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Evaluation of photolysis and hydrolysis of atrazine and its first degradation products in the presence of humic acids

机译:腐殖酸存在下阿特拉津及其首批降解产物的光解和水解评价

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Relative importance of hydrolysis and photolysis of atrazine and its degradation products in aqueous solutions with dissolved humic acids (HA) has been assessed under exposure to sunlight and under UV irradiation. Quantum yield for direct photolysis of atrazine at 254 nm was 0.037 mol photon(-1), the reaction order was 0.8. Atrazine, desethylatrazine and desisopropylatrazine converted to their 2-hydroxy analogs with rate constants 0.02-0.08 min(-1) in clear solutions, while addition of HA (300 mg L-1) caused a 10-fold increase in rate constants. Hydroxyatrazine was not degraded. No evidence of photo-Fenton reaction was found. Under exposure to solar light, atrazine, desethylatrazine and desisopropylatrazine were converted to 2-hydroxy analogs only at pH 2 because of acid hydrolysis and possible contribution of photolysis. At lower HA concentration, only their light-shielding effect was noticed, while at higher concentrations, HA-catalysed hydrolysis prevailed. Hydroxyatrazine concentration diminished at all pH values in solutions without HA exposed to sunlight. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在暴露于阳光和紫外线照射下,已评估了r去津及其降解产物在腐殖酸(HA)水溶液中的水解和光解的相对重要性。 r去津在254 nm处直接光解的量子产率为0.037 mol光子(-1),反应级为0.8。在透明溶液中,阿特拉津,去乙基阿特拉津和去异丙基阿特拉津以速率常数0.02-0.08 min(-1)转换为它们的2-羟基类似物,而添加HA(300 mg L-1)导致速率常数增加10倍。羟ya嗪未降解。没有发现光芬顿反应的证据。在暴露于太阳光下,由于酸水解和可能的光解作用,,去津,去乙基去去津和去异丙基去去津仅在pH 2时才转化为2-羟基类似物。在较低的HA浓度下,仅观察到其遮光效果,而在较高的HA浓度下,占主导地位的是HA催化水解。在没有HA暴露在阳光下的溶液中,在所有pH值下,羟嗪的浓度都会降低。 (C)2004 Elsevier Ltd.保留所有权利。

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