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Evaluation of Cadmium Removal from the Water in Phytoremeiation Process Using Eichhornia crassipes

机译:利用凤眼莲的植物修复过程中水中镉的去除效果评估

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Conserving water resources and protecting them from pollution are of high account in the natural cycle of our life. This study has tried to determine the refining potential and capacity of water hyacinth (Eichhornia crassipes) in order to remove the cadmium from water, studying the influence of factors such as initial concentration of cadmium, contact time, absorbent mass, and pH. Results have shown that the best efficiency of cadmium, more than 99%, was obtained in the optimum conditions (i.e. retention time of 30 hours, adsorbent dose of three plants (12 stems), and pH=6.6). By increasing the initial concentration of cadmium from 0.28 to 8.28 mg/L, the elimination efficiency did not change; moreover, by increasing the absorbent mass, the elimination efficiency increased from 98.4 to 99.8 and the lowest retention time was obtained for the balance. All experiments have been repeated three times, showing in the end that water hyacinth is able to absorb cadmium up to 8.28 mg/L. This process follows Freundlich isotherm (R2=0.98). Results of this study indicate that this plant can grow well at high levels of cadmium and the growth of water hyacinth is better in the presence of cadmium than control conditions (city water). Finally, it can be concluded that it is necessary to provide a reliable, cheap, and fast method to eliminate pollution. Eichhornia crassipes, a promising plant with great functionality, can be used as a refiner in order to eliminate the heavy metals in wastewater (sewage) effluents, particularly industrial sewage.
机译:在我们生命的自然周期中,节约水资源并保护其免受污染是至关重要的。这项研究试图确定风信子(Eichhornia crassipes)的精制潜力和能力,以便从水中去除镉,研究了诸如镉初始浓度,接触时间,吸收剂质量和pH等因素的影响。结果表明,在最佳条件下(即保留时间为30小时,三株植物(12根茎)的吸附剂剂量和pH = 6.6),镉的最佳效率超过99%。通过将镉的初始浓度从0.28增加到8.28 mg / L,消除效率没有变化。此外,通过增加吸收剂的质量,消除效率从98.4增加到99.8,并且平衡时间最短。所有实验均重复了三遍,最终表明凤眼兰能够吸收高达8.28 mg / L的镉。此过程遵循Freundlich等温线(R2 = 0.98)。这项研究的结果表明,这种植物在高镉水平下可以很好地生长,并且在有镉的情况下水葫芦的生长比对照条件(城市用水)更好。最后,可以得出结论,有必要提供一种可靠,便宜且快速的消除污染的方法。凤眼莲,功能强大的有前途的植物,可以用作精制设备,以消除废水(排污)废水中的重金属,特别是工业污水。

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