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首页> 外文期刊>International Journal of Phytoremediation >Kinetics, biochemical and factorial analysis of chromium uptake in a multi-ion system by Tradescantia pallida (Rose) D. R. Hunt
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Kinetics, biochemical and factorial analysis of chromium uptake in a multi-ion system by Tradescantia pallida (Rose) D. R. Hunt

机译:Tradescantia Pallida(玫瑰)D. R. Hunt中铬系统中多离子系统中铬吸收的动力学,生化和阶乘分析

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Discharge of wastewater from electroplating and leather industries is a major concern for the environment due to the presence of toxic Cr6+ and other ions, such as sulfate, nitrate, phosphate, etc. This study evaluated the potential of Tradescantia pallida, a plant species known for its Cr bioaccumulation, for the simultaneous removal of Cr6+, SO42-, NO3-, and PO43-. The effect of different co-ions on Cr6+ removal by T. pallida was examined following the Plackett-Burman design of experiments carried out under batch hydroponics conditions. The results revealed a maximum removal of 84% Cr6+, 87% SO42-, 94% NO3- and 100% PO43- without any phytotoxic effect on the plant for an initial Cr6+ concentration in the range 5-20 mg L-1. SO42- and NO3- enhanced Cr uptake at a high initial Cr concentration (20 mg L-1), whereas PO43- did not affect Cr uptake both at high and low initial Cr concentrations. The Cr6+ removal kinetics in the presence of different ions was well described by the pseudo-second-order kinetic model which revealed that both biosorption and bioaccumulation of the metal played an important role in Cr6+ removal. Increase in the total carbohydrate and protein content of the plant following Cr6+ and co-ions exposure indicated a good tolerance of the plant toward Cr6+ toxicity. Furthermore, enhancement in the lipid peroxidation and catalase activity in T. pallida upon Cr6+ exposure revealed a maximum stress-induced condition in the plant. Overall, this study demonstrated a very good potential of the plant T. pallida for Cr6+ removal from wastewater even in the presence of co-ions.
机译:从电镀和皮革行业排出废水是由于毒性Cr6 +和其他离子的存在,如硫酸盐,硝酸盐,磷酸盐等的环境是环境的主要关注。该研究评估了Tradescantia Pallida的潜力,该植物物种其Cr生物累积,同时去除Cr6 +,SO42-,NO3-和PO43-。通过在分批水培条件下进行的实验的Plackett-Burman设计之后,研究了不同共离子对T.Pallida的Cr6 +除去的影响。结果显示最大去除84%Cr6 +,87%SO 42,94%NO 3和100%PO43-对于初始CR6 +浓度的植物而没有任何植物毒性作用,其范围为5-20mg L-1。 SO42和NO3-增强的CR在高初始CR浓度(20mg L-1)上摄取,而PO43-在高初始CR浓度下不影响CR吸收。在不同离子存在下的Cr6 +去除动力学通过伪二阶动力学模型很好地描述,所述伪二阶动力学模型揭示了金属的生物吸附和生物累积在Cr6 +去除中起重要作用。 CR6 +和共离子曝光后,植物的总碳水化合物和蛋白质含量的增加表明植物朝向CR6 +毒性的良好耐受性。此外,在CR6 +暴露于CR6 +暴露时在T.Pallida中的脂质过氧化和过氧化氢酶活性的增强揭示了植物中的最大应力诱导的病症。总体而言,本研究表明,即使在共同离子存在下,植物T.Pallida的植物T.Pallida的潜力也很好。

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