Department of Civil and Environmental Engineering, 3-141 Markin/CNRL Natural Resources Engineering Facility, University of Alberta, Edmonton, Alberta, Canada T6G 2W2.
Water Res. 2010 Apr;44(7):2221-8. doi: 10.1016/j.watres.2009.12.045. Epub 2010 Jan 7.
The degradation of two pesticides, bromoxynil and trifluralin, was investigated in ultrapure and natural water solutions under ultraviolet (UV) light and a combination of UV and hydrogen peroxide (H(2)O(2)). The effect of pH on the photooxidation of the pesticides was also studied. The results indicated that under direct photolysis with monochromatic light at 253.7 nm and different conditions, the photochemical rates followed first-order kinetics, with fluence-based rate constants ranging from 9.15 x 10(-4) to 6.37 x 10(-3) cm(2) mJ(-1) and 7.63 x 10(-3) to 1.47 x 10(-2) cm(2) mJ(-1) for bromoxynil and trifluralin, respectively. Quantum yields, in the range of 0.08-0.25 for bromoxynil and 0.12-0.72 for trifluralin, were observed in experiments using ultrapure water. The study also found that the UV/H(2)O(2) process enhanced the oxidation rate in comparison to direct photolysis. A 90% degradation with UV dose of 333 and 188 mJ cm(-2) was achieved for bromoxynil and trifluralin, respectively, in natural water, in presence of 8.8 x 10(-4) M H(2)O(2). To assess the aquatic toxicity, the Microtox 81.9% screening test protocol was used before and after treatment. The test results indicated a decrease in the acute toxicity of the samples after treatment for both pesticides.
研究了溴苯腈和氟乐灵两种农药在超纯水和天然水溶液中在紫外(UV)光和 UV 与过氧化氢(H(2)O(2))联合作用下的降解情况。还研究了 pH 值对农药光氧化的影响。结果表明,在 253.7nm 单色光下直接光解并在不同条件下,光化学反应遵循一级动力学,基于辐照的速率常数范围分别为 9.15×10(-4)至 6.37×10(-3)cm(2)mJ(-1)和 7.63×10(-3)至 1.47×10(-2)cm(2)mJ(-1),分别用于溴苯腈和氟乐灵。在使用超纯水的实验中,观察到溴苯腈的量子产率在 0.08-0.25 之间,氟乐灵的量子产率在 0.12-0.72 之间。研究还发现,与直接光解相比,UV/H(2)O(2) 工艺提高了氧化速率。在天然水中,在 8.8×10(-4)M H(2)O(2)存在下,溴苯腈和氟乐灵分别在 UV 剂量为 333 和 188mJ cm(-2)下实现了 90%的降解。为了评估水生毒性,在处理前后使用了 Microtox 81.9%筛选测试方案。测试结果表明,两种农药处理后样品的急性毒性均降低。