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Adsorption of phosphate in water using one-step synthesized zirconium-loaded reduced graphene oxide

机译:一步法合成锆负载还原氧化石墨烯对水中磷酸盐的吸附

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摘要

In this account, a one-step green hydrothermal method for zirconium-loaded reduced graphene oxide (RGO-Zr) adsorbent was developed in pure water. It is based on the formation of initially strong-coupling RGO-Zr nanocomposites followed by in situ reduction of GO to RGO during the hydrothermal treatment. The phosphate adsorption performance of the as-prepared nanocomposites was investigated in aqueous environment under various conditions. The characterization results of RGO-Zr nanocomposites showed that ZrO2 was successfully integrated onto the RGO sheets in amorphous. The data from equilibrium phosphate adsorption on RGO-Zr revealed that the adsorption kinetics followed a pseudo-second-order kinetic model, where the adsorption isotherm fitted the Langmuir isotherm model with a maximum adsorption capacity of 27.71 mg P/g at pH 5 and 298 K. The improved phosphate adsorption on RGO-Zr was caused by the dispersion of ZrO2 on the RGO surface. Furthermore, the phosphate adsorption was found insensitive to the increase in pH while it was sensitive to the increase in temperature. The coexisting anions of SO42−, F, Cl, NO3− and CO32− affected the phosphate adsorption in a different way. Results suggest that the present RGO-Zr adsorbent has the potential for controlling phosphorus pollution in water.
机译:因此,开发了一种在纯水中对锆负载的还原氧化石墨烯(RGO-Zr)吸附剂的一步绿色水热法。它基于最初形成的强耦合RGO-Zr纳米复合材料的形成,然后在水热处理期间将GO原位还原为RGO。在各种条件下的水性环境中研究了制备的纳米复合材料的磷酸盐吸附性能。 RGO-Zr纳米复合材料的表征结果表明,ZrO2已成功地以非晶态整合到RGO片材上。 RGO-Zr上平衡磷酸盐吸附的数据表明,吸附动力学遵循拟二级动力学模型,其中吸附等温线拟合了Langmuir等温模型,在pH 5和298时最大吸附容量为27.71 mg P / g。 K.磷酸根在RGO-Zr上的吸附改善是由于ZrO2在RGO表面上的分散。此外,发现磷酸盐吸附对pH的增加不敏感,而对温度的升高敏感。 SO4 2-,F -,Cl -,NO 3-和CO3 的共存阴离子2-以不同的方式影响了磷酸盐的吸附。结果表明,目前的RGO-Zr吸附剂具有控制水中磷污染的潜力。

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