首页> 外文期刊>Fresenius Environmental Bulletin >REMOVAL OF THIOCYANATE FROM SYNTHETIC WASTEWATER USING TiO_2 MEDIATED PHOTOCATALYTIC DEGRADATION PROCESS
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REMOVAL OF THIOCYANATE FROM SYNTHETIC WASTEWATER USING TiO_2 MEDIATED PHOTOCATALYTIC DEGRADATION PROCESS

机译:TiO_2介导光催化降解法脱除合成废水中的硫氰酸盐。

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摘要

The present work investigated aqueous phase thiocy-anate (SCN~) removal using the titanium dioxide (TiO_2) assisted photocatalytic degradation (PCD) process. Preliminary results showed that use of 15 W UV lamp yields much higher SCN" removal efficiency as compared to 8 W UV lamp, considering which further PCD work was conducted using the 15 W UV lamp. Results from the present studies also showed that SCN" removal at 4 h reaction time increases with an increase in pH, i.e., pH 12 > pH 7 > pH 4, with 92% substrate removal noted at pH 12. The reaction intermediates analysis results indicated that at pH 4 most SCN' that is removed from the aqueous phase is converted into CN~- that actually showed a constant increase with time. Furthermore the SO_4~(2-)-S formation results at pH 4 also followed the overall SCN-S portion removed. Though the pH 7 reaction intermediates formation findings showed a significant SO_4~(2-), CN~- and OCN~- production, however the CN~- results showed reaching a plateau, with somewhat smaller values compared to respective pH 4 data. Nevertheless the CN~- formation results at pH 12 first showed an increase that was followed by a decrease. Also the OCN~- species accounted for most SCN-N removed at pH 12 and 4 h reaction time. The present results indicated that with a careful control of process pH the PCD technology can yield high SCN~- removal efficiency under a varying set of conditions.
机译:本工作研究了使用二氧化钛(TiO_2)辅助的光催化降解(PCD)工艺去除水相硫代氰酸酯(SCN〜)。初步结果表明,考虑到使用15 W紫外线灯进行的进一步PCD工作,与8 W紫外线灯相比,使用15 W紫外线灯可产生更高的SCN“去除效率。本研究结果还表明,SCN”去除效果在4小时时,反应时间随pH的增加而增加,即pH 12> pH 7> pH 4,在pH 12时记录到92%的底物去除。反应中间体分析结果表明,在pH 4时,从水相转化为CN〜-,实际上随时间不断增加。此外,在pH 4下形成SO_4-(2-)-S的结果也跟随着去除了整个SCN-S部分。尽管pH 7反应中间体的形成结果显示出明显的SO_4〜(2-),CN〜-和OCN〜-生成,但是CN〜-结果却达到了平稳期,与相应的pH 4数据相比值稍小。然而,在pH 12时CN〜-形成的结果首先显示出增加,然后减少。同样,在pH 12和4 h反应时间中,OCN-占了大部分去除的SCN-N的原因。目前的结果表明,通过对工艺pH值的仔细控制,PCD技术可以在各种条件下产生较高的SCN〜-去除效率。

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