Ade Oktasari
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引用次数: 11

摘要

采用无活化(KK)、酸活化(KKA)和碱活化(KKB)花生壳对Pb (II)金属离子进行了吸附实验。采用H3PO4和KOH对花生壳粉进行活化,提高了吸附效果和吸附容量。FT-IR分光光度计表征结果表明,纤维素骨架的OH dan CH为3410和2901 cm-1峰。KK、KKA和KKB对Pb(II)的最佳吸附条件为pH均为5,接触时间分别为60min、90min和70min。KK、KKA和KKB对Pb(II)离子的吸附动力学参数为准二级动力学,速率常数k分别为12.279、4.149和32.258 g mmol-1 min-1, Langmuir等温线模型的最大吸附量分别为0.598、0.505和0.622 mmol-1,吸附能分别为26.735、25.789和29.245 kJ mol-1。结果表明,koh活化花生(Arachis hypogea L.)壳对Pb(II)具有良好的吸附亲和力,吸附量高于未活化和酸活化的花生壳。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kulit Kacang Tanah (Arachis hypogaea L.) sebagai Adsorben Ion Pb(II)
An experiment on Pb (II) metal ion adsorption using peanut (Arachis hypogea L.) shell without activation (KK), acid-activated (KKA), and base-activated (KKB) has been conducted. Peanut shell powder was activated using H3PO4 and KOH to improve adsorption effectivity and capacity. Characterization results using FT-IR spectrophotometer showed peak at 3410 and 2901 cm-1 indicated OH dan CH aliphatic from framework of cellulose. Optimum condition of Pb(II) adsorption for KK, KKA and KKB was occurred at the same optimum pH, that was pH 5, with contact time 60, 90 and 70 min, respectively. The adsorption kinetic parameter of Pb(II) ion for KK, KKA, and KKB followed pseudo second order kinetic with rate constants (k) in order of 12.279, 4.149, and 32.258 g mmol-1 min-1, with maximum adsorption capacity based on Langmuir isotherm model of 0.598, 0.505, and 0.622 mmol g-1, and adsorption energy of 26.735, 25.789, and 29.245 kJ mol-1, respectively. The results indicated that KOH-activated peanut (Arachis hypogea L.) shell has good adsorption affinity for Pb(II) with highest adsorption capacity compare to those from non-activated and acid-activated.
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