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Potentials of biological oxidation processes for the treatment of spent sulfidic caustics containing thiols

机译:生物氧化工艺处理含硫醇的废硫化碱的潜力

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This research focused on the biological treatment of sulfidic spent caustics from refineries, which contain mainly hydrogen sulfide, methanethiol (MT) and ethanethiol (ET). Also various organic compounds can be present such as BTEX. Biological oxidation of 2.5 mM MT in batch experiments occurred after MT was first auto-oxidized into dimethyldisulfide (DMDS) whereafter oxidation into sulfate was completed in 350 h. DMDS as sole substrate was completely oxidized within 40 h, Therefore, DMDS formation seems to play an important role in detoxification of MT. Biological oxidation of ET and buthanethiol was not successful in batch experiments. Complete oxidation of MT and ET was observed in flow-through reactor experiments. Simultaneous oxidation of sulfide and MT was achieved when treating a synthetic spent caustic, containing 10 mM sulfide and 2.5 mM MT, in a bubble column reactor with carrier material at a hydraulic retention time of 6 h. Addition of 7.5 mM phenol, a common pollutant of spent caustics, did not adversely affect the biological oxidation process and phenol was completely removed from the effluent. Finally, three different spent caustics solutions from refineries were successfully treated.
机译:这项研究的重点是精炼厂硫化废碱的生物处理,这些废碱主要包含硫化氢,甲硫醇(MT)和乙硫醇(ET)。也可以存在各种有机化合物,例如BTEX。在先将MT自动氧化为二甲基二硫醚(DMDS)之后,在350小时内完成硫酸盐的氧化,然后进行了批量实验中2.5 mM MT的生物氧化。 DMDS作为唯一底物在40小时内被完全氧化,因此,DMDS的形成似乎在MT的解毒中起着重要作用。 ET和丁硫醇的生物氧化在分批实验中不成功。在流通式反应器实验中观察到MT和ET完全氧化。在含有载体材料的鼓泡塔反应器中,在水力停留时间为6小时的条件下,处理含有10 mM硫化物和2.5 mM MT的合成废碱,可以同时硫化物和MT氧化。添加7.5 mM的苯酚(废碱的常见污染物)不会对生物氧化过程产生不利影响,并且苯酚已从废水中完全去除。最后,成功地处理了来自炼油厂的三种不同的苛性碱溶液。

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