Dror Ishai, Schlautman Mark A
Department of Environmental Science and Energy Research, Weizmann Institute of Science, P.O. Box 26, Rehovot 76100, Israel.
Chemosphere. 2004 Dec;57(10):1505-14. doi: 10.1016/j.chemosphere.2004.08.078.
Reductive dechlorination of chlorinated organic contaminants is an effective approach to treat this widespread group of environmentally hazardous substances. Metalloporphyrins can be used to catalyze reduction reactions by shuttling electrons from a reducing agent (electron donor) to chlorinated organic contaminants, thus rendering them to non-chlorinated acetylene, ethylene or ethane as major products. Iron, nickel and vanadium oxide tetraphenyl porphyrins (TPPs) were used as models of non-soluble metalloporphyrins that are common in subsurface environments, and hence may inflect on the ability to use natural ones. The effect of cosolvents on metalloporphyrins is demonstrated to switch the reduction of tetrachlorethylene (PCE) from no reaction to complete PCE transformation within 24 h and the production of final non-chlorinated compounds. Variations in product distributions for the different metalloporphyrins indicate that changes in the core metal can influence reaction rates and effective pathways. Furthermore, different cosolvents can generate varied product distributions, again suggesting that different pathways and/or rates are operative in the reduction reactions. Comparison of different cosolvent effects on PCE reduction using vitamin B12--a soluble natural metalloporphyrinogen--as the catalyst shows less pronounced differences between reactions in various cosolvent solutions versus only aqueous solution.
对氯化有机污染物进行还原脱氯是处理这类广泛存在的环境有害物质的有效方法。金属卟啉可通过将电子从还原剂(电子供体)传递给氯化有机污染物来催化还原反应,从而使其主要生成非氯化的乙炔、乙烯或乙烷。铁、镍和钒氧化物四苯基卟啉(TPPs)被用作地下环境中常见的不溶性金属卟啉模型,因此可能会影响使用天然金属卟啉的能力。已证明助溶剂对金属卟啉的作用可使四氯乙烯(PCE)的还原反应从无反应转变为在24小时内实现PCE完全转化并生成最终的非氯化化合物。不同金属卟啉产物分布的变化表明,核心金属的变化会影响反应速率和有效途径。此外,不同的助溶剂可产生不同的产物分布,这再次表明还原反应中存在不同的途径和/或速率。使用维生素B12(一种可溶性天然金属卟啉原)作为催化剂,比较不同助溶剂对PCE还原的影响,结果显示与仅在水溶液中的反应相比,在各种助溶剂溶液中的反应之间差异不太明显。