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Kinetic studies of Cd (II) and Pb (II) ions biosorption from aqueous media using untreated and chemically treated biosorbents

机译:使用未经处理和化学处理的生物吸附剂对水性介质中 Cd (II) 和 Pb (II) 离子生物吸附的动力学研究

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Untreated and chemically treated Albizia coriaria, Erythrina abyssinica and Musa spp. were studied in batch for uptake of Cd~(2+) and Pb~(2+) ions at pH 2.0-9.0 and agitation time of 30-390 min. Optimum biosorption conditions were pH 4 for Pb~(2+) ions and pH 5 for Cd~(2+) ions, contact time was 3.5 hours at 24±1 ℃ for 10 mg/L biosorbent dosage and initial metal ions concentration of 20 mg/L. Chemical treatment had a 10-17 biosorption efficiency enhancement for Cd~(2+) ions and a 1.6-2.3 reduction effect for Pb~(2+) ions. The sorption capacities for Cd~(2+) and Pb~(2+) ions for treated biosorbents were 1.760-1.738 mg g~(-1) compared to 1.415-1.539 mg g~(-1) for untreated materials. The pseudo secondorder model suitably fitted the Cd~(2+) and Pb~(2+) ions biosorption data with regression coefficients (R~2) of 0.9784-0.9999. Fitting of the Ho model to the experimental data showed that the biosorption mechanism for both metal ions studied was mainly a chemisorption process. Therefore, treated A. coriaria, E. abyssinica and Musa spp. were potential biosorbents for remediation of Cd~(2+) ions and the untreated materials suitable for removing Pb~(2+) ions from contaminated aqueous media.
机译:在pH 2.0-9.0和搅拌时间为30-390 min下,分批研究了未经处理和化学处理的Albizia coriaria、Erythrina abyssinica和Musa spp.对Cd~(2+)和Pb~(2+)离子的摄取。最佳生物吸附条件为pH~(2+)为pH4,pH为pH5,Cd~(2+)离子为pH,24±1 °C下接触时间为3.5 h,生物吸附剂用量为10 mg/L,初始金属离子浓度为20 mg/L,化学处理对Cd~(2+)离子的生物吸附效率提高10-17%,对Pb~(2+)离子的降低效果为1.6-2.3%。处理后的生物吸附剂对Cd~(2+)和Pb~(2+)离子的吸附能力为1.760-1.738 mg g~(-1),而未处理材料的吸附能力为1.415-1.539 mg g~(-1)。拟二阶模型拟合了Cd~(2+)和Pb~(2+)离子的生物吸附数据,回归系数(R~2)为0.9784-0.9999。将Ho模型与实验数据拟合表明,所研究的两种金属离子的生物吸附机理主要为化学吸附过程。因此,处理过的芸芥、阿比西尼卡苓和麝香属是修复Cd~(2+)离子的潜在生物吸附剂,而未经处理的材料则适用于从污染的水介质中去除Pb~(2+)离子。

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