By using time-resolved kinetic spectrophotometry and pulse radiolysis technique, the oxidation of Phe by SO4- radical has been investigated both in aqueous and water/acetonitrilemixed solutions. The results reveal tha...By using time-resolved kinetic spectrophotometry and pulse radiolysis technique, the oxidation of Phe by SO4- radical has been investigated both in aqueous and water/acetonitrilemixed solutions. The results reveal that attack of the oxidizing SO4- radical on Phe leads directlyto the formation of Phe cation radical 3 with a strong absorption peak at 310 nm, then it proceeds in three competitive reactions via either hydroxylation, deprotonation or decarboxylation, which were found to be strongly dependent upon the ionization state of the substitutes -COOH and -NH2 and the nature of the solvents. Decarboxylation takes place only when the carboxyl group is deprotonated. At high pH deprotonation of Phe cation radical 3 is much easier to occur than that in neutral or acid solutions. Moreover, with addition of acetonitrile, deprotonation is more predominant than hydroxylation, whereas in aqueous solutions hydroxylation is much easier to occur.展开更多
建立了一种用离子色谱法同时测定Na_3PO_4·12H_2O中的Cl^-和SO_4^(2-)的分析方法。该方法采用分离时间20min,分离度为3.02的Metrosep A Supp 4 250/4.0型色谱柱,柱温为35℃,流速为0.8mL/min。两种离子的标准曲线的相关系数达到了0....建立了一种用离子色谱法同时测定Na_3PO_4·12H_2O中的Cl^-和SO_4^(2-)的分析方法。该方法采用分离时间20min,分离度为3.02的Metrosep A Supp 4 250/4.0型色谱柱,柱温为35℃,流速为0.8mL/min。两种离子的标准曲线的相关系数达到了0.9999。Cl^-和SO_4^(2-)的稀释液的测定结果的相对标准偏差分别为1.02%,2.26%;检出限分别为0.010mg/L,0.011mg/L;加标回收率分别96.0%,94.0%。与HG/T 2517-2009中Cl^-和SO_4^(2-)的测定方法相比,该方法的相对误差仅为分别为2.78%和0.00%。因此,该方法具有较高的精密度和准确度,且分析时间短,方法简单,可作为缓蚀阻垢剂Na_3PO_4·12H_2O中的Cl^-和SO_4^(2-)含量分析的常规方法。展开更多
基金S. J. Zhang thanks Professor K. Bobrowski for his instructive discussion concerning this work. This work was supported by the National Natural Science Foundation of China (Grant No. 39800036).
文摘By using time-resolved kinetic spectrophotometry and pulse radiolysis technique, the oxidation of Phe by SO4- radical has been investigated both in aqueous and water/acetonitrilemixed solutions. The results reveal that attack of the oxidizing SO4- radical on Phe leads directlyto the formation of Phe cation radical 3 with a strong absorption peak at 310 nm, then it proceeds in three competitive reactions via either hydroxylation, deprotonation or decarboxylation, which were found to be strongly dependent upon the ionization state of the substitutes -COOH and -NH2 and the nature of the solvents. Decarboxylation takes place only when the carboxyl group is deprotonated. At high pH deprotonation of Phe cation radical 3 is much easier to occur than that in neutral or acid solutions. Moreover, with addition of acetonitrile, deprotonation is more predominant than hydroxylation, whereas in aqueous solutions hydroxylation is much easier to occur.