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Increasing biodegradability of a real amine-contaminated spent caustic problematic stream through WAO and CWAO oxidation using a high specific surface catalyst from petcoke

湿式氧化 催化作用 胺气处理 炼油厂 石油化工 炼油厂 化学 污水处理 废物管理 废水 生物降解 流出物 活性炭 焦炭 烟气脱硫 制浆造纸工业 有机化学 吸附 工程类
作者
C. González,M.I. Pariente,R. Molina,L.G. Espina,M.O. Masa,Vicente Bernal,Juan A. Melero,Fernando Martı́nez
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:460: 141692-141692 被引量:12
标识
DOI:10.1016/j.cej.2023.141692
摘要

Different operating conditions of wet air oxidation and catalytic wet air oxidation have been studied for the treatment of highly concentrated methyldiethanolamine wastewater streams from amine units of acid gas recovery in petrol refineries. These units occasionally generate streams of high methyldiethanolamine content that require special actions to avoid undesirable impacts on the downstream biological process of the petrochemical wastewater treatment plant due to its inhibition effect. The wet air oxidation treatment achieved remarkable removals of methyldiethanolamine, sulfides, chemical oxygen demand and total organic carbon (99%, 95%, 65% and 38%, respectively). Likewise, activated petroleum coke materials from the own refinery plant were tested as catalysts in the process. These materials were prepared under different conditions (chemical activating agent and thermal carbonization process). The catalytic wet air oxidation treatment using an activated petroleum coke was able to remove the methyldiethanolamine at milder operation conditions keeping a similar performance in terms of wastewater treatment removals as compared to the non-catalytic experiments. This technology significantly increased the biodegradability of the treated effluents ranging from 25 to 70 % due to the formation of more biodegradable substrates (acetic acid and ammonium) for further biological treatment.
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