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Photodegradation of sulfadiazine catalyzed by p-benzoquinones and picric acid: application to charge transfer complexes

机译: p -苯醌和苦味酸催化的磺胺嘧啶光降解:在电荷转移复合物中的应用

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As the treatment of effluents containing the antibiotic drug sulfadiazine (SZ) is one of the challenging problems in the field of environmental chemistry, it is essential to determine the concentration of SZ by a rapid and accurate method and then find a suitable method to degrade the assayed products into harmless chemicals. The color of the charge transfer (CT) complexes developed from the reaction of SZ with 2,3-dichloro-5,6-dicyano-1,4-benzoquinone (DDQ), chloranilic acid (CHL) and picric acid (PA) was used to determine the concentration of SZ at 528, 510 and 410 nm, respectively. The Lambert–Beer's law is obeyed in the ranges of 6.80–68.06, 13.61–136.12 and 6.80–27.22 μg mL?1 for DDQ, CHL and PA complexes. The photolysis of SZ → DDQ in presence of sodium nitrite at 256 nm leads to faster degradation of SZ compared with the control experiments. This was simply spectrophotometrically followed by a decrease in the intensity of the CT band. The effect of some additives such as oxalic acid, and hematite nano particles was studied. For comparison, other π-acceptor reagents such as CHL and PA were used. About 80% of SZ is degraded in 45 min upon the illumination of SZ → DDQ at 256 nm, whereas 90 min is required in the case of CHL and PA to attain the same degradation limit.
机译:由于含有抗生素药物磺胺嘧啶(SZ)的废水的处理是环境化学领域的挑战性问题之一,因此必须通过快速准确的方法确定SZ的浓度,然后找到合适的方法降解SZ被检产品变成无害化学品。 SZ与2,3-二氯-5,6-二氰基-1,4-苯醌(DDQ),氯苯甲酸(CHL)和苦味酸(PA)反应生成的电荷转移(CT)配合物的颜色为分别用于确定528、510和410 nm处SZ的浓度。 DDQ,CHL和PA配合物的朗伯-比尔定律在6.80–68.06、13.61–136.12和6.80–27.22μgmL ?1 范围内。与对照实验相比,在亚硝酸钠存在下在256 nm处SZ→DDQ的光解导致SZ降解更快。简单地用分光光度法测量,然后降低CT谱带的强度。研究了草酸和赤铁矿纳米粒子等添加剂的作用。为了进行比较,使用了其他的π受体试剂,例如CHL和PA。在256 nm的SZ→DDQ照射下,在45分钟内降解约80%的SZ,而对于CHL和PA,要达到相同的降解极限,则需要90分钟。

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