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Factors affecting diurnal dissolved inorganic carbon and its isotopic composition in a small stream on a volcanic island in South Korea

机译:在韩国火山岛上小河中影响昼夜溶解无机碳及其同位素组成的因素

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Water samples were collected hourly at a small stream on Jeju Island, South Korea in both wet and dry seasons to identify the factors affecting dissolved inorganic carbon (DIC) and its isotopic composition (delta C-13(DIC)). In the wet season, dissolved oxygen (DO) displayed a diurnal pattern with lower values in samples collected between sunset and sunrise compared to samples at other times. Likewise, a diurnal pattern was observed for pH, DIC and delta C-13(DIC). An overall negative correlation between DIC and DO indicated that photosynthesis and respiration in the stream are the main factors controlling DIC concentration and behavior. Notably, samples at night displayed two trends in plots of DO and DIC, with different delta C-13(DIC) values. This was due to CO2 outgassing from the stream to the ambient atmosphere. Partial pressure of CO2 (pCO(2)), calcite saturation index (SIcalcite), and equilibrium isotope fractionation between HCO3- and CO2 gas were related to the delta C-13(DIC) value, verifying that photosynthesis and respiration determined DIC behavior. In addition to microbial activity, CO2 outgassing contributed to DIC in the stream after respiration and before photosynthesis. In comparison, delta C-13(DIC) values in the dry season were similar to those in the wet season but showed no clear relationship with pCO(2) and SIcalcite. Unlike the wet season, this indicated that in the dry season, photosynthesis and respiration are not the dominant processes and that CO2 exchange between the atmosphere and water is more important in determining DIC.
机译:每小时在南朝鲜济州岛的小型河流上每小时收集水样,涉及潮湿和干燥的季节,以确定影响溶解无机碳(DIC)及其同位素组合物的因素(Delta C-13(DIC))。在潮湿的季节,溶解的氧(DO)显示与在其他时间的样品相比日落和日出之间收集的样品中具有较低值的昼夜图案。同样地,对pH,DIC和DELTA C-13(DIC)观察到昼夜图案。 DIC之间的总体负相关性表明流中的光合作用和呼吸是控制DIC浓度和行为的主要因素。值得注意的是,在夜间的样品显示了DO和DIC的曲线图中的两个趋势,具有不同的DELTA C-13(DIC)值。这是由于FO2从流中排出到环境大气中。 HCO3-和CO 2气体之间的CO 2(PCO(2)),方解石饱和度指数(Sicalcite)和平衡同位素分馏与ΔC-13(DIC)值相关,验证光合作用和呼吸确定的DIC行为。除了微生物活性外,CO 2除气调还有助于在呼吸后和光合作用前的流中的DIC。相比之下,干燥季节中的Delta C-13(DIC)值与湿季节中的值相似,但没有与PCO(2)和Sicalcite的明确关系。与潮湿的季节不同,这表明在干燥的季节,光合作用和呼吸不是主导的过程,并且在确定DIC时,大气和水之间的CO2交换更重要。

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