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Hydro-ecological controls on riverine organic carbon dynamics in the tropical monsoon region

机译:热带季风区河流生态有机碳动态的水文生态控制

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摘要

Transport fluxes and properties of riverine organic carbon in the tropical monsoon region were the vital parameters in the global riverine organic carbon fluxes budget. The study focused on the riverine organic carbon in the Changhuajiang River (CHJR), locating at the mid-west of the Hainan Island, China. Dissolved organic carbon (DOC) concentrations in the CHJR ranged from 0.22 mg/L to 11.75 mg/L with an average of 1.75 mg/L, which was lower than the average of global rivers and had a significantly temporal and spatial variation. Output flux of riverine DOC was calculated as 0.55 t/km2/y, which could be revised up to 1.03 t/km2/y, considering that the riverine discharge before dam construction. A linear model of riverine DOC flux suitable in CHJR basin was established, which involved the factors, such as soil organic carbon, runoff depth and slope, etc. There was a large variation of POC concentrations in the CHJR where the average POC concentration in the dry season was 2.41 times of the wet season. Riverine POC flux in CHJR basin was calculated as 1.78 t/km2/y, higher than the average of global rivers and far lower than those in other domestic larger rivers. About 8.28 × 103 t POC were exported yearly in CHJR, of which, 7.15 × 103 t originated from terrestrial ecosystem and 1.13 × 103 t stemmed from aquatic ecosystem. Meanwhile, about 87.74% of terrestrial source happened in the wet season and 12.26% in the dry season. This research revealed that the riverine organic carbon mainly stemmed from the surface erosion processes in the drainage basin during the wet season.
机译:热带季风区的河流有机碳迁移通量和性质是全球河流有机碳通量预算的关键参数。该研究的重点是位于中国海南岛中西部的彰化江(CHJR)中的河流有机碳。 CHJR中溶解有机碳(DOC)的浓度范围为0.22μg/ L至11.75μg/ L,平均为1.75μg/ L,低于全球河流的平均水平,并且具有明显的时空变化。计算得出河道DOC的输出通量为0.55 t / km 2 / y,考虑到河道排放之前的排放量,可以将其修正为1.03 t / km 2 / y。大坝建设。建立了适用于CHJR盆地的河流DOC通量的线性模型,该模型涉及土壤有机碳,径流深度和坡度等因素。CHJR中POC浓度存在较大差异,而CHJR中的平均POC浓度旱季是雨季的2.41倍。 CHJR流域的河流POC通量计算为1.78 t / km 2 / y,高于全球河流的平均值,远低于其他国内较大河流的平均值。 CHJR每年出口约8.28×10 3 t POC,其中7.15×10 3 t起源于陆地生态系统,而1.13×10 3 3

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