Fang Yuanxiang, Al-Abed Souhail R
National Risk Management Research Laboratory, U.S. Environmental Protection Agency, 26 W. Martin Luther King Dr., Cincinnati, Ohio 45268, USA.
Environ Sci Technol. 2008 Sep 15;42(18):6942-8. doi: 10.1021/es800805y.
The rate of 2-chlorobiphenyl dechlorination by palladized iron (Fe/ Pd) decreased with increasing pH until pH > 12.5. Iron corrosion potential (Ec) and current (jc), obtained from polarization curves of a rotating disk electrode of iron, followed the Tafel equation at pH < or = 5.5 and pH > or = 9.5. The pH dependence of the dechlorination rate constant (k1) suggests four pH regimes. In the low pH regime (3-5.5), /Ec/ and je decreased with increasing pH and k1 was linearly correlated to /Ec/ and jc0.5. The correlation between k1 and jc0.5 indicates direct involvement of active hydrogen species (on the Pd surface) in PCB dechlorination. In the mid pH regime (5.5-9.5), no significant effect of pH was evident on the values of k1, je, and Ec, a combined result of limiting anodic oxidation of iron to an intermediate product (iron hydroxide) and a proton-independent overall reaction. Both /Ec/ and jc increased significantly as pH increased from 9.5 to 14. A cleartrough of the k1 values in solutions of pH between 12 and 13 and the mismatch between the kinetic and corrosion data suggest two pH regimes (9.5-12.5 and 12.5-14) of different corrosion mechanisms.
钯铁(Fe/Pd)对2-氯联苯的脱氯速率随pH值升高而降低,直至pH>12.5。从铁旋转圆盘电极的极化曲线获得的铁腐蚀电位(Ec)和电流(jc),在pH≤5.5和pH≥9.5时遵循塔菲尔方程。脱氯速率常数(k1)对pH的依赖性表明存在四个pH区域。在低pH区域(3-5.5),/Ec/和je随pH升高而降低,且k1与/Ec/和jc0.5呈线性相关。k1与jc0.5之间的相关性表明(钯表面的)活性氢物种直接参与了多氯联苯的脱氯反应。在中等pH区域(5.5-9.5),pH对k1、je和Ec的值没有明显影响,这是铁阳极氧化限制为中间产物(氢氧化铁)和与质子无关的总反应的综合结果。当pH从9.5增加到14时,/Ec/和jc均显著增加。pH在12至13之间的溶液中k1值明显下降,以及动力学数据与腐蚀数据不匹配,表明存在两种不同腐蚀机制的pH区域(9.5-12.5和12.5-14)。