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A Unique Interactive Nanostructure Knitting based Passive Sampler Adsorbent for Monitoring of Hg2+ in Water

机译:基于基于纳米结构针织的被动采样器吸附剂,用于监测HG2 +

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摘要

This work reports the development of ultralight interwoven ultrathin graphitic carbon nitride (g-CN) nanosheets for use as a potential adsorbent in a passive sampler (PAS) designed to bind Hg2+ ions. The g-CN nanosheets were prepared from bulk g-CN synthesised via a modified high-temperature short-time (HTST) polycondensation process. The crystal structure, surface functional groups, and morphology of the g-CN nanosheets were characterised using a battery of instruments. The results confirmed that the as-synthesized product is composed of few-layered nanosheets. The adsorption efficiency of g-CN for binding Hg2+ (100 ng mL−1) in sea, river, rain, and Milli-Q quality water was 89%, 93%, 97%, and 100%, respectively, at natural pH. Interference studies found that the cations tested (Co2+, Ca2+, Zn2+, Fe2+, Mn2+, Ni2+, Bi3+, Na+, and K+) had no significant effect on the adsorption efficiency of Hg2+. Different parameters were optimised to improve the performance of g-CN such as pH, contact time, and amount of adsorbent. Optimum conditions were pH 7, 120 min incubation time and 10 mg of nanosheets. The yield of nanosheets was 72.5%, which is higher compared to other polycondensation processes using different monomers. The g-CN sheets could also be regenerated up to eight times with only a 20% loss in binding efficiency. Overall, nano-knitted g-CN is a promising low-cost green adsorbent for use in passive samplers or as a transducing material in sensor applications.
机译:这项工作报告了以无源采样器(PAS)中的潜在吸附剂在设计用于结合HG2 +离子的潜在吸附剂的外遍交织过超级型超高型超级型超高型纳米液的开发。通过通过改性的高温短时(HTST)缩聚过程由体积G-CN制备G-CN纳米蛋白酶。使用电池的仪器表征了G-CN纳米电池的晶体结构,表面官能团和形态。结果证实,AS合成的产品由少数层组成。 G-CN在海洋,河流,雨和毫Q质量水中结合HG2 +(100ng ML-1)的吸附效率分别在天然pH下分别为89%,93%,97%和100%。干扰研究发现测试的阳离子(CO 2 +,Ca2 +,Zn2 +,Fe2 +,Mn2 +,Ni2 +,Bi3 +,Na +和K +)对Hg2 +的吸附效率没有显着影响。优化了不同的参数以改善G-Cn的性能,例如pH,接触时间和吸附剂的量。最佳条件是pH 7,120分钟孵育时间和10毫克纳米蛋白酶。与使用不同单体的其他缩聚方法相比,纳米片的产量为72.5%。 G-CN片材也可以再生至八次,只有20%的结合效率损失。总的来说,纳米针织G-CN是有希望的低成本绿色吸附剂,用于被动采样器或传感器应用中的换能材料。

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