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Pentachlorophenol dechlorination by an acidogenic sludge

机译:产酸污泥对五氯苯酚进行脱氯

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This study reports the feasibility of removing pentachlorophenol (PCP) by an acidogenic process in batch reactors. When the acidogenic sludge was first acclimated with 2,4,6-trichlorophenol (2,4,6-TCP) and developed 2,4,6-TCP dechlorinating activity, PCP could be ortho-dechlorinated to 3,4,5,-trichlorophenol (3,4,5-TCP) via 2,3,4,5-tetrachlorophenol as the intermediary. However, due to PCP's higher hydrophobicity and its higher expected Gibbs free energy yield, it was adsorbed to the sludge and dechlorinated preferentially to 2,4,6-TCP. This resulted in the inhibition of 2,4,6-TCP dechlorination. PCP removal under acidogenic condition was attributed to both reductive dechlorination and adsorption. At low PCP loads of 0.48 μmoles/gMLVSS.d, dechlorination was the dominant removal mechanism (69% of total removal), while at the higher PCP load of 9.3 μmoles/gMLVSS.d, adsorption was the main mechanism (82% of total removal). Attempts to induce meta or para position dechlorination of PCP failed when using meta position chlorophenols such as 2,3,6-TCP, 3,4,5-TCP and 3,5-DCP as the initial substrates. Overall, acidogenic biotreat-ment was an effective process in reducing PCP loads prior to downstream biological treatment.
机译:这项研究报告了在分批反应器中通过产酸工艺去除五氯苯酚(PCP)的可行性。当产酸污泥首先被2,4,6-三氯苯酚(2,4,6-TCP)驯化并具有2,4,6-TCP脱氯活性时,PCP可以被原位脱氯为3,4,5,-三氯苯酚(3,4,5-TCP)通过2,3,4,5-四氯苯酚作为中间体。但是,由于PCP具有较高的疏水性和较高的预期吉布斯自由能产率,因此它被吸附到污泥中并优先脱氯为2,4,6-TCP。这导致了2,4,6-TCP脱氯的抑制。在产酸条件下去除五氯苯酚归因于还原性脱氯和吸附。在低PCP负载为0.48μmoles/ gMLVSS.d时,脱氯是主要的去除机理(占总去除量的69%),而在较高PCP负载为9.3μmoles/ gMLVSS.d时,吸附是主要的去除机理(占总去除量的82%)。移除)。当使用间位氯酚(例如2,3,6-TCP,3,4,5-TCP和3,5-DCP)作为初始底物时,诱导PCP的间位或对位脱氯的尝试失败。总体而言,产酸生物处理是减少下游生物处理之前PCP负荷的有效方法。

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