Removal of Heavy Metal Ions from Aqueous Solutions via Adsorption onto Modified Lignin from Pulping Wastes

A. Celi̇k, A. Demirbaş
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引用次数: 144

Abstract

The aim for this research is to study inexpensive and effective metal ion adsorbents from biomass sources of modified lignin to offer these adsorbents as replacements for existing commercial materials. The initial concentrations were increased up to 12.7 ppm for Pb 2+ , Cd 2+ , and Zn 2+ in order to reach the plateau values which represent saturation of the active points which are available for interaction with metal ions on the lignin samples. The maximum adsorption capacities are 11.3, 17.5, and 7.7 mg per g of the lignin for Zn 2+ , Pb 2+ , and Cd 2+ , respectively. The maximum adsorption capacity is higher than 20 mg per g of the lignin for Cu 2+ ion. The maximum adsorption percentage is 96.7 for Pb 2+ for 4 h at 330 K and is 95.0 for Zn 2+ for 10 h at 290 K. The adsorption of all heavy metal ions first increases with pH and almost reaches a plateau value around 4.0 for Cu 2+ , 4.5 for Zn 2+ , 5.0 for Pb 2+ . High adsorption at higher pH values implies that metal ions interact with lignin by ion exchange.
改性木质素对制浆废渣中重金属离子的吸附研究
本研究的目的是从改性木质素的生物质来源中研究廉价而有效的金属离子吸附剂,以提供这些吸附剂作为现有商业材料的替代品。将pb2 +、cd2 +和zn2 +的初始浓度提高到12.7 ppm,以达到平台值,该平台值代表可与木质素样品上的金属离子相互作用的活性点的饱和。木质素对Zn 2+、Pb 2+和Cd 2+的最大吸附量分别为11.3、17.5和7.7 mg / g。木质素对Cu 2+离子的最大吸附量大于20 mg / g。在330 K下,pb2 +吸附4 h的最大吸附率为96.7,zn2 +在290 K下吸附10 h的最大吸附率为95.0。所有重金属离子的吸附首先随着pH值的增加而增加,Cu 2+的吸附量在4.0左右,Zn 2+的吸附量在4.5左右,Pb 2+的吸附量在5.0左右。在较高pH值下的高吸附表明金属离子通过离子交换与木质素相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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