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Biosorption of Cu~(2+) and Zn~(2+) from aqueous solutions by dried marine green macroalga Chaetomorpha linum

机译:干燥的海洋绿巨藻Chaetomorpha linum对水溶液中Cu〜(2+)和Zn〜(2+)的生物吸附

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The biosorption of the heavy metals Cu~(2+) and Zn~(2+) by dried marine green macroalga (Chaetomorpha linum) was investigated. The biosorption capacities of the dried alga for copper and zinc were studied at different solution pH values (2-6), different algal particle sizes (100-800 μm) and different initial metal solution concentrations (0.5-10 mM). An optimum pH value of 5 was found suitable for both metal ions biosorption for both metal ions. At the optimum particle size (100-315 μm), biosorbent dosage (20g/l) and initial solution pH (pH 5), the dried alga produced maximum copper and zinc uptakes values (q_(max)) of 1.46 and 1.97 mmol/g respectively (according to the Langmuir model). The kinetic data obtained at different initial metal concentrations indicated that the biosorption rate was fast and most of the process was completed within 120 min. This study illustrated an alternative technique for the management of unwanted biological materials using processed algal material. C. linum is one of the fast-growing marine algae in the lake of Tunis and could be utilized as a biosorbent for the treatment of Cu~(2+) and Zn~(2+) contaminated wastewater streams.
机译:研究了干燥的海洋绿色大型藻(Chaetomorpha linum)对重金属Cu〜(2+)和Zn〜(2+)的生物吸附。研究了在不同溶液pH值(2-6),不同藻类粒径(100-800μm)和不同初始金属溶液浓度(0.5-10 mM)下干燥藻对铜和锌的生物吸附能力。发现最佳pH值为5适合两种金属离子对两种金属离子的生物吸附。在最佳粒径(100-315μm),生物吸附剂剂量(20g / l)和初始溶液pH(pH 5)下,干藻产生的最大铜和锌吸收值(q_(max))为1.46和1.97 mmol / g分别(根据Langmuir模型)。在不同的初始金属浓度下获得的动力学数据表明,生物吸附速度很快,并且大部分过程在120分钟内完成。这项研究说明了使用加工的藻类材料处理有害生物材料的另一种技术。 C. linum是突尼斯湖中快速生长的海藻之一,可作为生物吸附剂用于处理被Cu〜(2+)和Zn〜(2+)污染的废水。

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