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Application of extraction and adsorption to the alkylpyrazine removal from wastewater

机译:萃取吸附法在废水中烷基吡嗪去除中的应用

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Application of extraction and adsorption process to the alkylpyrazine removal from wastewater was investigated. The detailed extraction process was studied. It was found that the alkylpyrazine content in the water phase after extraction was decreased to 0.3% or less from about 3.0% (wt.). Extractant was recovered by concentrating the water phase and then the wastewater generated from concentration process was disposed by adsorption treatment in order to further lower the level of alkylpyrazine in wastewater. Adsorption of simulated wastewater containing 2,3-dimethylpyrazine on the different resins was also investigated. Among the resins of various grades used, the XDA-200 had the best properties in decontamination of aqueous 2,3-dimethylpyrazine solutions. The chemical oxygen demand (COD) of authentic wastewater generated from extraction process after adsorption treatment with XDA-200 was less than 1,000 mg/L and its removal percentage was above 90%. It was shown that regeneration of the adsorbent bed could be effectively performed with ethanol. Based on the extraction and adsorption experimental results, more than 98% of COD in the wastewater was removed.
机译:研究了萃取吸附法在废水中烷基吡嗪的去除中的应用。研究了详细的提取过程。发现萃取后水相中的烷基吡嗪含量从约3.0%(重量)降低至0.3%或更低。通过浓缩水相回收萃取剂,然后通过吸附处理将浓缩过程中产生的废水进行处理,以进一步降低废水中烷基吡嗪的含量。还研究了含2,3-二甲基吡嗪的模拟废水在不同树脂上的吸附。在使用的各种等级的树脂中,XDA-200在2,3-二甲基吡嗪水溶液的去污中具有最佳性能。 XDA-200吸附处理后,提取过程产生的真实废水的化学需氧量(COD)小于1,000 mg / L,去除率大于90%。结果表明,用乙醇可以有效地进行吸附床的再生。根据萃取和吸附实验结果,废水中的COD去除率超过98%。

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