Centre for Offshore Oil, Gas and Energy Research, Fisheries and Oceans Canada, Bedford Institute of Oceanography, 1 Challenger Drive, Dartmouth, NS B2Y 4A2, Canada.
Centre for Offshore Oil, Gas and Energy Research, Fisheries and Oceans Canada, Bedford Institute of Oceanography, 1 Challenger Drive, Dartmouth, NS B2Y 4A2, Canada.
Mar Pollut Bull. 2023 Sep;194(Pt B):115358. doi: 10.1016/j.marpolbul.2023.115358. Epub 2023 Aug 9.
Effects of season and mixing on hydrocarbon concentrations and the microbial community response was explored in a series of mesocosm experiments simulating surface spills of diesel into coastal waters. Mixing of any amount contributed to hydrocarbons entering the water column, but diesel fuel composition had a significant effect on hydrocarbon concentrations. Higher initial concentrations of aromatic hydrocarbons resulted in higher water column concentrations, with minimal differences among seasons due to high variability. Regardless of the concentrations of hydrocarbons, prokaryotes increased and there were higher relative abundances of hydrocarbon affiliated bacteria with indications of biodegradation within 4 d of exposure. As concentrations decreased over time, the eukaryote community shifted from the initial community to one which appeared to be composed of organisms with some resilience to hydrocarbons. This series of experiments demonstrates the wide range of conditions under which natural attenuation of diesel fuel is an effective response.
本研究通过一系列模拟沿海溢油的中观实验,探讨了季节和混合作用对烃浓度和微生物群落响应的影响。混合作用会导致烃进入水柱,但柴油燃料成分对烃浓度有显著影响。较高的初始芳烃浓度导致水柱中浓度较高,由于高度可变,季节间差异较小。无论烃浓度如何,在暴露的 4 天内,原核生物增加,与烃相关的细菌相对丰度较高,表明存在生物降解迹象。随着时间的推移,烃浓度降低,真核生物群落从初始群落转变为似乎由对烃具有一定弹性的生物组成的群落。这一系列实验表明,在广泛的条件下,柴油的自然衰减是一种有效的响应。