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Degradation of Penicillin G by heat activated persulfate in aqueous solution

机译:热活化过硫酸盐水溶液降解青霉素G

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摘要

We used Heat Activated of Persulfate (HAP) to decompose Penicillin G (PEN G) in aqueous solution. The effect of pH (3–11), temperature (313–353 K), and initial concentration of Sodium Persulfate (SPS) (0.05–0.5 mM) on the decomposition level of PEN G were investigated. The residue of PEN G was determined by spectrophotometry at the wavelength of 290 nm. Also, the Chemical Oxygen Demand (COD) was measured in each experiment. The Total Organic Carbon (TOC) analysis was utilized for surveying the mineralization of PEN G. In addition, based on Arrhenius equation, the activation energy of PEN G decomposition was calculated. The results indicated that the maximum PEN G removal rate was obtained at pH 5 and by increasing the doses of SPS from 0.05 to 0.5 mM, the PEN G decomposition was enhanced. It was found that an increase in temperature is accompanied by an increase in removal efficiency of PEN G. The activation energy of the studied process was determined to be 94.8 kJ mol−1, suggesting that a moderate activation energy is required for PEN G decomposition. The TOC measurements indicate that the HAP can efficiently mineralize PEN G. Besides, the presence of the scavengers significantly suppressed the HAP process to remove the PEN G. Overall, the results of this study demonstrate that using HAP process can be a suitable method for decomposing of PEN G in aqueous solutions.
机译:我们使用过硫酸盐热活化(HAP)分解水溶液中的青霉素G(PEN G)。研究了pH(3-11),温度(313-353 K)和过硫酸钠(SPS)的初始浓度(0.05-0.5 mM)对PEN G分解水平的影响。通过分光光度法在290nm的波长下测定PEN G的残留量。另外,在每个实验中都测量了化学需氧量(COD)。利用总有机碳(TOC)分析法测量了PEN G的矿化作用。此外,基于Arrhenius方程,计算了PEN G分解的活化能。结果表明,在pH 5时可获得最大的PEN G去除率,并且通过将SPS的剂量从0.05增加到0.5μmM,PEN G的分解得到增强。发现温度升高伴随着PEN G去除效率的提高。所研究过程的活化能确定为94.8 kJ mol-1,这表明PEN G分解需要适度的活化能。 TOC测量结果表明HAP可以有效地使PEN G矿化。此外,清除剂的存在显着抑制了HAP去除PEN G的过程。总的来说,这项研究的结果表明,使用HAP工艺可以作为分解PEN G的合适方法。水溶液中的PEN G含量。

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