首页> 外文期刊>The Science of the Total Environment >Comparison of UV/Persulfate and UV/H_2O_2 for the removal of naphthenic acids and acute toxicity towards Vibrio fischeri from petroleum production process water
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Comparison of UV/Persulfate and UV/H_2O_2 for the removal of naphthenic acids and acute toxicity towards Vibrio fischeri from petroleum production process water

机译:UV /过硫酸盐和UV / H_2O_2去除石油生产工艺用水中环烷酸和对费氏弧菌的急性毒性的比较

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The ultraviolet light-activated persulfate process (UV/Persulfate) has received much attention in recent years as a novel advanced oxidation method for the treatment of municipal and industrial wastewater. This work investigated the UV/Persulfate and UV/H2O2 processes for the treatment of real oil sands process water (OSPW) at ambient pH condition using a medium pressure mercury lamp (emission between 200 and 530 nm). The degradation performances towards fluorophore organic compounds and naphthenic acids (NAs) in OSPW were evaluated using synchronous fluorescence spectrometry and ultra performance liquid chromatography time-of-flight mass spectrometry, respectively. Compared to the UV/H2O2 process, the UV/Persulfate process exhibited higher efficiency to remove both NAs and fluorophore organic compounds. Under 40 min of UV exposure and incident irradiance of 3.50 mW cm(-2), fluorophore organic compounds were greatly degraded by UV/Persulfate (2 mM) and two- and three-ring fused organics were completely removed. 59.4%, 83.8% and 92.2% of O-2-NAs in OSPW were removed with persulfate dosages of 0.5, 2, and 4 mM, respectively. The removal efficiency decreased along with the number of oxygen atoms in NAs (83.8%, 49.3%, and 46.8% for O-2-, O-3-, and O-4-NAs, respectively) with 2 mM of persulfate, because of the formation of oxidized NAs in the same process. The structure-reactivity of O-2-NA compounds fitted pseudo-first order kinetics in UV/Persulfate process with the rate constants ranging from 0.0156 min(-1) to 0.1511 min(-1). NAs with higher carbon numbers and double bond equivalence were more reactive in the UV/Persulfate oxidation process. The acute toxicity of OSPW to Vibrio fischeri was significantly reduced after the UV/Persulfate and UV/H2O2 treatments. Overall results demonstrated that the UV/Persulfate oxidation can be an effective alternative for future reclamation of OSPW. (C) 2019 Elsevier B.V. All rights reserved.
机译:近年来,紫外线活化过硫酸盐工艺(UV / Persulfate)作为一种新型的先进氧化方法用于处理市政和工业废水,受到了广泛的关注。这项工作研究了使用中压汞灯(发射波长在200至530 nm之间)在环境pH条件下处理真油砂工艺用水(OSPW)的UV /过硫酸盐和UV / H2O2工艺。使用同步荧光光谱法和超高效液相色谱飞行时间质谱法分别评估了OSPW中对荧光团有机化合物和环烷酸(NAs)的降解性能。与UV / H2O2工艺相比,UV /过硫酸盐工艺显示出更高的去除NAs和荧光团有机化合物的效率。在40分钟的紫外线照射下和3.50 mW cm(-2)的入射辐射下,荧光团有机化合物被UV /过硫酸盐(2 mM)大大降解,并且完全去除了两环和三环稠合有机物。用过硫酸盐剂量分别为0.5、2和4 mM的OSPW中的O-2-NA分别去除了59.4%,83.8%和92.2%。在过硫酸盐浓度为2 mM的情况下,去除效率随NA中的氧原子数降低(O-2-,O-3-和O-4-NA分别为83.8%,49.3%和46.8%),因​​为同一过程中形成氧化的NA的过程O-2-NA化合物的结构反应性在UV /过硫酸盐过程中符合拟一级动力学,速率常数范围为0.0156 min(-1)至0.1511 min(-1)。具有较高碳原子数和双键当量的NA在UV /过硫酸盐氧化过程中更具活性。紫外线/过硫酸盐和紫外线/过氧化氢处理后,OSPW对费氏弧菌的急性毒性显着降低。总体结果表明,紫外线/过硫酸盐氧化法可以作为OSPW未来回收的有效替代方法。 (C)2019 Elsevier B.V.保留所有权利。

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