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首页> 外文期刊>Marine Chemistry >Vertical and seasonal differences in biogenic silica dissolution in natural seawater in Suruga Bay, Japan: Effects of temperature and organic matter
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Vertical and seasonal differences in biogenic silica dissolution in natural seawater in Suruga Bay, Japan: Effects of temperature and organic matter

机译:日本骏河湾天然海水中生物硅溶解的垂直和季节性差异:温度和有机质的影响

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Vertical and seasonal characteristics of biogenic silica (BSi) dissolution in seawater were investigated by multiple dissolution experiments using seawater collected from surface and mesopelagic layers in Suruga Bay during the period 2002-2004. The dissolution rate coefficients calculated based on temporal changes of BSi concentration varied with the season of sample collection. They ranged from 0.023-0.057 day~(-1) for surface samples and 0.0018-0.0025 day~(-1) for mesopelagic samples for temperatures approaching in situ conditions. Experiments at various temperatures confirmed that BSi dissolution depends on temperature in natural seawater. Dissolution rate coefficient (day~(-1)) of BSi correlated significantly with temperature (℃), and Q_(10) was 2.6. Addition of bioavailable organic matter to low-bioactivity seawater enhanced the protease activity and abundance of bacteria, and increased BSi dissolution rate by a factor of 1.4-2.0. There is clear evidence that BSi dissolution is accelerated by bacterial activity and potentially limited by bioavailable organic matter in natural seawater. Dissolution rates and total decreases of BSi concentration were lower during experiments using mesopelagic samples than in those using surface samples. This suggests that dissolution of BSi varies with depth and that BSi in the mesopelagic water is more resistant to the dissolution than that in the surface water. This lower dissolution rate was caused by lower temperature and lower bacterial activity due to less bioavailable organic matter in mesopelagic water. Our results provide a mechanistic understanding of variations in silica cycling within the seasonally and vertically differing marine environment.
机译:通过使用2002-2004年期间在Suruga湾的表层和中弹性层收集的海水进行的多次溶解实验,研究了生物二氧化硅(BSi)在海水中的垂直和季节性分布特征。基于BSi浓度随时间变化计算的溶出速率系数随样品收集季节而变化。对于表面温度接近原位条件,表面样品的范围为0.023-0.057天〜(-1),对于中弹性样品的范围为0.0018-0.0025天〜(-1)。在各种温度下进行的实验证实,BSi的溶解取决于天然海水中的温度。 BSi的溶出率系数(day〜(-1))与温度(℃)显着相关,Q_(10)为2.6。向低生物活性海水中添加可生物利用的有机物可提高蛋白酶的活性和细菌的丰度,并将BSi的溶解速率提高1.4-2.0倍。有明确的证据表明,细菌的活动会促进BSi的溶解,而天然海水中的生物可利用有机物可能会限制BSi的溶解。在使用中弹性样品的实验中,溶解速率和BSi浓度的总降低要比在表面样品中的更低。这表明BSi的溶出度随深度而变化,并且在中生水中的BSi比在地表水中的溶出性更强。较低的溶出速率是由于温度和细菌活性降低所致,这是由于中弹性水中生物利用度较低的有机物引起的。我们的结果提供了对季节性和垂直不同海洋环境中二氧化硅循环变化的机械理解。

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