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UV185+254 nm photolysis of typical thiol collectors: decomposition efficiency mineralization and formation of sulfur byproducts

机译:典型的硫醇捕集剂的UV185 + 254 nm光解:分解效率矿化和硫副产物的形成

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摘要

The decomposition of toxic flotation reagents upon UV185+254 nm irradiation was attractive due to operational simplicity and no dosage of oxidants. In this work, the degradation of typical thiol collectors (potassium ethyl xanthate (PEX), sodium diethyl dithiocarbamate (SDD), O-isopropyl-N-ethyl thionocarbamate (IET) and dianilino dithiophoshoric acid (DDA)) was investigated by UV185+254 nm photolysis. The degradation efficiencies and mineralization extents of collectors were assessed. The formation of CS2 and H2S byproducts was studied, and the mechanisms of collector degradation were proposed under UV185+254 nm irradiation. The PEX, SDD and IET were decomposed with nearly 100% removal upon 75 min of UV185+254 nm irradiation. The decomposition rate constants decreased in the order SDD > PEX > IET ≫ DDA, and the DDA was the refractory collector. After 120 min of UV185+254 nm irradiation, 15−45% of carbon and 25−75% of sulfur of collectors were completely mineralized, and the mineralization extent decreased in the order PEX > SDD > IET > DDA. The percentage of gaseous sulfur (CS2 and H2S) ranged from 0.48 to 4.85% for four collectors, showing the fraction of emitted sulfur byproducts was small. The aqueous CS2 concentration increased in the first 10−20 min, and was decreased to a low level of 0.05–0.1 mg l−1 at 120 min. Two mechanisms, i.e. direct UV254 nm photolysis and indirect oxidation with free radicals, were responsible for collector decomposition in the UV185+254 nm photolysis.
机译:由于操作简便且不添加氧化剂,有毒浮选剂在UV185 + 254 nm辐射下的分解很有吸引力。在这项工作中,通过UV185 + 254研究了典型的硫醇捕收剂(乙基黄原酸钾(PEX),二乙基二硫代氨基甲酸钠(SDD),O-异丙基-N-乙基硫代氨基甲酸酯(IET)和二苯并二硫代次膦酸(DDA))的降解。纳米光解。评估收集器的降解效率和矿化程度。研究了CS2和H2S副产物的形成,并提出了在UV185 + 254 nm辐照下收集极降解的机理。在75分钟的UV185 + 254 nm照射下,PEX,SDD和IET分解,去除率接近100%。分解速率常数按SDD> PEX> IET≫ DDA的顺序降低,并且DDA是耐火材料收集器。在UV185 + 254 nm照射120分钟后,收集器的15-45%的碳和25-75%的硫被完全矿化,矿化程度按PEX> SDD> IET> DDA的顺序降低。对于四个收集器,气态硫(CS2和H2S)的百分比范围为0.48至4.85%,这表明排放的硫副产物的比例很小。在最初的10-20分钟内,CS2水溶液的浓度增加,并在120分钟时降低至0.05-0.1 mg l -1 的低水平。两种机理,即直接UV254 nm光解和自由基的间接氧化,是导致UV185 + 254 nm光解中集电极分解的原因。

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