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Kinetic and equilibrium studies on biosorption of cadmium(II) from aqueous solution by Gracilaria corticata and agar extraction algal waste

机译:基因酸碱溶液和琼脂提取藻类废物水溶液中镉(II)生物吸附的动力学和均衡研究

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摘要

This study consists of using a new red algal species biomass together with Cd, as a toxic metal from synthetic contaminated wastewaters in order to test biomass potential to become a by-product to be used for the wastewater treatment. The effects of solution pH, initial Cd(II) concentration, biosorbents dosage, and contact time on the removal efficiency of Cd(II) from the synthetic solutions were investigated. Cd(II) sorption was found to be highly pH dependent, and the maximum sorption was obtained at pH 6.0. The removal efficiency of Gracilaria corticata and the agar extraction algal waste increased from 53 to 87% and 62 to 96% for an increase in biomass from 0.1 to 0.5 g L-1, respectively. Equilibrium data follow Langmuir model. The parameters of Langmuir equilibrium model are q (max) = 226.9 mg g(-1), b = 0.009 mg L-1 and q (max) = 197.4 mg g(-1), b = 0.012 mg L-1, respectively, for G. corticata and agar extraction algal waste. Different kinetic models such as pseudo-first-order, pseudo-second-order, and intra-particle diffusion model were tested, and the experimental data were in agreement with the pseudo-second-order model. FT-IR of biomasses revealed that amino, hydroxyl, and carbonyl were main functional groups. The results of SEM-EDX indicate that ion exchange occurred during the adsorption process. The present study suggests that G. corticata and agar extraction algal waste can be used as effective, environmentally friendly, and efficient biosorbents for Cd(II) removal from aqueous solution.
机译:该研究包括使用新的红藻种生物质与Cd,作为来自合成污染的废水的毒性金属,以测试生物质可能成为废水处理的副产物。研究了溶液pH,初始CD(II)浓度,生物吸水剂剂量和接触时间对来自合成溶液的CD(II)的去除效率的影响。发现CD(II)吸附是依赖性的高pH值,并且在pH6.0处获得最大吸附。 Gracilaria Corticata的去除效率和琼脂提取藻类废物的53%至87%,分别从0.1至0.5g L-1的增加增加到87%和62%至96%。均衡数据关注Langmuir模型。 Langmuir均衡模型的参数是Q(MAX)= 226.9mg g(-1),B = 0.009mg L-1和Q(MAX)= 197.4mg g(-1),B = 0.012 mg L-1 ,对于G.Corticata和Agar提取藻类废物。测试了不同的动力学模型,例如伪一阶,伪二阶和粒子扩散模型,并且实验数据与伪二阶模型一致。 FT-IR的生物量揭示了氨基,羟基和羰基是主要的官能团。 SEM-EDX的结果表明在吸附过程中发生离子交换。本研究表明,G.Colticata和琼脂提取藻类废物可用作从水溶液中去除CD(II)的有效,环保和高效的生物吸水性。

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