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Nitrification from the lower euphotic zone to the sub-oxic waters of a highly productive British Columbia fjord

机译:从高产不列颠哥伦比亚省峡湾的低富营养区到低氧水域的硝化作用

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Nitrification rates were measured monthly from April to October 2008, at depths ranging from the lower euphotic zone to the sub-oxic waters of Saanich Inlet. Ammonium (NH_4~+) and nitrite (NO_2~-) oxidation rates ranged from undetectable to 0.319 and 0.478 μmol L~(-0) d~(-1), respectively. NH_4~+ oxidation rates and concentrations were positively correlated at substrate concentrations less than 0.8 umol NH_4~+L~(-1). Positive correlations between NH_4~+ oxidation rates, NO_2~- concentrations, and NO_2~- oxidation rates were also observed, highlighting the important role that NH_4~- oxidation plays in supporting NO_2~- oxidation in Saanich Inlet. Despite the apparent dependence of NO2" oxidation rates on NH_4~- oxidation rates, the former was still 44% higher than the latter and we concluded that Saanich Inlet NOf oxidation rates were augmented by fortnightly spring-tide nutrient renewal. From May to October, sub-oxic zone waters were isolated from any significant mixing events, and we estimated that nitrification was responsible for approximately 25% of dissolved oxygen consumption. This estimate is in close agreement with that calculated using Redfield stoichiometry, and as such highlights the accuracy with which nitrification rates can be quantified using incubation techniques. Finally, nitrification rates in the euphotic zone were at times substantial, and we suggest that earlier estimates of new production in Saanich Inlet may have been overestimated by approximately 15%.
机译:从2008年4月至2008年10月,每月对硝化率进行测量,其深度范围从较低的富营养区到萨尼奇湾的低氧水域。铵(NH_4〜+)和亚硝酸盐(NO_2〜-)的氧化速率分别为0.319和0.478μmolL〜(-0)d〜(-1)。在底物浓度小于0.8 umol NH_4〜+ L〜(-1)时,NH_4〜+的氧化速率和浓度呈正相关。还观察到NH_4〜+氧化速率,NO_2〜-浓度和NO_2〜-氧化速率之间的正相关关系,突出了NH_4〜-氧化在支持Saanich入口中NO_2〜-氧化中的重要作用。尽管“ NO2”氧化速率明显依赖于NH_4〜-氧化速率,但前者仍比后者高44%,我们得出的结论是,每两周春季潮汐养分的更新会增加Saanich入口NOf的氧化速率。从任何重要的混合事件中分离出低氧区水,我们估计硝化作用约占溶解氧消耗量的25%,这一估计值与使用Redfield化学计量法得出的结果非常吻合,因此突出了准确度。可以使用孵化技术对硝化率进行量化,最后,在富营养区的硝化率有时会很高,我们建议早先估计Saanich Inlet的新产量可能被高估了大约15%。

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