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Treatment of petroleum refinery wastewater using titanium dioxide-mediated photocatalysis.

机译:二氧化钛介导的光催化处理炼油厂废水。

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摘要

TiO2-mediated Photocatalytic Degradation (PCD) of both individual and mixed aqueous systems of S2O3, p-cresol, NH4+, CN and SCN was studied under several different conditions. Significant degradation of the target pollutants, for individual PCD systems, was observed. For the individual systems, the PCD rates were obtained to be a function of pH. For the S2O3 and p-cresol studies higher PCD rates were obtained at lower pH values whereas for the NH4+, CN and SCN systems, higher PCD rates were obtained at higher pH values. Oil was typically noted to decrease the S2O3 and p-cresol degradation. For the mixed studies, varying PCD trends were noted. For the tertiary NH 4+/S2O3/p-cresol system at pH 10, the target pollutant species were found to be preferentially degraded in the following order: NH4+ > S2 O3 > p-cresol. Also for the pH 10 experiments, the following trend was noted for overall NH4+ removal results at 1h of illumination: S2O3/p-cresol > S2O3 > p-cresol > CN > SCN > NH 4+-only. However at pH 12 this trend almost reversed for results at 6h: S2O3 p-cresol CN SCN NH4+-only. At pH 12 for the 10 mg/l CN system, complete substrate removal was obtained at about 1h whereas for the 20 mg/l CN this time almost doubled. For the combined effect of NH 4+ and CN on SCN degradation at pH value of 12, a consistent decrease in SCN removal was obtained with the addition of CN and also CN/NH 4+ together. However a significant SCN removal was still noted, indicating efficiency of the PCD process to degrade SCN under several mix system scenarios.
机译:在几种不同条件下研究了TiO2介导的S2O3,对甲酚,NH4 +,CN和SCN的单独和混合水体系的光催化降解(PCD)。对于单个PCD系统,观察到目标污染物的显着降解。对于单个系统,PCD速率是pH的函数。对于S2O3和对甲酚研究,在较低pH值下可获得较高的PCD速率,而对于NH4 +,CN和SCN系统,在较高pH值下可获得较高的PCD速率。通常注意到,油可减少S2O3和对甲酚的降解。对于混合研究,注意到了不同的PCD趋势。对于pH值为10的叔NH 4 + / S2O3 /对甲酚系统,发现目标污染物种类按以下顺序优先降解:NH4 +> S2 O3>对甲酚。同样在pH 10实验中,在光照1h时去除总的NH4 +的结果有以下趋势:S2O3 /对甲酚> S2O3>对甲酚> CN> SCN>仅NH 4+。但是,在pH 12时,这种趋势在6h时几乎完全相反:仅S2O3 <对甲酚

著录项

  • 作者

    Selimuzzaman, Sikder Md.;

  • 作者单位

    King Fahd University of Petroleum and Minerals (Saudi Arabia).;

  • 授予单位 King Fahd University of Petroleum and Minerals (Saudi Arabia).;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2006
  • 页码 102 p.
  • 总页数 102
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:40:31

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