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Photosensitized oxidation of cyanide and sulfide species in aqueous solution.

机译:水溶液中氰化物和硫化物物种的光敏氧化。

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Two known photosensitizers, methylene blue (MB) and riboflavin (RF), were studied for application in the treatment of cyanide and sulfide bearing wastewaters. Experimental variables considered in the study included sensitizer concentration, initial substrate concentration, reaction pH, light intensity and dissolved oxygen concentration.; Both RF and MB were found to be effective in sensitizing the oxidation of dissolved sulfide species {dollar}rm(Hsb2S, HSsp-, Ssp{lcub}2-{rcub}).{dollar} The primary oxidation product was observed to be sulfate for both RF- and MB-sensitized reactions. Sulfite was observed as an intermediate product that was quickly oxidized to sulfate. MB was approximately three times faster than RF in providing 95% removal of dissolved sulfide {dollar}rm(Ssb{lcub}o{rcub}=100{dollar} mg/L). Experiments conducted to build a mass balance on sulfur in the photooxidation reaction provided 90-95% closure by measuring the amount of sulfate produced. Experiments performed under artificial lighting within the laboratory ({dollar}sim{dollar}30 W/m{dollar}sp2){dollar} exhibited the same sulfide removal rates as outdoor experiments with impinging irradiation on the order of 300-800 W/m{dollar}sp2,{dollar} thus exhibiting minimal dependence on light intensity once a threshold intensity had been attained. A Michaelis-Menten type rate equation was derived based on experimental data and used to predict sulfide removal rates during subsequent experiments.; Dye sensitized photooxidation processes involving RF and MB as sensitizers were less effective on free cyanide ion. Both RF and MB were studied at varying initial concentrations over the pH range 7-12 on solutions containing initial cyanide concentrations of 5 mg/L. MB was observed to be more effective than RF, with removal increasing with increasing MB dosage. First-order rate constants reached a maximum at pH 9.9 with MB dosed (8 mg/L) reactors, which exhibited greater than 95% degradation of free cyanide in 8-12 hours, while cyanide degradation was minimal in RF dosed reactors.
机译:研究了两种已知的光敏剂亚甲基蓝(MB)和核黄素(RF)用于处理含氰化物和硫化物的废水。研究中考虑的实验变量包括敏化剂浓度,初始底物浓度,反应pH,光强度和溶解氧浓度。发现RF和MB均可有效地促进溶解的硫化物物种{dol}} rm(Hsb2S,HSsp-,Ssp {lcub} 2- {rcub})的氧化。{dollar}观察到主要的氧化产物是硫酸盐。适用于RF和MB敏感反应。观察到亚硫酸盐作为中间产物,其被快速氧化成硫酸盐。 MB可提供95%的溶解硫化物去除率(RF)(Ssb {lcub} o {rcub} = 100 {dollar} mg / L),而MB大约比RF快三倍。为测定光氧化反应中硫的质量平衡而进行的实验通过测量产生的硫酸盐量提供了90-95%的封闭率。在实验室内的人工照明下({dollar} sim {dollar} 30 W / m {dollar} sp2){dollar}进行的实验显示出与室外实验相同的硫化物去除率,且照射量约为300-800 W / m一旦达到阈值强度,{sp2,{dol}}就表现出对光强度的最小依赖性。根据实验数据推导了Michaelis-Menten型速率方程,该方程用于预测后续实验中硫化物的去除率。涉及RF和MB作为敏化剂的染料敏化光氧化过程对游离氰化物离子的作用较小。在初始氰化物浓度为5 mg / L的溶液中,在7-12的pH范围内以不同的初始浓度研究了RF和MB。观察到MB比RF更有效,随着MB剂量的增加,去除量也增加。在MB剂量(8 mg / L)反应器中,一级速率常数在pH 9.9时达到最大值,在8-12小时内,其游离氰化物的降解率超过95%,而在RF剂量反应​​器中,氰化物的降解率最低。

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