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Degradation of p-nitrophenol in aqueous solution by microwave assisted oxidation process through a granular activated carbon fixed bed

机译:颗粒活性炭固定床微波辅助氧化工艺降解水溶液中的对硝基苯酚

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A microwave (MW) assisted oxidation process was investigated for degradation of p-nitrophenol (PNP) from aqueous solution. The process consisted of a granular activated carbon (GAC) fixed bed reactor, a MW source, solution and air supply system, and a heat exchanger. The process was operated in continuous flow mode. Air was applied for oxygen supply. GAC acted as a MW energy absorption material as well as the catalyst for PNP degradation. MW power, air flow, GAC dose, and influent flow proved to be major factors which influenced PNP degradation. The results showed that PNP was degraded effectively by this new process. Under a given condition (PNP concentration 1330 mg/L, MW power 500W, influent flow 6.4 mL/min, air flow 100mL/min), PNP removed 90%, corresponding to 80% of TOC removal. The pathway of PNP degradation was deduced based on GC-MS identification of course products. PNP experienced sequential oxidation steps and mineralized ultimately. Nitro-group of PNP converted to nitrite and nitrate. Biodegradability of the solution was improved apparently after treatment by MW assisted oxidation process, which benefit to further treatment of the solution using biochemical method.
机译:研究了微波(MW)辅助氧化工艺从水溶液中降解对硝基苯酚(PNP)的方法。该过程由颗粒状活性炭(GAC)固定床反应器,MW源,溶液和空气供应系统以及热交换器组成。该过程以连续流模式进行。空气用于氧气供应。 GAC充当了MW能量吸收材料以及PNP降解的催化剂。兆瓦功率,空气流量,GAC剂量和进水流量是影响PNP降解的主要因素。结果表明,该新工艺可有效降解PNP。在给定条件下(PNP浓度1330 mg / L,MW功率500W,进水流量6.4 mL / min,空气流量100mL / min),PNP去除90%,相当于TOC去除80%。根据课程产品的GC-MS鉴定推导了PNP降解的途径。 PNP经历了连续的氧化步骤并最终矿化。 PNP的硝基转化为亚硝酸盐和硝酸盐。 MW辅助氧化工艺处理后,溶液的生物降解性明显提高,有利于生化法进一步处理。

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