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Cadmium biosorption by non-living aquatic macrophytes Egeria densa

机译:非生物水生植物埃塞俄比亚(Egeria densa)对镉的生物吸附

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In this work the removal potential on Cd2+ by the non-living Egeria densa biomass has been studied. The influence of the metal solution pH, the plant drying and the metal solution temperature, and biosorbent grain size was previously studied in batch systems. The cadmium adsorption rate has increased when the pH was increasing, but at pH 5, the cadmium precipitation has begun to occur, avoiding such high pH values in other tests. The cadmium removal was around 70% at 30 degrees C biomass dried and solution temperatures, assuming as the best temperature conditions. No significant influence was observed in cadmium removal due to the grain size effect. The biosorption kinetic data were well fitted by a pseudo-second order model. The equilibrium time in experiments was around 45 min with a 70% Cd removal. The equilibrium data at pH 5 were described rather better by the Langmuir isotherm than the Freundlich one, with an adsorption rate and maximum metal content values of 0.40 L g(-1) and 1.28 meq g(-1), respectively, for Langmuir model. The kinetic parameter values are near to other biosorbents, indicating that the macrophytes E. densa could be used as biosorbent material in industrial effluent treatment system.
机译:在这项工作中,已经研究了无生命的Egeria densa生物质对Cd2 +的去除潜力。金属溶液pH,植物干燥和金属溶液温度以及生物吸附剂粒度的影响先前已在分批系统中进行了研究。当pH值增加时,镉的吸附速率增加,但在pH值为5时,镉开始沉淀,避免了其他测试中如此高的pH值。假定最佳温度条件,在30摄氏度的生物质干燥和溶液温度下,镉的去除率约为70%。由于晶粒尺寸效应,在去除镉方面没有观察到显着影响。生物吸附动力学数据通过拟二级模型很好地拟合。实验中的平衡时间约为45分钟,去除了70%的镉。 Langmuir等温线比Freundlich更好地描述了pH 5时的平衡数据,Langmuir模型的吸附速率和最大金属含量分别为0.40 L g(-1)和1.28 meq g(-1)。 。动力学参数值接近于其他生物吸附剂,表明大型植物大肠埃希菌可以用作工业废水处理系统中的生物吸附剂。

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