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Degradation of Ametryn in aqueous solution by solar/ S-doped titanium dioxide process

机译:太阳能/ S掺杂二氧化钛工艺降解水溶液中的牛肝菌素

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The removal efficiency of ametryn in water and the influencing factors by the combined process of solar irradiation and S-doped TiO2 were studied in detail,in which S-doped TiO2 photo-catalyst with high sunlight activity was prepared by acid catalyzed hydrolysis method with thiourea as sulfur source;As a comparison,solar/TiO2 process was studied in the meantime;The experiment results showed that ametryn could be more effectively oxidized by the solar/S-doped TiO2 process than the solar/ TiO2 one,while the removal efficiency of 60% and 40% respectively after 30 min's irradiation;Pseudo-first-order model could be used to simulate the oxidation process in which the degradation rate coefficients were independent of the initial concentration of ametryn;Degradation rate could be greatly affected by the concentration of H2O2,the optimum concentration for the system of solar/S-doped TiO2 was found to be 20mg/L,which was 5mg/L higher than that of solar/TiO2 system;Lower water pH favored the degradation of ametryn for the change of charge density of both the ametryn molecular and photo-catalyst surface.
机译:详细研究了日光照射和S掺杂TiO2结合工艺对of去氢素的去除效率及其影响因素,采用硫脲酸催化水解法制备了具有高阳光活性的S掺杂TiO2光催化剂。作为对比,对太阳能/ TiO2工艺进行了研究;实验结果表明,太阳能/ S掺杂TiO2工艺比than草可以更有效地氧化a啶,同时去除a草的效率较高。辐照30分钟后分别达到60%和40%;可以使用伪一阶模型来模拟氧化过程,该过程中降解速率系数与a啶的初始浓度无关;降解速率可能受浓度的影响很大。 H2O2,发现太阳能/ S掺杂的TiO2体系的最佳浓度为20mg / L,比太阳能/ TiO2体系的最佳浓度高5mg / L;较低的水pH值有利于降低metry啶酮辐射改变for啶酮分子和光催化剂表面的电荷密度。

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