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首页> 外文期刊>Acta Chimica Slovenica >Sorption Kinetic Studies of Ammonium from Aqueous Solution on Different Inorganic and Organic Media
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Sorption Kinetic Studies of Ammonium from Aqueous Solution on Different Inorganic and Organic Media

机译:不同无机和有机介质对水溶液中铵的吸附动力学研究

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摘要

In this study, the sorption of ammonium from aqueous solution onto activated carbon, natural zeolite, peat and potting soil was studied by performing batch kinetic sorption experiments. The activated carbon wasn't efficiently removing ammonium at concentrations higher than 50 mg L~(-1). Sorption isotherms of ammonium on zeolite, peat and potting soil were determined at 25 °C and 200 rpm with the initial concentration of 50-7000 mg L~(-1). Equilibrium data were fitted by Freundlich, Langmuir and Temkin isotherm and parameters were evaluated according these models. Langmuir model gives better fit to experimental data than Freundlich and Temkin models. Maximum adsorption capacities were for activated carbon 0.631 mg g~(-1), zeolite 58 mg g~(-1) peat 595 mg g~(-1) and for potting soil 575 mg g~(-1). The equilibrium kinetic data were analyzed using adsorption kinetic models: the pseudo-first and second-order equations and were found to follow the pseudo-second-order kinetic model. A comparison between linear and non-linear regression method for estimating the adsorption and kinetics parameters was examined. The obtained results showed that non-linear method may be a better way to determine the kinetic parameters. Thermodynamic studies showed exothermic and endothermic nature of the adsorption of NH_4~+ on inorganic and organic adsorbents, respectively. From present results it can be seen that zeolite, peat and potting soil are good adsorbents for removal ammonium from aqueous solution.
机译:在这项研究中,通过进行批量动力学吸附实验研究了铵从水溶液到活性炭,天然沸石,泥炭和盆栽土壤上的吸附。浓度大于50 mg L〜(-1)时,活性炭不能有效去除铵。在25°C和200 rpm下以初始浓度50-7000 mg L〜(-1)测定铵在沸石,泥炭和盆栽土壤上的吸附等温线。平衡数据通过Freundlich,Langmuir和Temkin等温线拟合,并根据这些模型评估参数。与Freundlich和Temkin模型相比,Langmuir模型对实验数据的拟合更好。活性炭最大吸附量为活性炭0.631 mg g〜(-1),沸石58 mg g〜(-1),泥炭595 mg g〜(-1)和盆栽土壤575 mg g〜(-1)。使用吸附动力学模型分析了平衡动力学数据:伪一阶和二阶方程,并发现它们遵循了伪二阶动力学模型。考察了线性和非线性回归方法用于估计吸附和动力学参数的比较。所得结果表明,非线性方法可能是确定动力学参数的更好方法。热力学研究表明,NH_4〜+在无机和有机吸附剂上的吸附分别为放热和吸热性质。从目前的结果可以看出,沸石,泥炭和盆栽土壤是从水溶液中去除铵的良好吸附剂。

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