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芬顿驱动的甲基叔丁基醚用过的颗粒活性炭的化学再生

Fenton-driven chemical regeneration of MTBE-spent GAC.

作者信息

Huling Scott G, Jones Patrick K, Ela Wendell P, Arnold Robert G

机构信息

US Environmental Protection Agency, Office of Research and Development, National Risk Management Research Laboratory, P.O. Box 1198, Ada, OK 74820, USA.

出版信息

Water Res. 2005 May;39(10):2145-53. doi: 10.1016/j.watres.2005.03.027.

Abstract

Methyl tert-butyl ether (MTBE)-spent granular activated carbon (GAC) was chemically regenerated utilizing the Fenton mechanism. Two successive GAC regeneration cycles were performed involving iterative adsorption and oxidation processes: MTBE was adsorbed to the GAC, oxidized, re-adsorbed, oxidized, and finally re-adsorbed. Oxidant solutions comprised of hydrogen peroxide (H2O2) (1.7-2.0%) and FeSO4 x 7H2O (3 g/L) (pH 2.5), were recirculated through the GAC column (30% bed expansion). The regeneration efficiency after two full cycles of treatment was calculated to be 91%. The cost of H2O2 was 0.59 dollars/kg GAC (0.27 dollars/lb) per regeneration cycle. There was no loss of sorptive capacity. Small reductions in carbon surface area and pore volume were measured. The lack of carbon deterioration under aggressive oxidative conditions was attributed to the oxidation of the target contaminants relative to the oxidation of carbon surfaces. The reaction byproducts from MTBE oxidation, tertiary butanol and acetone, were also degraded and did not accumulate significantly on the GAC. Excessive accumulation of Fe on the GAC and consequent interference with MTBE sorption and carbon regeneration was controlled by monitoring and adjusting Fe in the oxidative solution.

摘要

利用芬顿机理对甲基叔丁基醚(MTBE)饱和颗粒活性炭(GAC)进行化学再生。进行了两个连续的GAC再生循环,包括反复的吸附和氧化过程:MTBE被吸附到GAC上,氧化,再吸附,氧化,最后再吸附。由过氧化氢(H₂O₂)(1.7 - 2.0%)和硫酸亚铁·7H₂O(3 g/L)(pH 2.5)组成的氧化溶液在GAC柱中循环(床层膨胀30%)。经过两个完整循环处理后的再生效率计算为91%。每个再生循环中过氧化氢的成本为0.59美元/千克GAC(0.27美元/磅)。吸附容量没有损失。测量到碳表面积和孔体积有小幅减少。在强氧化条件下碳没有劣化,这归因于目标污染物相对于碳表面的氧化。MTBE氧化的反应副产物叔丁醇和丙酮也被降解,没有在GAC上大量积累。通过监测和调整氧化溶液中的铁来控制铁在GAC上的过度积累以及由此对MTBE吸附和碳再生的干扰。

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