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The mineralisation of dissolved organic matter recovered from temperate waterbodies during summer

机译:夏季从温带水体中回收的溶解有机物的矿化作用

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Natural dissolved organic matter (DOM) has many forms in freshwaters, controlling C availability for heterotrophic respiration and ecosystem functions in headwaters and downstream ecosystems. This study aimed to examine the respiration of DOM recovered using reverse osmosis (RO) during extended summer baseflow from a parkland Pond (DOMPond) and three headwater rivers: moorland (DOMMoor), mixed agriculture (DOMAgr) and predominantly moorland system with mixed riparian forest (DOMForest), and compared to glucose and soil-derived fulvic acid. Batch decomposition tests at time points up to 379 h were completed in a replicated 96-well micro-plate system (MicroResp) spiking river sediments carrying a standardised microbial inoculum with C sources at two concentrations (1513 and 30 A mu gC/g sediment dry matter). Respiration rates were greatest initially and declined over time with an exponential form. Total C respired (38-80 %, following subtraction of basal respiration controls) for the high C treatment followed: DOMForest > DOMAgr > DOMMoor > DOMPond > Fulvic acid. A similar order occurred at the low C treatment but BDOC > 100 % was evidence that added DOM primed respiration of the sediment C above that of basal controls. Despite issues of high background salt concentrations in the DOM matrix caused by the RO procedure results show that even under summer baseflow conditions DOM can be highly labile. Labile C generated especially from agricultural catchments and those with riparian forests may be conveyed downstream to fresh and estuarine waters to control ecological processes at critical times of the year.
机译:天然溶解有机物(DOM)在淡水中具有多种形式,控制源水和下游生态系统中异养呼吸的C有效性和生态系统功能。这项研究旨在研究在延长的夏季底流期间从公园池塘(DOMPond)和三个源头河:高沼地(DOMMoor),混合农业(DOMAgr)和主要有混合河岸森林的高沼地系统中,使用反渗透(RO)恢复的DOM的呼吸(DOMForest),并与葡萄糖和土壤来源的黄腐酸进行了比较。在一个重复的96孔微孔板系统(MicroResp)上完成了在长达379小时的时间点上的批分解试验,掺入了带有标准微生物接种物的河底沉积物,其中两种浓度的C源(1513和30 AμgC / g干燥的干物质)物)。呼吸速率最初是最大的,并且随时间呈指数形式下降。进行高碳治疗的总C呼吸(38-80%,减去基础呼吸控制后)如下:DOMForest> DOMAgr> DOMMoor> DOMPond>黄腐酸。在低碳处理中发生了类似的顺序,但是BDOC> 100%证明了DOM引发的底泥C呼吸高于基础对照。尽管RO程序引起了DOM矩阵中背景盐浓度高的问题,但结果表明,即使在夏季基流条件下,DOM也可能非常不稳定。尤其是从农业流域和沿河林带产生的不稳定碳,可以在一年中的关键时刻被下游输送到淡水和河口水,以控制生态过程。

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