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Photosynthetic activity of seagrasses and macroalgae in temperate shallow waters can alter seawater pH and total inorganic carbon content at the scale of a coastal embayment

机译:在温带浅水区,海草和大型藻类的光合作用活动可以改变海水的pH值和沿海排泄物范围内的总无机碳含量

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摘要

Many studies have reported fluctuations in pH and the concentration of dissolved inorganic carbon (DIC) in shallow coastal waters as a result of photosynthetic activity; however, little is known about how these fluctuations vary with degree of exposure among habitats, and at different scales. In the present study, diel variation in seawater pH was apparent in aquaria experiments with Zostera marina and Ruppia maritima. These pH variations were affected by light regime, biomass level and plant species. Subsequently, the natural variability in seawater pH and the concentration of DIC was assessed in six shallow embayments (three sheltered and three exposed) during sunny days. From the outer part towards the interior part of each bay, the following four habitats were identified and studied: the bay-mouth open water, seagrass beds, mixed macrophyte belts and unvegetated bottoms. The two vegetated habitats and unvegetated bottoms were characterised by higher pH and a lower concentration of DIC than in the bay-mouth water. The mixed macrophytes habitat showed slightly higher pH and a lower concentration of DIC than the seagrass and unvegetated habitats. No significant effect of exposure was detected. Our findings clearly showed that the photosynthetic activity of marine macrophytes can alter the coastal pH and the concentration of DIC and that the effects can be observed at the scale of a whole bay.
机译:许多研究报告了由于光合作用而导致的pH值和沿海浅水区溶解性无机碳(DIC)浓度的波动。然而,对于这些波动如何随生境之间以及不同规模的暴露程度而变化的情况知之甚少。在本研究中,在带Zostera marina和Ruppia maritima的水族馆实验中,海水pH值的diel变化很明显。这些pH变化受光照,生物量水平和植物种类的影响。随后,在晴天期间,在六个浅水槽(三个掩蔽处和三个裸露处)评估了海水pH值和DIC浓度的自然变化。从每个海湾的外部到内部,确定并研究了以下四个栖息地:海湾口的开阔水域,海草床,混合植物带和无植被的底部。与湾口水相比,这两个植被生境和底部植被的特点是pH较高,DIC浓度较低。混合的大型植物生境显示出比海草和无植被生境略高的pH值和更低的DIC浓度。没有发现暴露的明显影响。我们的发现清楚地表明,海洋大型植物的光合活性可以改变海岸的pH值和DIC的浓度,并且可以在整个海湾范围内观察到这种影响。

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