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表面活性剂强化土壤淋洗与电芬顿法联合处理石油烃污染土壤。

Combination of surfactant enhanced soil washing and electro-Fenton process for the treatment of soils contaminated by petroleum hydrocarbons.

机构信息

Université Paris-Est, Laboratoire Géomatériaux et Environnement (EA 4508), UPEM, 77454, Marne-la-Vallée, France.

Université Paris-Est, Laboratoire Géomatériaux et Environnement (EA 4508), UPEM, 77454, Marne-la-Vallée, France.

出版信息

J Environ Manage. 2015 Apr 15;153:40-7. doi: 10.1016/j.jenvman.2015.01.037. Epub 2015 Jan 31.

Abstract

In order to improve the efficiency of soil washing treatment of hydrocarbon contaminated soils, an innovative combination of this soil treatment technique with an electrochemical advanced oxidation process (i.e. electro-Fenton (EF)) has been proposed. An ex situ soil column washing experiment was performed on a genuinely diesel-contaminated soil. The washing solution was enriched with surfactant Tween 80 at different concentrations, higher than the critical micellar concentration (CMC). The impact of soil washing was evaluated on the hydrocarbons concentration in the leachates collected at the bottom of the soil columns. These eluates were then studied for their degradation potential by EF treatment. Results showed that a concentration of 5% of Tween 80 was required to enhance hydrocarbons extraction from the soil. Even with this Tween 80 concentration, the efficiency of the treatment remained very low (only 1% after 24 h of washing). Electrochemical treatments performed thereafter with EF on the collected eluates revealed that the quasi-complete mineralization (>99.5%) of the hydrocarbons was achieved within 32 h according to a linear kinetic trend. Toxicity was higher than in the initial solution and reached 95% of inhibition of Vibrio fischeri bacteria measured by Microtox method, demonstrating the presence of remaining toxic compounds even after the complete degradation. Finally, the biodegradability (BOD₅/COD ratio) reached a maximum of 20% after 20 h of EF treatment, which is not enough to implement a combined treatment with a biological treatment process.

摘要

为了提高土壤淋洗处理受烃类污染土壤的效率,提出了一种将该土壤处理技术与电化学高级氧化过程(即电芬顿(EF))相结合的创新方法。对真正受到柴油污染的土壤进行了原位土壤柱淋洗实验。淋洗液中添加了不同浓度的表面活性剂吐温 80,浓度高于临界胶束浓度(CMC)。通过收集土壤柱底部的淋出液,评估了土壤淋洗对其中烃类浓度的影响。然后对这些洗脱液进行 EF 处理,研究其降解潜力。结果表明,需要 5%的吐温 80 浓度才能增强从土壤中提取烃类的效果。即使使用这种浓度的吐温 80,处理效率仍然很低(仅在 24 小时的淋洗后达到 1%)。随后对收集到的洗脱液进行电化学处理,发现采用 EF 处理,在 32 小时内几乎完全矿化(>99.5%),呈线性动力学趋势。毒性高于初始溶液,根据 Microtox 方法测量,发光菌(Vibrio fischeri)的抑制率达到 95%,表明即使在完全降解后,仍存在残留的有毒化合物。最后,EF 处理 20 小时后,生物需氧量(BOD₅/COD 比值)达到最高 20%,这不足以与生物处理工艺相结合实施联合处理。

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