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Biosorption of Hg (II) from aqueous solution using algal biomass: kinetics and isotherm studies

机译:使用藻类生物质从水溶液中吸附汞(II):动力学和等温线研究

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摘要

The present work investigated the ability of algal biomass to remove mercury from aqueous solutions. The mercury biosorption process was studied through batch experiments 35 °C temperature with regard to the influence of contact time, initial mercury concentration, pH and desorption. The maximum adsorption capacity was registered at pH 6. The adsorption conduct of Hg(II) was defined by pseudo second order well rather pseudo first order as the experimental data (q ) come to an agreement with the calculated value. The kinetics of adsorption was fast and a high capacity of adsorption occurred within only 90 min. The adsorption data were signified by many models but Langmuir (q = 42. mg g ) & Freundlich fitted well having regression coefficients near to unity. The thermodynamic parameters were also suited well as negative value of free energy cope up to spontaneity, positive value of the randomness described by ΔS attributed to affinity of Hg towards algal bioadsorbant and high positive value of heat of enthalpy designates that the adsorption process is expected due to robust interactions between the Hg(II) ions and various functional groups on surface of algal bioadsorbant. Field emission scanning electron microscopy integrated with energy dispersive X-ray spectroscopy analysis before and after adsorption of Hg(II) reveals the adsorption of metallic ions over the surface. FTIR study supported the existence of various functional groups (carboxylix, amines, hydroxyls, amides etc.) helped in adsorption. Continuous adsorption desorption experiments proved that algal cells was excellent biosorbents with potential for further development.
机译:本工作研究了藻类生物质从水溶液中去除汞的能力。通过分批实验在35°C的温度下研究汞的生物吸附过程,以了解接触时间,初始汞浓度,pH和解吸的影响。在pH为6时记录了最大吸附容量。当实验数据(q)与计算值一致时,Hg(II)的吸附行为由拟二阶井而非拟一阶定义。吸附动力学很快,仅在90分钟内就发生了高吸附容量。吸附数据由许多模型表示,但Langmuir(q = 42. mg g)和Freundlich拟合得很好,回归系数接近于1。热力学参数也很合适,如能满足自发性的自由能负值,归因于汞对藻类生物吸附剂的亲和力的ΔS描述的随机性正值以及焓热的正值高表示预期吸附过程是由于Hg(II)离子与藻类生物吸附剂表面上各种官能团之间的牢固相互作用。结合Hg(II)吸附前后的场发射扫描电子显微镜与能量色散X射线光谱分析相结合,揭示了金属离子在表面的吸附。 FTIR研究支持存在各种有助于吸附的官能团(羧基,胺,羟基,酰胺等)。连续吸附解吸实验证明藻类细胞是极好的生物吸附剂,具有进一步发展的潜力。

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