / g的高表面积和8.06 A的平均孔径下可逆吸附在19.1 wt%(273 K)和12.78 wt%(295 K)的CO_2 bar,具有良好的CO_2吸附等规热值(28.5 kJ / mol)。为了从废水中去除亚甲基蓝染料,Cz-pyr-P表现出出色的分配系数,为380.10 mg / g uM,平衡时间为6分钟,比以前报道的其他材料的值短。结果表明,具有理想功能的Cz-pyr-P可用于实现CO_2减排目标以及废水处理。

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