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首页> 外文期刊>The Science of the Total Environment >Biogeochemical behavior of organic carbon in the Trinity River downstream of a large reservoir lake in Texas, USA
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Biogeochemical behavior of organic carbon in the Trinity River downstream of a large reservoir lake in Texas, USA

机译:美国德克萨斯州一个大型水库湖下游的三位一体河中有机碳的生物地球化学行为

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摘要

Dissolved and particulate organic carbon concentrations were measured and annual loads estimated for the Trinity River, the main freshwater input source to Galveston Bay, which lies on the upper Gulf coast of Texas, USA, during 2000-2001. This river drains the forested lowlands south of a relatively large reservoir lake, Lake Livingston. A weak relationship between dissolved organic carbon (DOC) and Q_(TR) indicated hydrologic control but separation of the data, based on individual discharge events, was necessary to improve interpretation. For instance, the first rain of the season resulted in only a modest increase in DOC concentrations and led to an inverse relationship with discharge, due to decreased lateral flow and increased infiltration of rainwater, with the lower flows being more efficient at DOC leaching from soils. In contrast, a long duration high discharge river crest event resulted in an opposite trend, i.e. a linear increase in DOC with increasing discharge rates. A short duration high discharge tropical storm showed reduced Trinity River DOC concentrations and the highest POC concentrations measured, likely resulting from the relatively short duration, and minimal contact time, of this event. In contrast to DOC, the concentrations of particulate organic carbon, POC (mg C l~(-1)) were linearly correlated to suspended particulate matter (SPM) concentrations and accounted for between 10 and 12% of the total suspended load at low discharge but decreased to ~ 2% at high discharge. This suggests dilution by larger particles with a reduced organic carbon content, possibly silicate minerals, more readily resuspended at elevated levels of discharge. The annual total organic carbon (TOC) load to Galveston Bay, estimated from the slope of the daily load vs. discharge relationship, was 11.2 x 10~(10) g C and calculated export coefficients (g C m~(-2) year~(-1)) were in good agreement with previous results. Using this relationship, accurate assessments of TOC flux inputs to Galveston Bay over the past quarter-century and in the future are possible by obtaining annual Trinity River discharge rates, which are readily available from the USGS. Comparing DOC riverine inputs to benthic sources in Trinity Bay, measured directly on the same day, indicates that the sediments contribute approximately 20% of total inputs of DOC to Trinity Bay. However, assuming a constant benthic source during low-flow conditions, which can occur for periods of up to 14 months in this region of Texas, benthic fluxes would account for > 80% of the total inputs into Trinity Bay. At high levels of discharge, the Trinity River discharges ~ 1.0 x 10~9 g C day~(-1) and dominates DOC inputs to Trinity Bay.
机译:在2000-2001年期间,测量了三位一体河的溶解和颗粒状有机碳浓度,并估算了三位一体河的年负荷,三位一体河是位于美国德克萨斯州上海湾沿岸的加尔维斯顿湾的主要淡水输入源。这条河排泄了一个相对较大的水库湖利文斯顿湖以南的森林低地。溶解有机碳(DOC)和Q_(TR)之间的关系较弱,表明需进行水文控制,但必须根据单独的排放事件对数据进行分离,以改善解释。例如,由于横向流量减少和雨水渗透增加,该季节的第一场降雨仅导致DOC浓度适度增加,并导致与排放量成反比关系,而较低的流量更有效地从土壤中浸出DOC 。相反,持续时间长的高流量河顶事件导致相反的趋势,即DOC随着流量增加而线性增加。持续时间短的高流量热带风暴显示三位一体河的DOC浓度降低且所测POC浓度最高,可能是由于该事件持续时间相对较短,接触时间最短所致。与DOC相比,颗粒有机碳POC(mg C l〜(-1))的浓度与悬浮颗粒物(SPM)浓度呈线性相关,占低排放总悬浮负荷的10%至12%但高放电时降至〜2%。这表明被有机碳含量降低的较大颗粒(可能是硅酸盐矿物)稀释后,在排放水平升高时更容易重悬。根据日负荷与排放量关系的斜率估算,加尔维斯顿湾的年度总有机碳(TOC)负荷为11.2 x 10〜(10)g C,并计算出出口系数(g C m〜(-2)年〜(-1))与先前的结果非常吻合。利用这种关系,可以通过获得年度三位一体河的年排放量来准确评估过去四分之一世纪以及将来加尔维斯顿湾向TOC的通量输入量,这可以从USGS那里获得。比较同一天直接测量的DOC河沿河投入与三一湾底栖资源的直接作用,表明沉积物贡献了DOC向三一湾的总投入的20%。但是,假设在低流量条件下有恒定的底栖生物源(在得克萨斯州的这个地区可能发生长达14个月的时间),底栖生物通量将占三位一体湾总投入的80%以上。在高排放量的情况下,三位一体河的排放量约为〜1.0 x 10〜9 g C day〜(-1),并主要控制着向三一湾的DOC输入。

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