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首页> 外文期刊>Journal of Hazardous Materials >Equilibrium studies for the sorption of zinc and copper from aqueous solutions using sugar beet pulp and fly ash
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Equilibrium studies for the sorption of zinc and copper from aqueous solutions using sugar beet pulp and fly ash

机译:使用甜菜浆和粉煤灰从水溶液中吸附锌和铜的平衡研究

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In the present work, the abilities of native sugar beet pulp (SBP) and fly ash (FA) to remove copper (Cu~(2+)) and zinc (Zn~(2+)) ions from aqueous solutions were compared. The SBP and FA, an industrial by-product and solid waste of sugar industry, were used for the removal of copper and zinc from aqueous water. Batch adsorption experiments were performed in order to evaluate the removal efficiency of SBP and lignite-based FA. The effect of various operating variables, i.e. initial pH, adsorbent dose, initial metal ion concentration, and time on adsorption of copper and zinc onto the SBP and FA, has been studied. The sorption process was relatively fast and equilibrium was reached after about 60 min of contact. As much as 60-97% removal of copper and zinc for SBP and FA are possible in about 60 min, respectively, under the batch test conditions. Uptake showed a pH-dependent profile. The overall uptake for the SBP is at a maximum at pH 5.5 and gives up to 30.9 mg g~(-1) for copper and at pH 6.0 and gives 35.6 mg g~(-1) for zinc for SBP, which seems to be removed exclusively by ion exchange and physical sorption. Maximum adsorption of copper and zinc occurred 7.0 and 7.84 mg g~(-1) at a pH value of 5.0 and 4.0 for FA, respectively. A dose of 8 g l~(-1) of SBP and 8 g l~(-1) FA were sufficient for the optimum removal of both the metal ions. The sorption data were represented by the Freundlich for SBP and the Langmuir and Freundlich for FA. The sorption data were better represented by the Langmuir isotherm than by the Freundlich one for FA in the adsorption of zinc ion, suggesting that the monolayer sorption, mainly due to ion exchange. The presence of low ionic strength or low concentration of Na and Cl ions does not have a significant effect on the adsorption of these metals by SBP and FA. The SBP and FA are shown to be effective metal adsorbents for these two metals.
机译:在本工作中,比较了天然甜菜浆(SBP)和粉煤灰(FA)从水溶液中去除铜(Cu〜(2+))和锌(Zn〜(2+))离子的能力。 SBP和FA,制糖工业的工业副产品和固体废物,用于去除水中的铜和锌。进行批量吸附实验以评估SBP和褐煤基FA的去除效率。研究了各种操作变量(即初始pH,吸附剂剂量,初始金属离子浓度和时间)对铜和锌在SBP和FA上的吸附的影响。吸附过程相对较快,接触约60分钟后达到平衡。在分批测试条件下,分别在约60分钟内可以分别去除SBP和FA多达60-97%的铜和锌。摄取显示出pH依赖性曲线。 SBP的总摄入量在pH值为5.5时最大,对铜为30.9 mg g〜(-1),在pH 6.0时为SBP锌为35.6 mg g〜(-1),这似乎是仅通过离子交换和物理吸附去除。 FA的pH值为5.0和4.0时,铜和锌的最大吸附分别为7.0和7.84 mg g〜(-1)。 8 g l〜(-1)的SBP和8 g l〜(-1)的FA剂量足以最佳地去除两种金属离子。吸附数据用SBP的Freundlich和FA的Langmuir和Freundlich表示。 Langmuir等温线的吸附数据比用FA的Freundlich更好地表示了FA在锌离子的吸附,这表明单层吸附主要是由于离子交换。低离子强度或低浓度的Na和Cl离子的存在对SBP和FA对这些金属的吸附没有显着影响。 SBP和FA被证明是这两种金属的有效金属吸附剂。

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