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使用活性炭对溶解在表面活性剂溶液中的菲进行选择性吸附。

Selective adsorption of phenanthrene dissolved in surfactant solution using activated carbon.

作者信息

Ahn Chi K, Kim Young M, Woo Seung H, Park Jong M

机构信息

Department of Chemical Engineering, School of Environmental Science and Engineering, Pohang University of Science and Technology, San 31, Hyoja-Dong, Pohang 790-784, Republic of Korea.

出版信息

Chemosphere. 2007 Nov;69(11):1681-8. doi: 10.1016/j.chemosphere.2007.06.018. Epub 2007 Jul 20.

Abstract

Selective adsorption of a hazardous hydrophobic organic compound (HOC) by activated carbon as a means of recovering surfactants after a soil washing process was investigated. As a model system, phenanthrene was selected as a representative HOC and Triton X-100 as a nonionic surfactant. Three activated carbons that differed in size (Darco 20-40 (D20), 12-20 (D12) and 4-12 (D4) mesh sizes) were used in adsorption experiments. Adsorption of surfactant onto activated carbon showed a constant maximum above the critical micelle concentration, which were 0.30, 0.23, 0.15 g g(-1) for D20, D12, and D4, respectively. Selectivity for phenanthrene to Triton X-100 was much higher than 1 over a wide range of activated carbon doses (0-6 g l(-1)) and initial phenanthrene concentrations (10-110 mg l(-1)). Selectivity generally increased with decreasing particle size, increasing activated carbon dose, and decreasing initial concentration of phenanthrene. The highest selectivity was 74.9, 57.3, and 38.3 for D20, D12, and D4, respectively, at the initial conditions of 10 mg l(-1) phenanthrene, 5 g l(-1) Triton X-100 and 1g l(-1) activated carbon. In the case of D20 at the same conditions, 86.5% of the initial phenanthrene was removed by sorption and 93.6% of the initial Triton X-100 remained in the solution following the selective adsorption process. The results suggest that the selective adsorption by activated carbon is a good alternative for surfactant recovery in a soil washing process.

摘要

研究了用活性炭选择性吸附有害疏水性有机化合物(HOC),作为土壤洗涤过程后回收表面活性剂的一种方法。作为模型系统,选择菲作为代表性的HOC,选择Triton X-100作为非离子表面活性剂。在吸附实验中使用了三种尺寸不同的活性炭(Darco 20 - 40(D20)、12 - 20(D12)和4 - 12(D4)目尺寸)。表面活性剂在活性炭上的吸附在临界胶束浓度以上显示出恒定的最大值,对于D20、D12和D4分别为0.30、0.23、0.15 g g(-1)。在广泛的活性炭剂量(0 - 6 g l(-1))和初始菲浓度(10 - 110 mg l(-1))范围内,菲对Triton X-100的选择性远高于1。选择性通常随着粒径减小、活性炭剂量增加和菲初始浓度降低而增加。在10 mg l(-1)菲、5 g l(-1) Triton X-100和1g l(-1)活性炭的初始条件下,D20、D12和D4的最高选择性分别为74.9、57.3和38.3。在相同条件下,对于D20,经过选择性吸附过程后,86.5%的初始菲被吸附去除,93.6%的初始Triton X-100保留在溶液中。结果表明,活性炭的选择性吸附是土壤洗涤过程中回收表面活性剂的一种良好替代方法。

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