Huang Qingguo, Tang Jixin, Weber Walter J
Department of Chemical Engineering, Energy and Environment Program, The University of Michigan, Ann Arbor, MI 48109-2099, USA.
Water Res. 2005 Aug;39(13):3021-7. doi: 10.1016/j.watres.2005.05.005.
The effects of solution pH and background ion types and concentrations on the precipitation of polymeric products generated in the catalytically facilitated oxidative coupling of phenol were investigated systematically. The coupling reactions mediated by horseradish peroxidase were carried out under a specific predetermined experimental condition. Acids, bases, and/or selected salts of ions having different valences were then added to the resulting product solutions to adjust pH and ionic conditions. Subsequent analyses of product distributions between dissolved and precipitated forms revealed that ionic conditions and pH significantly impact those distributions, and associated mechanisms are discussed. The findings reported will assist feasibility assessments and process optimization with respect to engineering applications of catalyzed oxidative coupling reactions for wastewater treatment and soil decontamination.
系统研究了溶液pH值、背景离子类型和浓度对苯酚催化促进氧化偶联反应中生成的聚合物产物沉淀的影响。在特定的预定实验条件下进行辣根过氧化物酶介导的偶联反应。然后向所得产物溶液中加入酸、碱和/或具有不同价态的选定离子盐,以调节pH值和离子条件。随后对溶解态和沉淀态产物分布的分析表明,离子条件和pH值对这些分布有显著影响,并对相关机制进行了讨论。所报告的研究结果将有助于对催化氧化偶联反应在废水处理和土壤净化工程应用方面的可行性评估和工艺优化。