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Biosorption of lead (II) and cadmium (II) using Escherichia coli genetically engineered with mice metallothionein I

机译:使用小鼠金属硫蛋白I基因工程改造的大肠杆菌对铅(II)和镉(II)的生物吸附

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Contamination caused by heavy metals in wastewater has a high potential of risk because they easily penetrate in to the trofic chain accumulating as organometallic compounds. In this work, the expression of mice metallothionein in E. coli (pMt-Thio) was examined as a strategy to enhance metal biosorption efficiency of bacterial biosorbents for Pb(II) and Cd(II) ions. The results showed that pMt-Thio led to significant increase in overall biosorption capacity, especially for biosorption of Pb. Isotherms and kinetic of biosorption were evaluated in this designed system. The influence of metal concentration in solution is discussed in terms of Langmuir and Freundlich isotherm and constants. The Langmuir model was found to correlate better with the experiment data. The biomass showed maximum capacities according to Langmuir adsorption model of 28.14 mgPb/gpMt-Thio and 24.27 mg Cd/gpMt-Thio. The study proved that pMt-Thio is a suitable material for the removal of the heavy metal ions studied from aqueous solutions, achieving removal efficiencies higher than 90% for Pb(II) and higher than 40% for Cd(II), and could be considered as a potential material for treating effluent polluted with Cd(II) and Pb(II) ions.
机译:废水中重金属引起的污染具有很高的潜在风险,因为它们很容易渗透到作为有机金属化合物积累的金属链中。在这项工作中,研究了小鼠金属硫蛋白在大肠杆菌中的表达(pMt-Thio),以此作为提高细菌生物吸附剂对Pb(II)和Cd(II)离子的金属生物吸附效率的策略。结果表明,pMt-Thio导致总体生物吸附能力显着提高,尤其是对Pb的生物吸附。在该设计系统中评估了等温线和生物吸附动力学。根据Langmuir和Freundlich等温线及常数讨论了溶液中金属浓度的影响。发现Langmuir模型与实验数据具有更好的相关性。根据Langmuir吸附模型,生物质显示最大容量为28.14 mgPb / gpMt-Thio和24.27 mg Cd / gpMt-Thio。研究证明,pMt-Thio是从水溶液中去除重金属离子的合适材料,Pb(II)的去除效率高于90%,Cd(II)的去除效率高于40%。被认为是处理Cd(II)和Pb(II)离子污染的废水的潜在材料。

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