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Development of HPLC/ESI-MS and HPLC/~(1)H NMR Methods for the Identification of Photocatalytic Degradation Products of Iodosulfuron

机译:HPLC / ESI-MS和HPLC /〜(1)H NMR方法开发用于鉴定碘磺隆的光催化降解产物

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In the present study, HPLC/ESI-MS and stopped-flow HPLC/~(1)H NMR methods were developed and applied to separate and characterize the byproducts arising from TiO_(2)-catalyzed photodegradation of the herbicide iodosulfuron methyl ester (IOME) in aqueous solution under UV irradiation. Prior to identification, irradiated solutions of IOME (200 and 1000 mg(centre dot)L~(-1)) were concentrated by solid-phase extraction using two cartridges: Isolute C_(18) and Isolute ENV~(+). Analytical separation was achieved on a C_(18) reversed-phase column with ACN/H_(2)O (HPLC/MS) or ACN/D_(2)O (HPLC/NMR) as mobile phase and a linear gradient with a chromatographic run time of 35 min. The combination of UV and MS data allowed the structural elucidation of more than 20 degradation products, whereas ~(1)H NMR data permitted an unequivocal confirmation of the identities of major products and the differentiation of several positional isomers, in particular, the hydroxylation isomers. The obtained results permitted us to propose a possible degradation scheme and to put in evidence the presence of privileged sites for the attack of OH radicals. This work shows, for the first time, the application of combined HPLC with UV, MS, and NMR detection for complete structural elucidation of photocatalytic degradation products, and it will be of particular value in studies on the elimination of pollutants in aqueous solutions by photocatalysis.
机译:在本研究中,开发了HPLC / ESI-MS和停止流HPLC /〜(1)H NMR方法,并将其用于分离和表征由TiO_(2)催化的除草剂碘磺隆甲基酯(IOME)光降解产生的副产物。 )在紫外线照射下的水溶液中。在鉴定之前,使用两个色谱柱(Isolute C_(18)和Isolute ENV〜(+))通过固相萃取浓缩IOME的辐照溶液(200和1000 mg(中心点)L〜(-1))。在C_(18)反相色谱柱上以ACN / H_(2)O(HPLC / MS)或ACN / D_(2)O(HPLC / NMR)为流动相并通过色谱进行线性梯度分析运行时间为35分钟。 UV和MS数据的组合可对20多种降解产物进行结构解析,而〜(1)H NMR数据可明确确认主要产物的身份以及几种位置异构体(尤其是羟基化异构体)的区别。获得的结果使我们能够提出一种可能的降解方案,并证明存在OH自由基进攻的特权位点。这项工作首次显示了结合HPLC,UV,MS和NMR检测的应用,以完整地阐明光催化降解产物的结构,在通过光催化消除水溶液中的污染物的研究中将具有特殊价值。 。

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