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Potential for Microbially Mediated Natural Attenuation of Diluted Bitumen on the Coast of British Columbia (Canada)

机译:在不列颠哥伦比亚省(加拿大)海岸上,微生物介导的稀释沥青自然衰减的潜力

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Western Canada produces large amounts of bitumen, a heavy, highly weathered crude oil. Douglas Channel and Hecate Strait on the coast of British Columbia are two water bodies that may be impacted by a proposed pipeline and marine shipping route for diluted bitumen (dilbit). This study investigated the potential of microbial communities from these waters to mitigate the impacts of a potential dilbit spill. Microcosm experiments were set up with water samples representing different seasons, years, sampling stations, and dilbit blends. While the alkane fraction of the tested dilbit blends was almost completely degraded after 28?days, the majority of the polycyclic aromatic hydrocarbons (PAHs) remained. The addition of the dispersant Corexit 9500A most often had either no effect or an enhancing effect on dilbit degradation. Dilbit-degrading microbial communities were highly variable between seasons, years, and stations, with dilbit type having little impact on community trajectories. Potential oil-degrading genera showed a clear succession pattern and were for the most part recruited from the “rare biosphere.” At the community level, dispersant appeared to stimulate an accelerated enrichment of genera typically associated with hydrocarbon degradation, even in dilbit-free controls. This suggests that dispersant-induced growth of hydrocarbon degraders (and not only increased bioavailability of oil-associated hydrocarbons) contributes to the degradation-enhancing effect previously reported for Corexit 9500A.IMPORTANCE Western Canada hosts large petroleum deposits, which ultimately enter the market in the form of dilbit. Tanker-based shipping represents the primary means to transport dilbit to international markets. With anticipated increases in production to meet global energy needs, the risk of a dilbit spill is expected to increase. This study investigated the potential of microbial communities naturally present in the waters of a potential dilbit shipping lane to mitigate the effects of a spill. Here we show that microbial degradation of dilbit was mostly limited to n-alkanes, while the overall concentration of polycyclic aromatic hydrocarbons, which represent the most toxic fraction of dilbit, decreased only slightly within the time frame of our experiments. We further investigated the effect of the oil dispersant Corexit 9500A on microbial dilbit degradation. Our results highlight the fact that dispersant-associated growth stimulation, and not only increased bioavailability of hydrocarbons and inhibition of specific genera, contributes to the overall effect of dispersant addition.
机译:加拿大西部生产大量的沥青,一种重的,高度风化的原油。不列颠哥伦比亚省海岸的道格拉斯海峡和赫卡特海峡是两个水体,可能受到提议的稀释沥青(莳萝)的管道和海运路线的影响。这项研究调查了来自这些水域的微生物群落减轻潜在的溢洪道影响的潜力。使用代表不同季节,年份,采样站和稀释度混合的水样本进行缩影实验。在28天后,虽然测试的Dilbit混合物的烷烃组分几乎完全降解,但大多数多环芳烃(PAHs)仍然保留。分散剂Corexit 9500A的添加最常对Dilbit降解没有影响或没有增强作用。退化的微生物群落在季节,年份和气象站之间变化很大,稀释的类型对群落的轨迹影响很小。潜在的可降解石油属显示出明显的继承模式,并且大部分是从“稀有生物圈”招募的。在社区一级,分散剂似乎刺激了通常与碳氢化合物降解相关的属的加速富集,即使在无丁香对照中也是如此。这表明分散剂诱导的烃降解剂的生长(不仅增加了石油相关烃的生物利用度)也有助于先前报道的Corexit 9500A的降解增强作用。形式的dilbit。基于油轮的运输是将假货运输到国际市场的主要手段。随着满足全球能源需求的预期产量的增加,发生dilbit溢漏的风险有望增加。这项研究调查了潜在的dilbit航道水域中自然存在的微生物群落的潜力,以减轻泄漏的影响。在这里,我们表明,对Dilbit的微生物降解主要限于正构烷烃,而代表Dilbit毒性最高的多环芳烃的总浓度在我们的实验时间内仅略有下降。我们进一步研究了油分散剂Corexit 9500A对微生物dilbit降解的影响。我们的结果突出了以下事实:与分散剂相关的生长刺激,不仅增加了碳氢化合物的生物利用度并抑制了特定属,还有助于添加分散剂。

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