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Effect of non-aqueous phase liquid on biodegradation of PAHs in spilled oil on tidal flat

机译:非水相液体对潮滩溢油中多环芳烃生物降解的影响

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Biodegradation rates of polycyclic aromatic hydrocarbons (PAHs) in spilled oil stranded on tidal flats were evaluated using model reactors to clarify the effects of non-aqueous phase liquid (NAPL) on the biodegradation of PAHs in stranded oil on tidal flat with special emphasis on the relationship between dissolution rates of PAHs into water and viscosity of NAPL. Biodegradation of PAHs in NAPL was limited by the dissolution rates of PAHs into water. Biodegradation rate of chrysene was smaller than that of acenaphtene and phenanthrene due to the smaller dissolution rates. Dissolution rates of PAHs in fuel oil C were smaller than those in crude oil due to high viscosity of fuel oil C. Hence, biodegradation rates of PAHs in fuel oil C were smaller than those in crude oil. Biodegradation rates of PAHs in NAPL with slow rate of decrease like fuel oil C was slower than those in NAPL with rapid rate of decrease like crude oil. The smaller rate of decrease of fuel oil C than crude oil was due to the higher viscosity of fuel oil C. Therefore, not only the dissolution rate of PAHs but also the rates of decrease of NAPL were important factors for the biodegradation of PAHs.
机译:使用模型反应器评估了滞留在潮滩上的溢油中多环芳烃(PAHs)的生物降解率,以阐明非水相液体(NAPL)对潮滩中滞留油中PAHs生物降解的影响,特别强调了多环芳烃在水中的溶解速率与NAPL粘度之间的关系。 NAPL中PAHs的生物降解受到PAHs在水中溶解速率的限制。苯的生物降解速率比a庚啶和菲的降解速率小,这是因为其溶解速率较小。由于燃料油C的高粘度,因此燃料油C中的PAHs的溶解率比原油中的小。因此,燃料油C中的PAHs的生物降解率比原油中的小。 NAPL中PAHs的生物降解速率像燃料油C一样缓慢地降低,而NAPL中PAHs的降解速度却像原油C一样慢。燃料油C的下降速率比原油低,是由于燃料油C的粘度较高。因此,不仅PAHs的溶解速率而且NAPL的下降速率也是PAHs生物降解的重要因素。

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