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Characteristics of Anaerobic Benzo(a)pyrene Biodegradation by C. cellulans CWS2

机译:C.cellulans CWS2厌氧降解苯并(a)py的特性

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Anaerobic polycyclic aromatic hydrocarbons (PAHs) biodegradation is highly important for treating PAHs-contaminated aquifers without oxygen. The aim of this study was to investigate the biodegradation characteristics of benzo(a)pyrene (BaP) in aqueous solution by C. cellulans CWS2 under anaerobic conditions. The degradation characteristics include different temperatures (20-35 °C), different pH values (7.0 -12.0), and different BaP concentrations (0, 2.5, 5.0, 10.0, 25.0, 50.0 mg/L). The behavior after adding other PAHs and an additional carbon source was also evaluated. C. cellulans CWS2 could degrade BaP at a concentration of 25.0 mg/L in the temperature range of 20-35°C, and approximately 58% of the biodegradation was achieved at 35°C within 10 days at a natural pH. The alkaline conditions of 7.0-10.0 favor biodegradation and reached their highest point at pH 10.0. A BaP concentration of 10.0 mg/L with an initial value of 1.85 at OD600nm for degradation of the BaP system and a pH of 7.0 was the most ideal condition for obtaining the highest degradation ratio, which was above 80% or higher. C. cellulans CWS2 could degrade phenanthrene and pyrene at the same time, and a low concentration of phenanthrene and pyrene did not reduce BaP degradation. BaP metabolism by C. cellulans CWS2 under anaerobic conditions was the sole carbon and energy source even when there was an additional available carbon source.
机译:厌氧多环芳烃(PAHs)的生物降解对于处理受氧气污染的PAHs含水层非常重要。这项研究的目的是调查在无氧条件下,C.cellulans CWS2在水溶液中对苯并(a)re(BaP)的生物降解特性。降解特性包括不同的温度(20-35°C),不同的pH值(7.0 -12.0)和不同的BaP浓度(0、2.5、5.0、10.0、25.0、50.0 mg / L)。还评估了添加其他PAH和其他碳源后的行为。棉梭菌CWS2可以在20-35°C的温度范围内以25.0 mg / L的浓度降解BaP,并且在自然pH下于35°C在10天内实现了约58%的生物降解。 7.0-10.0的碱性条件有利于生物降解,并在pH 10.0时达到最高点。对于BaP系统的降解,BaOD浓度为10.0 mg / L,在OD600nm处的初始值为1.85,pH为7.0是获得最高降解率(大于80%或更高)的最理想条件。梭状芽胞杆菌CWS2可以同时降解菲和pyr,并且低浓度的菲和pyr不会降低BaP的降解。即使在存在其他可用碳源的情况下,厌氧条件下C.cellulans CWS2的BaP代谢也是唯一的碳和能源。

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