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基于在紫外光照射下碘化物激发释放还原剂的情况下,水中的二嗪农农药的光催化降解。

Diazinon pesticide photocatalytic degradation in aqueous matrices based on reductive agent release in iodide exciting under UV Irradiation.

机构信息

Environmental Health Engineering Department, Social Determinants of Health Research Center, Saveh University of Medical Sciences, Saveh, Iran.

Environmental Health Engineering Department, School of Public Health, Tehran University of Medical Sciences, Tehran, Iran.

出版信息

Environ Sci Pollut Res Int. 2022 Aug;29(38):58078-58087. doi: 10.1007/s11356-022-19811-w. Epub 2022 Apr 1.

Abstract

Regarding the cost-effective degradation of diazinon (DIZ), the present study was conducted to develop and UV/iodide process in a photo catalyst reactor. CCD modeling applied and the results shows that the highest R-squared value (adjusted R-squared: 0.9987), the lowest P-value (2.842 e - 10), the lowest AIC (14.54), and the most insignificant lack-of-fit (0.73) belonged to the second-order model. Based on second-order model, the stationary points for time, iodide: DIZ (molar ratio %), DIZ concentration, and pH were 6.99 min, 80.15% iodide: DIZ (molar ratio %), 3.34, mg L, and pH 7.34 (- log[H]), respectively. The maximum reduction efficiency of 97.22% was obtained at the experimental conditions. The LC-MS analyses from optimal condition implied that all the DIZ molecules and its intermediates breaking to simple compounds during 15 min of processing. The data shown UI process reduced the BOD and COD levels by about 66% and 86.29% within 80 min of photoreaction, respectively. Furthermore, in kinetic investigation, with the increase in DIZ concentration, k and r increased and secondly, the conventional and PCBR reactor k increased by about respectively 17% and 50% with an increase in DIZ concentration from 5 to 15 mgL. Additionally, when the DIZ concentration increase from 5 to 15 mg L, r increased in the conventional and PCBR reactors respectively about 4.9 and 6 times. Figure-of-merit E changed from 12.66-17.41 to 7.26-10.15 kWhm for the conventional reactor, and 8.66-13.61 to 5.24-8.12 kWhm in PCBR, when the DIZ concentration increasing from 5 to 15 mg L. Consequently, in the PCBR reactor, the energy consumption reduced by 14% at 5 mg L DIZ concentration and by 60% at 15 mg L DIZ concentration. Also, total cost of the system (TCS) decreases from 4.52 to 1.46 $ in conventional reactor and 1.47 to 0.42 $ in PCBR reactor when the DIZ concentration increase from 5 to 15 mg L.

摘要

关于二嗪磷(DIZ)的经济高效降解,本研究旨在开发并在光催化剂反应器中应用 UV/碘化物工艺。应用 CCD 模型,结果表明,最高 R 平方值(调整后的 R 平方值:0.9987)、最低 P 值(2.842e-10)、最低 AIC(14.54)和最不重要的失拟(0.73)属于二阶模型。基于二阶模型,时间、碘化物:DIZ(摩尔比%)、DIZ 浓度和 pH 的稳定点分别为 6.99 分钟、80.15%碘化物:DIZ(摩尔比%)、3.34、mgL 和 pH7.34(-log[H])。在实验条件下,获得了 97.22%的最大还原效率。最佳条件下的 LC-MS 分析表明,在 15 分钟的处理过程中,所有 DIZ 分子及其中间产物均分解为简单化合物。数据表明,在 80 分钟的光反应时间内,UI 工艺分别将 BOD 和 COD 水平降低了约 66%和 86.29%。此外,在动力学研究中,随着 DIZ 浓度的增加,k 和 r 增加,其次,随着 DIZ 浓度从 5 增加到 15mgL,传统和 PCBR 反应器的 k 分别增加了约 17%和 50%。此外,当 DIZ 浓度从 5 增加到 15mgL 时,传统和 PCBR 反应器中的 r 分别增加了约 4.9 倍和 6 倍。对于传统反应器,当 DIZ 浓度从 5 增加到 15mgL 时,优值 E 从 12.66-17.41 变为 7.26-10.15kWhm,在 PCBR 中,当 DIZ 浓度从 5 增加到 15mgL 时,E 从 8.66-13.61 变为 5.24-8.12kWhm。因此,在 PCBR 反应器中,当 DIZ 浓度为 5mgL 时,能耗降低了 14%,当 DIZ 浓度为 15mgL 时,能耗降低了 60%。此外,当 DIZ 浓度从 5 增加到 15mgL 时,传统反应器中的系统总成本(TCS)从 4.52 美元降至 1.46 美元,PCBR 反应器中的 TCS 从 1.47 美元降至 0.42 美元。

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