Synthesis of Nanoscale Zero-Valent Iron with Polyphenol Extract from Cloves (Syzygium aromaticum) Through a Stepwise Reaction and Adsorption Test on Pb(II)

Yuliana Dewi Anugrah, Annissa Amalia, Salma Fitri Annisa
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Abstract

Polyphenols from clove extract (Syzygium aromaticum) were successfully used as reducing agents to synthesize nanoscale zero-valent iron (nZVI). Optimization of nZVI synthesis was carried out by reacting polyphenols and FeSO4 at a composition of 0.25:4.75, 1:4, 2:3, and 3:2. The particle size analyzer showed that the smaller particle size distribution was obtained at nZVI 0.25:4.75, with values of D10 = 85.1 nm, D50 = 122 nm, and D90 = 175 nm. The results of the Pb(II) removal test showed that nZVI 0.25:4.75 had a fairly high percentage of Pb(II) removal, which was 96.4852% at 60 minutes. The smaller particle size of nZVI 0.25:4.75 compared to other samples is an important factor affecting the adsorption activity of Pb(II) in an aqueous medium.
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丁香多酚萃取物分步反应合成纳米级零价铁及其对Pb(II)的吸附试验
以丁香提取物多酚为还原剂合成纳米级零价铁(nZVI)。以多酚和FeSO4为原料,分别以0.25:4.75、1:4、2:3和3:2的比例进行反应,优化合成nZVI的工艺条件。粒度分析仪显示,在nZVI 0.25:4.75时,其粒径分布较小,D10 = 85.1 nm, D50 = 122 nm, D90 = 175 nm。Pb(II)去除率试验结果表明,nZVI 0.25:4.75在60 min时具有较高的Pb(II)去除率,达到96.4852%。与其他样品相比,nZVI 0.25:4.75的粒径较小是影响其在水介质中吸附Pb(II)活性的重要因素。
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