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Optimization of photo-Fenton process parameters on carbofuran degradation using central composite design

机译:使用中心复合设计优化光芬顿工艺参数对呋喃呋喃的降解

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Carbofuran, one of the most toxic and biorefractory carbamate compounds, is widely used in insecticides in Taiwan (9-18% of total insecticides production per year). In the present study, a central composite design experiment was used to study the effect of photo-Fenton treatment on carbofuran solution and to optimize the process variables such as carbofuran concentration (1-100 mg L~(-1)), H_2O_2 dosage rate (0.25-6 mg L~(-1) min~(-1)) and Fe~(3+) dosage (1-50 mg L~(-1)), which influenced the efficiency of carbofuran degradation and mineralization. The results indicated that all the variables investigated in this study had significant roles in the degradation and mineralization of carbofuran in solution. The carbofuran degradation and mineralization efficiencies were increased with increase in H_2O_2 dosage rate and Fe~(3+) dosage, and with decrease in carbofuran concentration. Furthermore, optimum values of both H_2O_2 dosage rate and Fe~(3+) dosage were found to shift to higher values as carbofuran concentration increased. Based on the model obtained in this study, optimum H_2O_2 dosage rate and Fe~(3+) dosage were found to be 4 mg L~(-1) min~(-1) and 20 mg L~(-1), respectively, for 51 mg L~(-1) of carbofuran concentration. Under these conditions, carbofuran was completely removed within 30 min and coupled with 78% mineralization at the end of experiment.
机译:呋喃丹是最具毒性和生物耐性的氨基甲酸酯化合物之一,在台湾广泛用于杀虫剂中(每年杀虫剂总产量的9-18%)。在本研究中,采用中央复合设计实验研究光芬顿处理对呋喃丹溶液的影响,并优化了诸如呋喃丹浓度(1-100 mg L〜(-1)),H_2O_2剂量率等工艺变量(0.25-6 mg L〜(-1)min〜(-1))和Fe〜(3+)剂量(1-50 mg L〜(-1)),影响了呋喃呋喃的降解和矿化效率。结果表明,本研究中研究的所有变量在溶液中呋喃丹的降解和矿化中均具有重要作用。随着H_2O_2剂量率和Fe〜(3+)剂量的增加以及呋喃丹浓度的降低,呋喃丹的降解和矿化效率增加。此外,发现随着呋喃丹浓度的增加,H_2O_2的添加量和Fe〜(3+)的添加量的最佳值均向较高的值移动。根据本研究获得的模型,发现最佳H_2O_2剂量比和Fe〜(3+)剂量分别为4 mg L〜(-1)min〜(-1)和20 mg L〜(-1)。的浓度为51 mg L〜(-1)的呋喃丹。在这些条件下,呋喃丹在30分钟内被完全去除,并在实验结束时结合了78%的矿化作用。

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