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Marine macroalga Sargassum horneri as biosorbent for heavy metal removal: roles of calcium in ion exchange mechanism

机译:海洋大藻Sargassum horneri作为去除重金属的生物吸附剂:钙在离子交换机制中的作用

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Brown seaweed Sargassum horneri, a troublesome biomass scattered along the seashore, was utilized as a biosorbent for Pb(II) removal from aqueous solutions. The Pb(II) adsorption by brown seaweed was enhanced by pretreatment with CaCl2, and the Langmuir adsorption isotherm equation showed a maximum capacity of a Q(max) of 0.696 mmol/g and a b value of 94.33 L/mmol. Results obtained from the mass-balance equation derived from the simulation model of the Langmuir adsorption isotherm suggested that the adsorption performance of brown seaweed biosorbent was sufficient to reduce the concentration of Pb(II) to meet the range of WHO guideline. The mechanism, as elucidated using pH monitoring, adsorption rate and ion exchange model, involved the rapid pH change of metal solutions that led to high reaction rate and Pb(II) uptake in the first 30 min of the biosorption process. The energy X-ray analysis's result confirmed the sharp reduction of calcium content in the biosorbent after Pb(II) adsorption. The amount of calcium ions released from the biosorbent was about 1.5 times the amount of Pb(II) adsorbed and proved the role of calcium in the ion exchange mechanism. These adsorption equilibrium and mechanistic studies provide useful information for system design and performance prediction of biosorption processes.
机译:棕色海藻Sargassum horneri是一种沿海岸散布的麻烦生物质,被用作从水溶液中去除Pb(II)的生物吸附剂。 CaCl2预处理可增强褐藻对Pb(II)的吸附,Langmuir吸附等温线方程显示Q(max)的最大容量为0.696 mmol / g,b值为94.33 L / mmol。从Langmuir吸附等温线模拟模型得出的质量平衡方程得出的结果表明,褐藻生物吸附剂的吸附性能足以降低Pb(II)的浓度,以满足WHO准则的要求。使用pH监测,吸附速率和离子交换模型阐明的机理涉及金属溶液pH的快速变化,导致在生物吸附过程的前30分钟内反应速率高和Pb(II)吸收。能量X射线分析的结果证实了Pb(II)吸附后生物吸附剂中钙含量的急剧下降。从生物吸附剂中释放出的钙离子量约为所吸附的Pb(II)量的1.5倍,并证明了钙在离子交换机理中的作用。这些吸附平衡和机理研究为系统设计和生物吸附过程的性能预测提供了有用的信息。

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