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Adsorption studies of zinc(II) on magnetite, baobab (Adansonia digitata) and magnetite–baobab composite

机译:磁铁矿锌(II)对磁铁矿,肉竹桃(Adansonia digitata)和磁铁矿 - 植物复合材料的吸附研究

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摘要

Abstract The negative effect of high concentration of heavy metals in the environment on living species prompted this research. A study of adsorption of zinc on synthesized magnetite (MG), baobab fruit shell (BB) and magnetite–baobab composite (MB) was carried out. The adsorption of Zn(II) ions was examined using batch equilibrium technique. The effects of initial metal ions concentrations (15–150 mg/L for zinc), adsorbent dose (0.05–0.3 g), contact time (5–150 min), pH (2–8) and temperature (303–343 K) on the sorption capacity of these adsorbents were investigated. The Zn(II) ions at a solution concentration of 150 mg/g gave maximum adsorption capacity of 38.25, 33.95 and 29.20 mg/g for MB, MG and BB, respectively. The adsorption of Zn(II) metal ions was modelled using Langmuir, Freundlich and Temkin isotherms. The highest correlation coefficient (R 2) value was obtained from Freundlich model for Zn(II) adsorption on MG and MB as 0.986 and 0.973, respectively, while that of Zn(II) on BB was obtained from Langmuir model as 0.993. The kinetic and thermodynamic studies revealed that the adsorption processes followed pseudo-second-order kinetics and were endothermic in nature. Desorption experiments were conducted on the spent adsorbent using 0.1, 0.2, 0.5, 1.0 and 2.0 M HCl to determine the reusability potentials of the adsorbents. There was an decrease in the amount of Zn(II) ions adsorbed after each stage of desorption process varied between the different acid concentrations. The 0.1 M HCl gave the highest degree of adsorption for Zn(II) on BB, while 0.2 M HCl was the best for MG and MB.
机译:摘要高浓度重金属在生活物种环境中的负面影响促使这项研究。进行了合成磁铁矿(Mg),Baobab果壳(Bb)和磁铁矿 - 肉叶复合物(MB)对锌的吸附研究。使用批料平衡技术检查Zn(II)离子的吸附。初始金属离子浓度(15-150mg / L对于锌)的影响,吸附剂剂量(0.05-0.3g),接触时间(5-150分钟),pH(2-8)和温度(303-343 k)研究了这些吸附剂的吸附能力。溶液浓度为150mg / g的Zn(II)离子分别为MB,Mg和Bb的最大吸附容量为38.25,33.95和29.20mg / g。使用Langmuir,Freundlich和Temkin等温线进行模拟Zn(II)金属离子的吸附。从Freundlich模型获得最高的相关系数(R 2)值,用于Zn(II)的Zn(II)作为0.986和0.973的吸附,而BB上的Zn(II)的Zn(II)的型号为0.993。动力学和热力学研究表明,吸附过程跟踪伪二阶动力学,并在自然中吸热。使用0.1,0.2,0.5,1.0和2.0M HCl对废吸附剂进行解吸实验,以确定吸附剂的可重复使用性电位。在不同酸浓度之间变化的解吸过程的每个阶段后吸附的Zn(II)离子的量减少。 0.1M HCl在BB上给出了Zn(II)的最高程度的吸附,而0.2M HCl是Mg和Mb的最佳。

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