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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Catalytic ozonation of industrial wastewater containing chloro and nitro aromatics using modified diatomaceous porous filling
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Catalytic ozonation of industrial wastewater containing chloro and nitro aromatics using modified diatomaceous porous filling

机译:改性硅藻土多孔填料催化降解含氯和硝基芳烃的工业废水

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The catalytic ozonation of industrial wastewater containing chloro and nitro aromatic compounds was carried out in a semi-continuous lab-scale reactor using Mn/Co modified porous diatomaceous ceramic fillings as catalysts. Results showed that the Mn/Co modified filling significantly enhanced the removal efficiencies of TOC and COD, as well as the ozone utilization efficiency over non-catalytic ozonation. A closer of scrutiny of catalytic ozonation system at neutral pH found that almost complete decolorization and removal of chloro and nitro pollutants were achieved after 80 min reaction time. A sharp decrease in pH and TOC and the formation of high concentrations of nitrate and chloride were observed at initial stage of ozonation. The effect of catalytic ozonation was evaluated on the subsequent biological treatment through biodegradability and acute toxicity tests. Catalytic ozonation significantly increased the biodegradability of industrial wastewater in company with toxicity reduction. Thus using coupled catalytic ozonation-sequencing batch reactor under neutral condition may be efficient and cost-effective in treating the wastewater.
机译:含有氯和硝基芳族化合物的工业废水的催化臭氧氧化反应是在半连续实验室规模的反应器中进行的,使用Mn / Co改性的多孔硅藻土陶瓷填料作为催化剂。结果表明,与非催化臭氧化相比,Mn / Co改性填料显着提高了TOC和COD的去除效率以及臭氧的利用效率。在中性pH值下,对催化臭氧化系统的进一步仔细研究发现,在80分钟的反应时间之后,几乎可以完全脱色并去除氯和硝基污染物。在臭氧化初期,观察到pH和TOC急剧下降以及高浓度硝酸盐和氯化物的形成。通过生物降解性和急性毒性试验评估了催化臭氧化对随后生物处理的影响。催化臭氧化显着提高了工业废水的生物降解性,同时降低了毒性。因此,在中性条件下使用偶合催化臭氧氧化测序间歇反应器在处理废水方面可能是有效且具有成本效益的。

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