水介质中过氧化氢(H2O2)存在时伽马辐射诱导酸性紫 49 降解

T. H. Bokhari, Aqsa Iqbal, Muhammad Usman, Maryam Al Huwayz, Mazhar Iqbal, Abid Ali, N. Alwadai, Munawar Iqbal, A. Nazir, Umer Younas
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摘要

本研究是关于在 H2O2(γ/H2O2)存在下伽马辐射对酸性紫 49(AV49)降解的影响。校准铯-137 辐射源,在 1 kGy、5 kGy 和 10 kGy 剂量范围内辐照 AV49 水溶液。结果表明,γ 辐射可有效降解 50-150 mg/L 的 AV49(85%),但 0.2-0.6 mL 浓度的 H2O2 可使降解率分别达到 90% 和 98%。在对 AV49 进行放射性水解降解时,采用了 pH 值(3、5、7 和 9)条件,结果表明 pH 值为 9 时降解效率最高。 在吸收剂量为 10 kGy 时,AV49 的浓度为 50 mg/L、H2O2 的浓度为 0.6 mL、pH 值为 9 时,最佳降解率较高(98%)。此外,还研究了各种参数对降解率的影响,如辐照剂量、pH 值、H2O2 和染料(AV49)浓度的影响。此外,总有机碳 TOC 的去除效果不如 AV49。即使在高剂量下,总氮 TN 也没有被完全去除。利用傅立叶变换红外光谱法(FTIR)和液相色谱耦合质谱法(LC-MS)作为分析技术,对 AV49 的放射性水解降解进行了分析。结果表明,所提出的染料降解方法是有效的,并有可能用于去除其他有毒污染物。
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Gamma radiation-induced degradation of Acid Violet 49 in the presence of hydrogen peroxide (H2O2) in an aqueous medium
The present study is about the effect of gamma radiations on the degradation of Acid Violet 49 (AV49) in the presence of H2O2 (γ/H2O2). The Cs-137 radiation source was calibrated to irradiate the aqueous solution of AV49 within the 1 kGy, 5 kGy & 10 kGy dose range. The results showed that 50–150 mg/L of AV49 was effectively degraded by γ radiation (85 %), however, the concentration of H2O2 in the range of 0.2–0.6 mL promoted degradation to 90 % and 98 %, respectively. It was observed that all absorption bands declined with rising irradiation dose and disappeared completely after 10 kGy applied dose. pH conditions (3, 5,7, and 9) were used in the radio-lytic degradation of AV49, the results showed that the best degradation efficiency has been found for pH 9. The optimum degradation rate is higher (98 %) with a 50 mg/L concentration of AV49, 0.6 mL H2O2, and pH 9 at a 10 kGy absorbed dose. In addition, the influence of various parameters on the rate of degradation such as the effect of irradiation dose, pH, H2O2, and dye (AV49) concentration was also studied. Furthermore, the removal of total organic carbon TOC was not as effective as that of the AV 49. Total nitrogen TN was not completely removed even at high dosage. Radio-lytic degradation of AV49 was analyzed by using Fourier transform infrared spectroscopy (FTIR) and liquid chromatography coupled to mass spectrometry (LC-MS) as an analytical technique. Results revealed that the proposed methodology for degradation of dyes is effective and probably could be applied for the removal of other toxic pollutants.
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