University of Alabama, Department of Biology, Dauphin Island Sea Lab., 101 Bienville Blvd., Dauphin Island, AL 36528, USA.
Chemosphere. 2011 Apr;83(5):652-60. doi: 10.1016/j.chemosphere.2011.02.027. Epub 2011 Mar 5.
Bioremediation of sandy soil contaminated with fish-biodiesel, conventional diesel, and blends of both was studied in microcosm experiments at different temperatures, simulating the subarctic environment. While distinct lag, exponential, and stationary phases were observed at 20°C, degradation at 6°C was slow and the lag phase continued throughout the 4-week experiment. A three-phase 1st order kinetic model successfully described respiration at 20°C, a one-phase model was sufficient at 6°C. For temperatures fluctuating between ∼6 and ∼20°C, higher than expected microbial activity persisted at 6°C for several days, due to the presence of active cultures, even though the soil temperature closely followed the air temperature. At 20°C, respiration peaked already after 1week, and 18-51% of the initially added fuel was mineralized within 4weeks, whereby degradation was higher at higher biodiesel percentages. Biodiesel addition accelerated mineralization of blends with regular diesel beyond expectations. In blends with 20% biodiesel, the degradation rate constant was twice as high as for conventional diesel. These synergistic effects are likely due to an active microbial population. Addition of biodiesel to conventional diesel could reduce the impact of diesel spills.
受鱼脂生物柴油、传统柴油及其二者混合物污染的沙土的生物修复研究在不同温度的微宇宙实验中进行,这些实验模拟了亚北极环境。在 20°C 下,可观察到明显的滞后、指数和稳定期,而在 6°C 下,降解速度缓慢,滞后期持续了整个 4 周实验。一个三阶段的 1 阶动力学模型成功地描述了 20°C 下的呼吸作用,一个单阶段模型足以描述 6°C 下的呼吸作用。对于在约 6 和 20°C 之间波动的温度,由于活性培养物的存在,即使土壤温度紧密跟随空气温度,在 6°C 下也会持续数天出现高于预期的微生物活性。在 20°C 下,呼吸作用在 1 周后已经达到峰值,最初添加的燃料中有 18-51%在 4 周内被矿化,其中在更高的生物柴油百分比下降解更高。生物柴油的添加加速了常规柴油混合物的矿化,超出预期。在含有 20%生物柴油的混合物中,降解速率常数是传统柴油的两倍。这些协同效应可能是由于活跃的微生物种群。向传统柴油中添加生物柴油可能会降低柴油泄漏的影响。