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Sonoelectrochemical Degradation of Propyl Paraben: An Examination of the Synergy in Different Water Matrices

机译:对羟基苯甲酸丙酯的声电化学降解:不同水基质中协同作用的检查

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摘要

The synergistic action of anodic oxidation using boron-doped diamond and low-frequency ultrasound in different water matrices and operating conditions for the decomposition of the emerging contaminant propyl paraben was investigated. The degree of synergy was found to decrease with an increase in current in the range 1.25–6.25 mA/cm or the ultrasound power until 36 W/L, where a further decrease was observed. Despite the fact that the increased propyl paraben concentration decreased the observed kinetic constant for both the separated and the hybrid process, the degree of synergy was increased from 37.3 to 43.4% for 0.5 and 2 mg/L propyl paraben, respectively. Bicarbonates (100–250 mg/L) or humic acid (10–20 mg/L) enhanced the synergy significantly by up to 55.8%, due to the higher demand for reactive oxygen species. The presence of chloride ions decreased the observed synergistic action in comparison with ultrapure water, possibly due to the electro-generation of active chlorine that diffuses to the bulk solution. The same behavior was observed with the secondary effluent that contained almost 68 mg/L of chlorides. The efficiency was favored in a neutral medium, while the hybrid process was delayed in alkaline conditions.
机译:研究了掺硼金刚石和低频超声在不同水基质和操作条件下阳极氧化对新出现的对羟基苯甲酸丙酯分解的协同作用。发现随着电流在1.25–6.25 mA / cm范围内或超声功率的增加,协同作用的程度会降低,直到36 W / L,然后观察到进一步降低。尽管增加了对羟基苯甲酸丙酯的浓度会降低分离过程和混合过程中观察到的动力学常数,但对于0.5和2 mg / L的对羟基苯甲酸丙酯,协同作用的程度分别从37.3%增加到43.4%。碳酸氢盐(100–250 mg / L)或腐植酸(10–20 mg / L)增强了协同作用,增幅高达55.8%,这是由于对活性氧的需求增加。与超纯水相比,氯离子的存在降低了观察到的协同作用,这可能是由于活性氯的电子扩散到了本体溶液中。对于包含近68 ​​mg / L氯化物的次级流出物,观察到相同的行为。在中性介质中,效率得到了支持,而在碱性条件下,混合过程被延迟了。

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