首页> 外文期刊>Bulletin of the Korean Chemical Society >Evaluation of Loess Capability for Adsorption of Total Nitrogen (T-N) and Total Phosphorous (T-P) in Aqueous Solution
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Evaluation of Loess Capability for Adsorption of Total Nitrogen (T-N) and Total Phosphorous (T-P) in Aqueous Solution

机译:黄土对水溶液中总氮(T-N)和总磷(T-O)的吸附能力

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摘要

The aim of the present study is to explore the possibility of utilizing loess for the adsorption of total phosphorous (T-P) and total nitrogen (T-N) in water. Batch adsorption studies were performed to evaluate the influences of various factors like initial concentration, contact time and temperature on the adsorption of T-P and T-N. The adsorption data showed that loess is not effective for the adsorption of T-N. However, loess exhibited much higher adsorption capacity for T-P. At concentration of 1.0 mg L−1, approximately 97% of TP adsorption was achieved by loess. The equilibrium data were fitted well to the Langmuir isotherm model. The pseudo-second-order kinetic model appeared to be the better-fitting model because it has higher R2 compared with the pseudo-first-order and intra-particle kinetic model. The theoretical adsorption equilibrium qe,cal from pseudo-second-order kinetic model was relatively similar to the experimental adsorption equilibrium qe,exp. The thermodynamic parameters such as free energy ΔG, the enthalpy ΔH and the entropy ΔS were also calculated.
机译:本研究的目的是探索利用黄土吸附水中总磷(T-P)和总氮(T-N)的可能性。进行了批量吸附研究,以评估各种因素(如初始浓度,接触时间和温度)对T-P和T-N吸附的影响。吸附数据表明,黄土对T-N的吸附无效。但是,黄土对T-P的吸附能力要高得多。在1.0 mg L-1的浓度下,黄土实现了约97%的TP吸附。平衡数据非常适合Langmuir等温线模型。伪二级动力学模型似乎比拟一级动力学和粒子内动力学模型具有更高的R2,因为它具有更高的R2。拟二阶动力学模型的理论吸附平衡qe,cal与实验吸附平衡qe,exp相对相似。还计算了热力学参数,例如自由能ΔG,焓ΔH和熵ΔS。

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