Department of Biomedical Engineering and Environmental Sciences, National Tsing Hua University, 101, Sec. 2, Kuang Fu Road, Hsinchu 30013, Taiwan.
Department of Biomedical Engineering and Environmental Sciences, National Tsing Hua University, 101, Sec. 2, Kuang Fu Road, Hsinchu 30013, Taiwan.
Chemosphere. 2014 Feb;97:54-63. doi: 10.1016/j.chemosphere.2013.11.004. Epub 2013 Nov 28.
The effect of naturally occurring quinones including lawsone (LQ), ubiquinone (UQ), juglone (JQ), and 1,4-naphthoquinone (NQ) on the biotransformation of carbon tetrachloride (CT) in the presence of Geobacter sulfurreducens and ferrihydrite was investigated. AQDS was used as the model compound for comparison. The reductive dissolution of ferrihydrite by G. sulfurreducens was enhanced by AQDS, NQ, and LQ. However, addition of UQ and JQ had little enhancement effect on Fe(II) production. The bioreduction efficiency and rate of ferrihydrite was highly dependent on the natural property and concentration of quinone compounds and the addition of low concentrations of LQ and NQ significantly accelerated the biotransformation rate of CT. The pseudo-first-order rate constants for CT dechlorination (kobsCT) in AQDS-, LQ- and NQ-amended batches were 5.4-5.8, 4.6-7.4 and 2.4-5.8 times, respectively, higher than those in the absence of quinone. A good relationship between kobsCT for CT dechlorination and bioreduction ratio of ferrihydrite was observed, indicating the important role of biogenic Fe(II) in dechlorination of CT under iron-reducing conditions. Spectroscopic analysis showed that AQDS and NQ could be reduced to semiquinones and hydroquinones, while only hydroquinones were generated in LQ-amended batches.
研究了包括洛索酚(LQ)、泛醌(UQ)、胡桃醌(JQ)和 1,4-萘醌(NQ)在内的天然醌类化合物对脱硫杆菌和水铁矿存在下四氯化碳(CT)生物转化的影响。使用 AQDS 作为比较的模型化合物。AQDS、NQ 和 LQ 增强了脱硫杆菌对水铁矿的还原溶解。然而,UQ 和 JQ 的添加对 Fe(II)的生成几乎没有增强作用。水铁矿的生物还原效率和速率高度依赖于醌类化合物的天然性质和浓度,并且添加低浓度的 LQ 和 NQ 可显著加速 CT 的生物转化速率。在 AQDS、LQ 和 NQ 处理批次中,CT 脱氯的拟一级速率常数(kobsCT)分别比无醌时高 5.4-5.8、4.6-7.4 和 2.4-5.8 倍。观察到 CT 脱氯的 kobsCT 与水铁矿生物还原率之间存在良好的关系,表明在铁还原条件下,生物生成的 Fe(II)在 CT 脱氯中起着重要作用。光谱分析表明,AQDS 和 NQ 可还原为半醌和对苯二酚,而在 LQ 处理批次中仅生成对苯二酚。