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Mineralization of CI. Reactive Blue 19 by ozonation combined with sonolysis: Performance optimization and degradation mechanism

机译:CI的矿化。臭氧化与超声分解相结合制备活性蓝19:性能优化和降解机理

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摘要

Mineralization of an anthraquinone dye, CI. Reactive Blue 19 (RB19), by single ozonation, single sonolysis, and ozonation combined with sonolysis (O3/US) was carried out in a laboratory-scale experiment. O3/US treatment rendered a more effective result than the other two methods. The effect of several operational parameters, including initial dye concentration, pH, ozone dose, and ultrasonic energy density, on the reduction of total organic carbon (TOC) was also investigated. The concentrations of related anions (maleic acid, oxalic acid, acetic acid, formic acid, nitrite ion, nitrate ion and sulfate ion) and the ammonium ion during mineralization were detected by ion chromatography (IC) and the ammonia-Nessler's reagent colormetric method, respectively. Other carbon based intermediates (3,6-dinitrosocyclohexa-1,4-diene, aniline, phenol, benzo-1,4-quinoe, phthalic acid, butene diacid, oxalic acid, and acetic acid) were detected by gas chromatography/mass spectrometry (GC/MS). Based on the results of these analyses, we propose a possible degradation pathway of RB19 during the O3/US process.
机译:蒽醌染料CI的矿化作用。在实验室规模的实验中,通过单次臭氧化,单次超声分解和臭氧化与超声分解法(O3 / US)结合,制成了活性蓝19(RB19)。 O3 / US处理比其他两种方法更有效。还研究了几个操作参数,包括初始染料浓度,pH,臭氧剂量和超声能量密度,对减少总有机碳(TOC)的影响。通过离子色谱法(IC)和氨-纳氏试剂比色法检测矿化过程中相关阴离子(马来酸,草酸,乙酸,甲酸,亚硝酸根离子,硝酸根离子和硫酸根离子)和铵离子的浓度,分别。通过气相色谱/质谱法检测了其他碳基中间体(3,6-二亚硝基环己-1,4-二烯,苯胺,苯酚,苯并-1,4-喹啉,邻苯二甲酸,丁烯二酸,草酸和乙酸) (GC / MS)。基于这些分析的结果,我们提出了在O3 / US过程中RB19可能的降解途径。

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