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首页> 外文期刊>Biodegradation >The role of exogenous electron donors for accelerating 2,4,6-trichlorophenol biotransformation and mineralization
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The role of exogenous electron donors for accelerating 2,4,6-trichlorophenol biotransformation and mineralization

机译:外源电子给体在加速2,4,6-三氯苯酚生物转化和矿化中的作用

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2,4,6-Trichlorophenol (TCP) is a biologically recalcitrant compound, but its biodegradation via reductive dechlorination can be accelerated by adding an exogenous electron donor. In this work, acetate and formate were evaluated for their ability to accelerate TCP reductive dechlorination, as well to accelerate mono-oxygenation of TCP's reduction product, phenol. Acetate and formate accelerated TCP reductive dechlorination, and the impact was proportional to the number of electron equivalents released by oxidation of the donor: 8 e(-) equivalents per mol for acetate, compared to 2 e(-) eq per mol for formate. The acceleration phenomenon was similar for phenol mono-oxygenation, and this increased the rate of TCP mineralization. Compared to endogenous electron equivalents generated by phenol mineralization, the impact of exogenous electron donor was stronger on a per-equivalent basis.
机译:2,4,6-三氯苯酚(TCP)是一种生物难降解的化合物,但是通过添加外源电子供体可以加速其通过还原性脱氯的生物降解。在这项工作中,评估了乙酸盐和甲酸盐加速TCP还原脱氯的能力,以及加速TCP还原产物苯酚单加氧的能力。乙酸根和甲酸根加速了TCP还原脱氯,其影响与供体氧化释放的电子当量成正比:乙酸每摩尔8 e(-)当量,而甲酸每摩尔2 e(-)当量。酚单加氧的加速现象相似,这增加了TCP矿化的速率。与苯酚矿化产生的内源电子当量相比,外源电子给体的影响在每当量基础上更强。

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