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使用合成吸附剂从废液中去除铬离子的批次动力学和热力学

Batch kinetics and thermodynamics of chromium ions removal from waste solutions using synthetic adsorbents.

作者信息

Gasser M S, Morad Gh A, Aly H F

机构信息

Hot Labs Centre, Atomic Energy Authority, 13759 Cairo, Egypt.

出版信息

J Hazard Mater. 2007 Apr 2;142(1-2):118-29. doi: 10.1016/j.jhazmat.2006.07.065. Epub 2006 Aug 3.

Abstract

Mg(OH)(2) was identified as a component in the magnesia cement being adsorbent for Cr(VI). Modified magnesia cement was prepared by the addition of ferric chloride and humic acid. The equilibrium adsorption of Cr(VI) on magnesia cement adsorbents (MF5-1) and (MF5-2) was investigated as a function of contact time, adsorbent weight, solute concentration and temperature. Tests of different isotherms have shown that the adsorption data fit the Langmiur and Freundlich isotherms at 25+/-1 degrees C. The nature of the diffusion process responsible for adsorption of Cr(VI) on (MF5-1) and (MF5-2) adsorbents was discussed. The kinetics and mechanism of diffusion of Cr(VI) into (MF5-1) and (MF5-2) adsorbents from aqueous solution have been studied as a function of Cr(VI) concentrations and reaction temperatures. The adsorption of Cr(VI) on the MF5-1 and MF5-2 adsorbents follows first-order reversible kinetics. The forward and backward constants, k(1) and k(2) have been calculated at different temperatures between 10 and 50 degrees C. The heat of activation of the adsorption, DeltaH() and DeltaS() were calculated for Cr(VI) at 25 degrees C. The values of DeltaH() were found 18.1 and 10.7 kJ mol(-1) for MF5-1 and MF5-2, respectively, while entropy change, DeltaS(), were found -106.8 and -118.6 J mol(-1)K(-1) for MF5-1 and MF5-2, respectively. The study showed that pore diffusion is the rate-determining step in the adsorption of Cr(VI) ions for MF5-1 and MF5-2. MF5-2 was found more efficient for Cr(VI) adsorption than MF5-1. Also Cr(VI) can be adsorbed on MF5-2, whereas Cr(III) cannot. So, the competitive adsorption of multi-metals onto the MF5-2 adsorbent was studied. The studies showed that this adsorbent can be used as an efficient adsorbent material for the removal of Cr(VI) from water and nuclear power plant coolant water.

摘要

氢氧化镁(Mg(OH)(2))被鉴定为氧化镁水泥中对六价铬(Cr(VI))具有吸附作用的一种成分。通过添加氯化铁和腐殖酸制备了改性氧化镁水泥。研究了六价铬在氧化镁水泥吸附剂(MF5 - 1)和(MF5 - 2)上的平衡吸附与接触时间、吸附剂重量、溶质浓度和温度的关系。不同等温线测试表明,在25 ± 1℃时,吸附数据符合朗缪尔(Langmiur)和弗伦德利希(Freundlich)等温线。讨论了六价铬在(MF5 - 1)和(MF5 - 2)吸附剂上吸附过程的扩散机制。研究了六价铬从水溶液扩散到(MF5 - 1)和(MF5 - 2)吸附剂中的动力学及机制与六价铬浓度和反应温度的关系。六价铬在MF5 - 1和MF5 - 2吸附剂上的吸附遵循一级可逆动力学。在10至50℃之间的不同温度下计算了正反应和逆反应常数k(1)和k(2)。计算了25℃时六价铬吸附的活化热ΔH()和ΔS()。发现MF5 - 1和MF5 - 2的ΔH()值分别为18.1和10.7 kJ·mol⁻¹,而熵变ΔS()分别为 - 106.8和 - 118.6 J·mol⁻¹·K⁻¹。研究表明,孔扩散是MF5 - 1和MF5 - 2吸附六价铬离子过程中的速率决定步骤。发现MF5 - 2对六价铬的吸附比MF5 - 1更有效。而且六价铬可被MF5 - 2吸附,而三价铬(Cr(III))则不能。因此,研究了多种金属在MF5 - 2吸附剂上的竞争吸附。研究表明,这种吸附剂可作为从水和核电站冷却水中去除六价铬的高效吸附材料。

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