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Removal of dissolved toluene in underground water with nanowires of manganese oxide

机译:用氧化锰纳米线去除溶解甲苯

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The objective of the present study was to investigate the adsorption behavior of manganese oxide nanowires as an adsorbent for the removal of dissolved toluene from underground water. The nanowire membrane, composed of three-dimensional porous nanostructures plus superhydrophobic character, is very suitable for removal of the hydrophobic molecules. The effects of adsorbent dose, contact time, initial solution concentration, pH, salinity, and recyclability on the uptake of toluene by the adsorbent in batch mode are examined. The adsorption data compared to the adsorption of two kinds of activated carbons show that manganese oxide nanowire is competitive to activated carbons. Furthermore, the equilibrium data are fitted to different types of adsorption isotherms. Freundlich isotherm model illustrated the best fit to the data. The results of this study suggest that nanowires of manganese oxides can be used as a low cost, highly efficient adsorbent for the removal of dissolved hydrocarbon from aqueous solution.
机译:本研究的目的是研究氧化锰纳米线作为吸附剂的吸附行为,用于从地下水中除去溶解的甲苯。由三维多孔纳米结构加上超疏水性特征的纳米线膜非常适合除去疏水分子。研究了吸附剂剂量,接触时间,初始溶液浓度,pH,盐度和脂肪脂肪脂肪的吸收的抗性和可回收性的影响。吸附数据与两种活性碳的吸附相比,氧化锰纳米线对活性碳竞争激烈。此外,平衡数据适用于不同类型的吸附等温线。 Freundlich等温模型显示最适合数据。本研究的结果表明,氧化锰的纳米线可以用作低成本,高效的吸附剂,用于从水溶液中除去溶解的烃。

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