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Experiment of Gatifloxacin Adsorption by Sludge Activated Carbon

机译:污泥活性炭吸附加替沙星的实验

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In this paper, sludge activated carbon was made from two kinds of sludge by physical-chemical methods. The sludge was taken from the Gaobeidian municipal wastewater treatment plant in Beijing and ZnCl2 was used as activated reagent. The adsorption mechanism of gatifloxacin, a new 4-quinolones antibiotic, by the two kinds of sludge activated carbon was studied. The Characteristics of sludge and sludge activated carbon, such as specific surface area, z-potential, particle size distribution, stereoscan photograph, were tested in order to have a better understanding about the adsorption mechanism. The results show that the sludge activated carbon can adsorb antibiotic effectively. The sludge activated carbon made of the sludge from sedimentation tank has a better adsorption capability than that from dewatering house. Meanwhile, the adsorption can be affected by environmental conditions. Higher temperature can enhance the adsorption. Moreover, a lower CaCl2 concentration can restrain the adsorption, while a higher concentration can promote it. This study shows that it is applicable for sludge activated carbon to be used as an adsorbent to treat antibiotic wastewater or nondegradable wastewater. It also shows a new direction for sludge disposal and sludge reuse as a resource.
机译:本文采用物理化学方法,由两种污泥制得污泥活性炭。污泥取自北京高碑店市污水处理厂,ZnCl2用作活性试剂。研究了新型4-喹诺酮类抗生素加替沙星对两种污泥活性炭的吸附机理。测试了污泥和污泥活性炭的特性,例如比表面积,z电位,粒度分布,立体扫描照片,以更好地了解吸附机理。结果表明,污泥活性炭能有效吸附抗生素。沉淀池污泥制成的污泥活性炭比脱水房污泥活性炭具有更好的吸附能力。同时,吸附会受到环境条件的影响。较高的温度可以增强吸附。此外,较低的CaCl2浓度可以抑制吸附,而较高的浓度可以促进吸附。这项研究表明,它适用于污泥活性炭作为吸附剂来处理抗生素废水或不可降解废水。它还显示了污泥处置和污泥再利用作为资源的新方向。

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