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首页> 外文期刊>Chemical engineering journal >Adsorption characteristics of triclosan from aqueous solution onto cetylpyridinium bromide (CPB) modified zeolites
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Adsorption characteristics of triclosan from aqueous solution onto cetylpyridinium bromide (CPB) modified zeolites

机译:水溶液中三氯生在溴化十六烷基吡啶(CPB)改性沸石上的吸附特性

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organo-zeolites (OZs) were prepared by loading cetylpyridinium bromide (CPB) onto natural zeolite (NZ) and were firstly used to remove triclosan (TCS) from aqueous solution. Surface properties and adsorption characteristics of OZs were evaluated in this study. Batch experiments were conducted as a function of contact time, initial TCS concentration, temperature, and pH. The results indicated that NZ surface properties were considerably altered with CPB modification, but its mineral structures were not significantly affected. The adsorption capacities of OZ 0.5, OZ 1.0 and OZ 2.5, prepared with different initial concentrations of CPB, toward TCS at 298 K were greatly enhanced from 0.91 mg g~(-1) for NZ to 31.85, 45.25 and 46.95 mg g~(-1), respectively. The adsorption equilibrium data of OZs were found to follow the Langmuir isotherm better. The adsorption kinetics data could be well-described by the pseudo-second-order model. Further thermodynamic investigations indicated that TCS adsorption onto OZs was an exothermic and spontaneous process. The TCS adsorption capacities were found to be strongly dependent on the solution pH and the nature of surface charge of OZs, which were a little higher in acidic and neutral pH conditions. The main mechanisms controlling the adsorption of TCS onto OZs with CPB monolayer were presumed to be hydrophobic interaction and hydrogen bonding, while the main mechanisms controlling the adsorption of TCS onto OZs with CPB bilayer may involve organic portioning and electrostatic interaction. As a result, OZs could be used as effective adsorbents for TCS removal from wastewater.
机译:将十六烷基溴化十六烷基吡啶(CPB)负载到天然沸石(NZ)上制备有机沸石(OZs),首先用于从水溶液中去除三氯生(TCS)。在这项研究中评估了OZs的表面性质和吸附特性。根据接触时间,初始TCS浓度,温度和pH进行批量实验。结果表明,经CPB改性后,NZ的表面性能发生了很大变化,但其矿物结构并未受到明显影响。在298 K下用不同初始浓度的CPB制备的OZ 0.5,OZ 1.0和OZ 2.5对TCS的吸附能力从NZ的0.91 mg g〜(-1)大大提高到31.85、45.25和46.95 mg g〜( -1)。发现OZs的吸附平衡数据更好地符合Langmuir等温线。吸附动力学数据可以用拟二阶模型很好地描述。进一步的热力学研究表明,TCS吸附到OZ上是一个放热的自发过程。发现TCS的吸附能力在很大程度上取决于溶液的pH值和OZs的表面电荷的性质,在酸性和中性pH条件下,它们略高。推测控制TCS吸附在CPB单层OZs上的主要机理是疏水相互作用和氢键,而控制TCS吸附在CPB双层OZs上的主要机理可能是有机分配和静电相互作用。结果,OZ可以用作从废水中去除TCS的有效吸附剂。

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