Adsorption of copper ions from aqueous solution using surface modified pine bark media

Se-keun Park, Yeong-Kwan Kim
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Abstract

This study used a packed column reactor and a horizontal flow mesh reactor to examine the removal of copper ions from aqueous solutions using pine bark, a natural adsorbent prepared from Korean red pine (Pinus densiflora). Both equilibrium and nonequilibrium adsorption experiments were conducted on copper ion concentrations of 10mg/L, and the removals of copper ions at equilibrium were close to 95%. Adsorption of copper ions could be well described by both the Langmuir and Freundlich adsorption isotherms. The bark was treated with nitric acid to enhance efficiency of copper removal, and sorption capacity was improved by about 48% at equilibrium; mechanisms such as ion exchange and chelation may have been involved in the sorption process. A pseudo second-order kinetic model described the kinetic behavior of the copper ion adsorption onto the bark. Regeneration with nitric acid resulted in extended use of spent bark in the packed column. The horizontal flow mesh reactor allowed approximately 80% removal efficiency, demonstrating its operational flexibility and the potential for its practical use as a bark filter reactor.
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表面改性松皮介质对水溶液中铜离子的吸附
本研究采用填充柱反应器和水平流网格反应器,考察了用红松(Pinus densiflora)制备的天然吸附剂松皮对水溶液中铜离子的去除作用。在铜离子浓度为10mg/L的条件下,进行了平衡吸附和非平衡吸附实验,平衡态铜离子的去除率接近95%。铜离子的吸附可以用Langmuir吸附等温线和Freundlich吸附等温线来描述。用硝酸处理树皮,提高了铜的去除效率,在平衡状态下,树皮的吸附量提高了48%左右;离子交换和螯合等机制可能参与了吸附过程。拟二级动力学模型描述了铜离子在树皮上的吸附动力学行为。用硝酸再生导致废树皮在填料柱中的延长使用。水平流网反应器的去除效率约为80%,显示了其操作灵活性和作为树皮过滤反应器的实际应用潜力。
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