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首页> 外文期刊>Journal of the Iranian Chemical Society >Simultaneous elimination of diethyl phthalate, butylated hydroxy toluene and butylated hydroxy anisole from aqueous medium by an adsorption process on pretreated waste material; investigation of isotherms and neural network modeling
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Simultaneous elimination of diethyl phthalate, butylated hydroxy toluene and butylated hydroxy anisole from aqueous medium by an adsorption process on pretreated waste material; investigation of isotherms and neural network modeling

机译:通过吸附过程在预处理废料上的吸附过程同时消除邻苯二甲酸酯,丁基羟基甲苯和丁基化羟基苯甲醚; 等温线和神经网络建模研究

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摘要

Simultaneous removal of three pollutants (diethyl phthalate, butylated hydroxy anisole and butylated hydroxy toluene) that appear in plastic industries' wastewater was the aim of this study. These compounds have harmful effects on human health. The adsorbent, Sesamum indicum seeds' waste, is a natural adsorbent which was obtained freely and abundantly from a local market after being oil-pressed. For performing the treatment process, the pretreated adsorbent was put in contact with a solution of the compounds of interest. The effect of variable parameters like the type of pretreatment solvent, pretreatment time, pH of solution, dosage of adsorbent, adsorption time and the concentration of solution containing the pollutants was investigated. The equilibrium isotherm data were analyzed too. Moreover, an artificial neural network model was progressed to anticipate the adsorption efficiency of the pollutants. The results indicated that the obtained data have a good predictive capability (R-2 = 0.9940). The optimum pretreatment organic solvent was found to be ethyl acetate, and the optimum pretreatment time was 10 min. Furthermore, when the adsorbent dosage and adsorption time increased, the adsorption efficiency enhanced and reached a constant limit. The optimum pH was found to be 9 and the decrease in pollutants' concentration resulted in an increase in wastewater treatment efficiency. The isotherm data for all studied pollutants were fitted well with Langmuir isotherm.
机译:同时除去塑料工业废水中出现的三种污染物(邻苯二甲酸二乙酯,丁基化羟基苯甲醚和丁基化羟基甲苯)是本研究的目的。这些化合物对人类健康有害影响。吸附剂,芝麻蛋白的种子废物是一种天然吸附剂,在被燃油后,从当地市场自由而大量获得。为了进行处理过程,预处理的吸附剂与感兴趣的化合物的溶液接触。等于预处理溶剂的类型的变化参数,预处理时间,溶液的pH值,吸附剂剂量,吸附时间和含有污染物的溶液的浓度。平衡等温数据也被分析。此外,进展了人工神经网络模型以期望污染物的吸附效率。结果表明,所获得的数据具有良好的预测能力(R-2 = 0.9940)。发现最佳预处理有机溶剂是乙酸乙酯,最佳预处理时间为10分钟。此外,当吸附剂剂量和吸附时间增加时,吸附效率提高并达到恒定限制。发现最佳pH为9,污染物浓度的降低导致废水处理效率的增加。所有研究的污染物的等温数据都与Langmuir等温线合理。

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