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Nanotubular Halloysite Clay as Efficient Water Filtration System for Removal of Cationic and Anionic Dyes

机译:纳米管哈利亚岩粘土作为去除阳离子和阴离子染料的有效水过滤系统

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Halloysite nanotubes, chemically similar to kaolinite, are formed by rolling of kaolinite layers in tubes with diameter of 50 nm and length of ca. 1 μm. Halloysite has negative SiO_2 outermost and positive Al_2O_3 inner lumen surface, which enables it to be used as potential absorbent for both cationic and anionic dyes due to the efficient bivalent adsorbancy. An adsorption study using cationic Rhodamine 6G and anionic Chrome azurol S has shown approximately two times better dye removal for halloysite as compared to kaolinite. Halloysite filters have been effectively regenerated up to 50 times by burning the adsorbed dyes. Overall removal efficiency of anionic Chrome azurol S exceeded 99.9% for 5th regeneration cycle of halloysite. Chrome azurol S adsorption capacity decreases with the increase of ionic strength, temperature and pH. For cationic Rhodamine 6G, higher ionic strength, temperature and initial solution concentration were favorable to enhanced adsorption with optimal pH 8. These results indicate a potential to utilize halloysite for the removal of ionic dyes from environmental waters.
机译:通过直径为50nm和Ca的长度,通过滚动高岭石层和Ca的长度,形成化学纳米管。 1μm。 HalloySite具有负SiO_2最外层和正Al_2O_3内腔表面,使其能够用作阳离子和阴离子染料的潜在吸收剂由于有效的二价吸附性。使用阳离子罗丹明6g和阴离子铬αzurols的吸附研究已经显示出与高岭石相比的霍罗伊钛矿更好的染料去除两倍。通过燃烧吸附的染料,已经有效地再生50次的霍利岩过滤器。阴离子铬硫醇S的总去除效率超过Halloysite的第5次再生周期的99.9%。 Chrome Azurol S吸附容量随着离子强度,温度和pH的增加而降低。对于阳离子罗丹明6g,较高的离子强度,温度和初始溶液浓度有利于增强具有最佳pH的吸附8.这些结果表明,利用Holloysite用于从环境水域中除去离子染料的潜力。

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