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Biosorption of Toxic Lead (II) Ions using Tomato Waste (Solanum lycopersicum) Activated by NaOH

机译:使用番茄废物(Solanum Lycopersicum)激活的毒性引线(II)离子的生物吸附

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This research present to uptake lead (II) ion from aqueous solutions by activated tomato waste. Biosorbent were characterized by applying Fourier Transform Infrared Spectroscopy (FTIR) and Surface Area Analyzer (SAA). The biosorption investigated with parameters including the concentration of NaOH, effects of solution pH, biosorbent dosage, contact time,and initial metal concentration. Experimental data were analyzed in terms of two kinetic model such us the pseudo-first order and pseudo-second order. Langmuir and Freundlich isotherm models were applied todescribe the biosorption process. According to the experiment, the optimum concentration of NaOH was achieved at 0.1 M. The maximum % lead (II) removal was achieved at pH 4 with 94.5%. Optimum biosorbentdosage were found as 0.1 g/25 mL solution while optimum contact time were found at 75 minutes. The results showed that the biosorption processes of Lead (II) followed pseudo-second order kinetics. Langmuir adsorption isotherm was found fit the adsorption data with amaximum capacity of 24.079 mg/g with anadsorption energy of 28.046 kJ/mol.
机译:该研究表现在通过活性番茄废物中来自水溶液的摄取引线(II)离子。通过应用傅里叶变换红外光谱(FTIR)和表面积分析仪(SAA)来表征生物吸附剂。通过参数研究,包括NaOH的浓度,溶液pH,生物吸附剂剂量,接触时间和初始金属浓度的参数研究的生物吸附。根据两个动力学模型,这些我们的伪第一顺序和伪二次订单,分析了实验数据。 Langmuir和Freundlich等温模型被应用于生物吸附过程。根据实验,在0.1M下实现NaOH的最佳浓度。在pH 4下达到最大%铅(II)除去,94.5%。最佳的生物吸入剂量被发现为0.1g / 25ml溶液,同时在75分钟内发现最佳接触时间。结果表明,铅(II)的生物吸附过程跟踪伪二阶动力学。发现Langmuir吸附等温线适合吸附数据,其可容纳24.079毫克/克,带内吸附能量为28.046 kJ / mol。

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