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首页> 外文期刊>Chemical engineering journal >Depth dependence of p-nitrophenol removal in soil by pulsed discharge plasma
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Depth dependence of p-nitrophenol removal in soil by pulsed discharge plasma

机译:脉冲放电等离子体去除土壤中对硝基苯酚的深度依赖性

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A series of soil column experiments were performed to investigate p-nitrophenol (PNP) degradation and active species diffusion behaviors in soil layers during pulsed discharge processes. The effects of organic matter, metal oxides, soil moisture, discharge voltage, treatment time, and pollutant concentration on PNP degradation and active species transport were evaluated. PNP degradation efficiency was inversely proportional to organic matter content, due to its adsorption for PNP and blocking for active species transport. For layer 0-2 mm, 99.2% of PNP was removed after 45 min of discharge treatment in column packed with quartz sand, followed in descending order, by sand (85.0%), by sandy soil (77.9%), and by clay soil (61.9%). Metal oxides affected PNP degradation through catalyzing ozone decomposition. Moist soil, higher discharge voltage, and lower PNP initial concentration benefitted active species diffusion and thus promoted PNP degradation. PNP degradation processes in soil layers followed first-order kinetic model, and the reaction rate constant decreased from 0.0458 min~(-1) in soil layer 0-2 mm to 0.0078 min~(-1) in soil layer 10-12 mm. PNP mineralization and degradation intermediates were also identified in soil layers. The distribution of intermediates in soil layers confirmed the different diffusion behaviors of active species.
机译:进行了一系列土壤柱实验,以研究脉冲放电过程中对硝基苯酚(PNP)的降解以及土壤层中活性物质的扩散行为。评估了有机物,金属氧化物,土壤湿度,放电电压,处理时间和污染物浓度对PNP降解和活性物质迁移的影响。 PNP的降解效率与有机物含量成反比,这是因为PNP吸附PNP和阻断活性物质的运输。对于0-2毫米的层,在装有石英砂的色谱柱中进行放电处理45分钟后,去除了99.2%的PNP,按降序依次为砂(85.0%),沙土(77.9%)和黏土(61.9%)。金属氧化物通过催化臭氧分解影响PNP降解。潮湿的土壤,较高的放电电压和较低的PNP初始浓度有利于活性物质扩散,从而促进PNP降解。 PNP在土壤层中的降解过程遵循一阶动力学模型,反应速率常数从0-2 mm的0.0458 min〜(-1)降低到10-12 mm的0.0078 min〜(-1)。在土壤层中还发现了PNP矿化和降解中间产物。中间体在土壤层中的分布证实了活性物质的不同扩散行为。

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