首页> 外文期刊>Ozone: Science & Engineering: The Journal of the International Ozone Association >Effect of Catalytic Ozonation Coupling with Activated Carbon Adsorption on Organic Compounds Removal Treating RO Concentrate from Coal Gasification Wastewater
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Effect of Catalytic Ozonation Coupling with Activated Carbon Adsorption on Organic Compounds Removal Treating RO Concentrate from Coal Gasification Wastewater

机译:催化臭氧化偶联与活性炭吸附对煤气化废水浓缩物的活性炭吸附的影响

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This paper reports a novel system of catalytic ozonation coupling with activated carbon adsorption for removing the organic compounds treating in the RO concentrate from coal gasification wastewater. The effect of ozone dosage, catalyst dosage, reaction time, influence pH, and temperature on organic compounds removal were examined for the processes. In the catalytic ozonation process, increasing solution pH, dosages ozone, and catalyst were statistically significant for improving the performance. In addition, the high salinity with chloride concentration of 15 g/L could reduce the catalyst specific surface area by 18%. Thus, high salinity showed negative influence on the catalytic effect in TOC removal. Regarding activated carbon adsorption process, modified activated carbon by NaOH revealed advantages in adsorbing organic compounds treating catalytic ozonation effluent. With the ozone dosage of 120 mg/L, catalyst dosage of 2.0 g/L, catalytic ozonation reaction time of 1 h, and modified activated carbon adsorption time of 1 h, the average TOC removal efficiencies were maintained at the stable level of 58% with the TOC concentration of 26 mg/L.
机译:本文报道了一种新型催化臭氧化偶联与活性炭吸附的新型系统,用于从煤气化废水中除去在RO浓缩物中处理的有机化合物。臭氧剂量,催化剂剂量,反应时间,影响pH和对有机化合物的温度的影响进行了研究。在催化臭氧化过程中,增加溶液pH,剂量臭氧和催化剂对于改善性能有统计学意义。另外,氯化物浓度为15g / L的高盐度可以将催化剂比表面积减少18%。因此,高盐度对TOC去除的催化效果显示出负面影响。关于活性炭吸附过程,NaOH改性活性炭在吸附有机化合物处理催化臭氧化流出物中的优点。臭氧剂量为120mg / L,催化剂剂量为2.0g / L,催化臭氧化反应时间1小时,并改性活性炭吸附时间为1小时,平均TOC去除效率保持在稳定水平58% TOC浓度为26 mg / L.

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